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Showing posts with label ALLERGIES. Show all posts
Showing posts with label ALLERGIES. Show all posts

SINUSITIS

Sinusitis is an inflammation of the paranasal sinuses, which may or may not be as a result of infection, from bacterial, fungal, viral, allergic or autoimmune issues.

Newer classifications of sinusitis refer to it as rhinosinusitis, taking into account the thought that inflammation of the sinuses cannot occur without some inflammation of the nose as well (rhinitis).

Classification

By location

There are several paired paranasal sinuses, including the frontal, ethmoid, maxillary and sphenoid sinuses. The ethmoid sinuses can also be further broken down into anterior and posterior, the division of which is defined as the basal lamella of the middle turbinate. In addition to the acuity of disease, discussed below, sinusitis can be classified by the sinus cavity which it affects:

  • Maxillary sinusitis - can cause pain or pressure in the maxillary (cheek) area (eg. toothache, headache).
  • Frontal sinusitis - can cause pain or pressure in the frontal sinus cavity (located behind/above eyes), headache.
  • Ethmoid sinusitis - can cause pain or pressure pain between and/or behind eyes, headache.
  • Sphenoid sinusitis - can cause pain or pressure behind the eyes, but often refers to the vertex of the head.

Recent theories of the sinusitis indicate that it often occurs as part of a spectrum of diseases that affect the respiratory tract (ie. - the "one airway" theory) and is often linked to asthma. All forms of sinusitis may either result in, or be a part of, a generalized inflammation of the airway so other airway symptoms such as cough may be associated with it. One can get a sinus infection by 'making out' or open mouth kissing.[citation needed]

Acute vs. chronic

Sinusitis can be acute (going on less than four weeks), subacute (4-12 weeks) or chronic (going on for 12 weeks or more).

All three types of sinusitis have similar symptoms, and are thus often difficult to distinguish.

Acute sinusitis

Acute sinusitis is usually precipitated by an earlier upper respiratory tract infection, generally of viral origin. Virally damaged surface tissues are then colonized by bacteria, most commonly Haemophilus influenzae, Streptococcus pneumoniae, Moraxella catarrhalis and Staphylococcus aureus. Other bacterial pathogens include other streptococci species, anaerobic bacteria and, less commonly, gram negative bacteria. Another possible cause of sinusitis can be dental problems that affect the maxillary sinus. Acute episodes of sinusitis can also result from fungal invasion. These infections are most often seen in patients with diabetes or other immune deficiencies (such as AIDS or transplant patients on anti-rejection medications) and can be life threatening.

Chronic sinusitis

Chronic sinusitis is a complicated spectrum of diseases that share chronic inflammation of the sinuses in common. The causes are multifactorial and may include allergy, environmental factors such as dust or pollution, bacterial infection, and/or fungus (either allergic, infective or reactive). Non allergic factors such as Vasomotor rhinitis can also cause chronic sinus problems.

Symptoms include: Nasal congestion; facial pain; headache; fever; general malaise; thick green or yellow discharge; feeling of facial 'fullness' worsening on bending over; aching teeth.

In a small number of cases, chronic maxillary sinusitis can also be brought on by the spreading of bacteria from a dental infection.

A more recent, and still debated, development in chronic sinusitis is the role that fungus may play. Fungus can be found in the nasal cavities and sinuses of most patients with sinusitis, but can also be found in healthy people as well. It remains unclear if fungus is a definite factor in the development of chronic sinusitis and if it is, what the difference may be between those who develop the disease and those who do not.

Diagnosis

Factors which may predispose to developing sinusitis include: allergies; structural problems such as, for example, a deviated septum, small sinus ostia; smoking; nasal polyps; carrying the cystic fibrosis gene (research is still tentative); prior bouts of sinusitis as each instance may result in increased inflammation of the nasal or sinus mucosa and potentially further narrow the openings.

When imaging techniques are required for diagnosis CT scanning is the method of choice. If allergies are suspected, allergy testing may be performed.

Treatment

Therapeutic measures range from the medicinal to the traditional and may include nasal irrigation or jala neti using a warm saline solution, analgesics (such as aspirin, paracetamol (acetaminophen) or ibuprofen), hot drinks including tea and chicken soup, inhaling steam, over-the-counter decongestants and nasal sprays, and getting plenty of rest. If sinusitis doesn't improve within 48 hours, or is causing significant pain, one should see a doctor, who may prescribe antibiotics or nasal steroids. If the recommended doses and duration of antibiotic treatment(s) are ineffective, one should reconsult a doctor; who may suggest further treatment by a specialist.

For chronic or recurring sinusitis, referral to an otolaryngologist is indicated for more specialist assessment and treatment, which may include nasal surgery.

A relatively recent advance in the treatment of sinusitis is a type of surgery called FESS - functional endoscopic sinus surgery, whereby normal clearance from the sinuses is restored by removing the anatomical and pathological obstructive variations that predispose to sinusitis. This replaces prior open techniques requiring facial or oral incisions and refocuses the technique to the natural openings of the sinuses instead of promoting drainage by gravity, the idea upon which the less effective Caldwell-Luc surgery was based.

Another recently developed treatment is Balloon Sinuplasty. This method, similar to balloon angioplasty used to "unclog" arteries of the heart, utilizes balloons in an attempt to expand the openings of the sinuses in a less invasive manner. Its final role in the treatment of sinus disease is still under debate but appears promising.

Another treatment option is Coblation which is a recent technique for removing and treating tissue performed at a lower temperatures (40C to 70C).

Based on the recent theories on the role that fungus may play in the development of chronic sinusitis, newer medical therapies include topical nasal applications of antifungal agents. Much of the original research indicating fungus took place at the Mayo Clinic and they have since patented this treatment option. Although there are some licensing battles taking place over these drugs as a result of the patent, they are currently available for other uses and therefore can be compounded by pharmacies or even by the patient.

Nasal irrigation and flush promotes sinus cavity health, and patients with chronic sinusitis including symptoms of facial pain, headache, halitosis, cough, anterior rhinorrhea (watery discharge) and nasal congestion found nasal irrigation to be "just as effective at treating these symptoms as the drug therapies." In other studies, "daily hypertonic saline nasal irrigation improves sinus-related quality of life, decreases symptoms, and decreases medication use in patients with frequent sinusitis," and is "recommended as an effective adjunctive treatment of chronic sinonasal symptoms."

Source: wikipedia GFDL Medic8

PEANUT ALLERGY

Peanut allergy is a type of food allergy. It is a hypersensitivity to dietary substances from peanuts causing an overreaction of the immune system.

Prevalence among adults and children is similar (around 1%) but at least one study shows it to be on the rise in children.

25% of children with a peanut allergy grow out of it.

It is usually treated with an exclusion diet and vigilant avoidance of foods that may be contaminated with whole peanuts or peanut particles and/or oils.

The most severe peanut allergies can result in anaphylaxis.

Prevention

If there is a family history of allergy, the risk of peanut allergy may be reduced by:

- avoiding peanuts during pregnancy and breast-feeding
- breast-feeding your baby
- delaying the introduction of peanut products until the child is at least 3 years old.

Symptoms

Symptoms of a peanut allergy may include:

- atopic dermatitis (eczema)
- urticaria (hives)
- asthma-like reaction (wheezing)
- swelling or tingling of the lips and tongue
- anaphylactic shock

Treatment

Avoidance is the mainstay of treatment.

All labels for foods, medicines, cosmetics, creams, and ointments should be read thoroughly to ensure peanuts are not contained in the product.

Anaphylaxis is an emergency and should be treated with epinephrine.

Source: wikipedia GFDL Medic8

HOUSEDUST MITE ALLERGY

Dust mites are tiny insects that are invisible to the naked eye. Every home has dust mites. They feed on human skin flakes and are found in mattresses, pillows, carpets, upholstered furniture, bedcovers, clothes, stuffed toys and fabric and fabric-covered items.

Body parts and faeces from dust mites can trigger asthma in individuals with allergic reactions to dust mites, and exposure to dust mites can cause asthma in children who have not previously exhibited asthma symptoms.

Actions You Can Take

  • Cover mattresses and pillows with dust proof ("allergen-impermeable") zippered covers.
  • Wash bedding (sheets, blankets and bedcovers) once per week in hot water.
  • Choose washable stuffed toys, wash them often in hot water and dry them thoroughly.
  • Keep stuffed toys off beds.
  • Maintain low indoor humidity, ideally between 30-50% relative humidity. Humidity levels can be measured by hygrometers which are available at local hardware stores.

Common house dust may contain asthma triggers. When you are treating your house for dust mites, try these simple steps as well:

  • Remove dust often with a damp cloth.
  • Vacuum carpet and fabric-covered furniture to reduce dust build-up.
  • Using vacuums with high efficiency filters or central vacuums may be helpful.
  • People with asthma or allergies should leave the area being vacuumed.

Source: EPA Medic8

HIVES AND URTICARIA

Urticaria (hives) is a relatively common form of allergic reaction that causes raised red skin welts. Urticaria is also known as nettle rash or uredo. These welts can be 5 mm (0.2 inches) in diameter or more, itch severely, and often have a pale border.

Urticaria is generally caused by direct contact with an allergenic substance, or an immune response to food or some other allergen. Hives can be caused by stress.

The skin lesions of urticarial disease is caused by an inflammatory reaction in the skin, causing leakage from capillaries in the epidermis, resulting in an edema which persists until the interstitial fluid is absorbed into the surrounding cells.

Urticarial disease are thought to be caused by the release of histamine and other mediators of inflammation (cytokines) from cells in the skin. This process can be the result of an allergic or non-allergic reaction, differing in eliciting mechanism of histamine release.

Allergic urticaria

Histamine and other pro-inflammatory substances are released from mast cells in the skin and tissues in response to the binding of allergen-bound IgE antibodies to high affinity cell surface receptors. Basophils and other inflammatory cells are also seen to release histamine and other mediators, and are thought to play an important role, especially in chronic urticarial diseases.

Non-allergic urticaria

Mechanisms other than allergen-antibody interactions are known to cause histamine release from mast cells. For instance, a diverse group of signaling substances called neuropeptides have been found to be involved in emotionally induced urticaria.

Dominantly inherited cutaneous and neurocutaneous porphyrias (porphyria cutanea tarda, hereditary coproporphyria, variegate porphyria and erythropoietic protoporphyria) have been associated with solar urticaria. Drug-induced solar urticaria should be investigated for porphyrias.

Types

Acute urticaria usually show up a few minutes after contact with the allergen and can last a few hours to several weeks. Food allergic reactions typically fit in this category. Common causes of reaction include consumption of shell fish, nuts, eggs, fish, acid derivatives, dye.

Chronic urticaria refers to hives that persists for 6 weeks or more. There are no visual differences between acute and chronic urticaria. Some of the more severe chronic cases have lasted more than 20 years.

Drug-induced urticaria has been known to result in severe cardiorespiratory failure. The anti-diabetic sulphonylurea glimepiride (trade name Amaryl�), in particular, has been documented to induce allergic reactions manifesting as urticaria. Other cases include dextroamphetamine, aspirin, penicillin, clotrimazole, sulfonamides and anticonvulsants.

Physical urticaria is often categorized into the following:

-Aquagenic: Reaction to water (rare)

-Cholinergic: Reaction to body heat, such as when exercising or after a hot shower

-Cold (Chronic cold urticaria): Reaction to cold, such as ice, cold air or water

-Delayed Pressure: Reaction to standing for long periods, bra-straps, belts

-Dermatographic: Reaction when skin is scratched (very common)

-Heat: Reaction to hot food or objects (rare)

-Solar: Reaction to direct sunlight (rare)

-Vibration: Reaction to vibration (rare)

-Adrenergic: Reaction to adrenaline / noradrenaline (extremely rare)

Source: wikipedia GFDL Medic8

HAYFEVER

What is hayfever?

Hayfever is inflammation of the nasal lining due to an allergy to pollen. Hay fever is also known as seasonal allergic rhinitis.

Causes of hayfever

Allergies are caused by an oversensitive immune system, leading to a misdirected immune response. The immune system normally protects the body against harmful substances such as bacteria and viruses. Allergy occurs when the immune system reacts to substances (allergens) that are generally harmless and in most people do not cause an immune response.

As noted above, hay fever involves an allergic reaction to pollen. A virtually identical reaction occurs with allergy to mold, animal dander, dust, and similar inhaled allergens. Particulate matter in polluted air and chemicals such as chlorine and detergents, which can normally be tolerated, can greatly aggravate the condition.

The pollens that cause hay fever vary from person to person and from region to region; generally speaking, the tiny, hardly visible pollens of wind-pollinated plants are the predominant culprits. Pollens of insect-pollinated plants are too large to remain airborne and pose no risk. Examples of plants commonly responsible for hay fever include:

  • Trees: such as birch (Betula), alder (Alnus), hazel (Corylus), hornbeam (Carpinus), horse chestnut (Aesculus), willow (Salix), poplar (Populus), plane (Platanus), linden/lime (Tilia) and olive (Olea). In northern latitudes birch is considered to be the most important allergenic tree pollen, with an estimated 15-20% of hay fever sufferers sensitive to birch pollen grains. Olive pollen is most predominant in Mediterranean regions.
  • Grasses (Family Poaceae): especially rye (Lolium sp.) and timothy (Phleum pratense). An estimated 90% of hay fever sufferers are allergic to grass pollen.
  • Weeds:ragweed (Ambrosia), plantain (Plantago), nettle/parietaria (Urticaceae), mugwort (Artemisia), Fat hen (Chenopodium) and sorrel/dock (Rumex)

In addition to individual sensitivity and geographic differences in local plant populations, the amount of pollen in the air can be a factor in whether hay fever symptoms develop. Hot, dry, windy days are more likely to have increased amounts of pollen in the air than cool, damp, rainy days when most pollen is washed to the ground. Interestingly however, many sufferers will experience the worst symptoms during rainy days.

The time of year at which hay fever symptoms manifest themselves varies greatly depending on the types of pollen to which an allergic reaction is produced. As most pollens are produced at fixed periods in the year, a long-term hay fever sufferer may also be able to anticipate when the symptoms are most likely to begin and end, although this may be complicated by an allergy to dust particles.

When an allergen such as pollen or dust is inhaled by a person with a sensitized immune system, it triggers antibody production. These antibodies mostly bind to mast cells, which contain histamine. When the antibodies are stimulated by pollen and dust, histamine (and other chemicals) are released. This causes itching, swelling, and mucus production. Symptoms vary in severity from person to person. Very sensitive individuals can experience hives or other rashes.

Some disorders may be associated with allergies. These include eczema and asthma, among others.

Allergies are common. Heredity and environmental exposures may contribute to a predisposition to allergies.

Symptoms of hayfever

The effect of hayfever can vary greatly: some people may only be mildly afflicted, whereas others may suffer greatly. Common symptoms include:

  • coughing
  • headache
  • itching nose, mouth, eyes, throat, skin, or any area exposed to the allergen.
  • runny nose (and occasionally nosebleeds)
  • impaired smell (and thus sensitivity to flavours)
  • sneezing
  • stuffy nose (nasal congestion)
  • watering eyes
  • sore throat
  • wheezing
  • fever
  • cross-reactivity allergy to some fruits
  • conjunctivitis

Signs and tests for hayfever

The history of the person's symptoms is important in diagnosing allergic rhinitis, including whether the symptoms vary according to time of day or the season; exposure to pets or other allergens; and diet changes.

Allergy testing may reveal the specific allergens the person is reacting to. Skin testing is the most common method of allergy testing. This may include intradermal, scratch, patch, or other tests. Less commonly, the suspected allergen is dissolved and dropped onto the lower eyelid as a means of testing for allergies. (This test should only be done by a physician, never the patient, since it can be harmful if done improperly.)

In some individuals who cannot undergo skin testing (as determined by the doctor), the RAST blood test may be helpful in determining specific allergen sensitivity.

Sufferers might also find that cross-reactivity occurs. For example, someone allergic to birch pollen may also find that they have an allergic reaction to the skin of apples or potatoes. A clear sign of this is the occurrence of an itchy throat after eating an apple or sneezing when peeling potatoes. This occurs because of similarities in the proteins of the pollen and the food. There are many cross-reacting substances.

Prevention of hayfever

Avoiding exposure to pollen is the best way to decrease allergic symptoms.

  • Remain indoors in the morning and evening when outdoor pollen levels are highest.
  • Wear face masks designed to filter out pollen if you must be outdoors.
  • Keep windows closed and use the air conditioner if possible in the house and car.
  • Do not dry clothes outdoors.
  • Avoid unnecessary exposure to other environmental irritants such as insect sprays, tobacco smoke, air pollution, and fresh tar or paint.
  • Avoid mowing the grass or doing other yard work, if possible.
  • Regular hand- and face-washing removes pollen from areas where it is likely to enter the nose.
  • A small amount of vaseline around the eyes and nostrils will stop some pollen from entering the areas that cause a reaction
  • It may be helpful to humidify the room you are in to help clean the allergens out of the air, perhaps by using a humidifier, leaving a bowl of water around or leaving a wet towel in the room.
  • You may find it useful to breathe through a wet towel or tissue when you feel the symptoms are acute, if you don't have access to a face mask.

Treatment for hayfever

The goal of treatment is to reduce allergy symptoms caused by the inflammation of affected tissues. The best "treatment" is to avoid what causes your allergic symptoms in the first place.

Medication for hayfever

The most appropriate medication depends on the type and severity of symptoms. Specific illnesses that are caused by allergies (such as asthma and eczema) may require other treatments.

Options include the following:

  • Fast-acting strong antihistamines such as drugs including chlorphenamine which relieve the symptoms after a hayfever "attack".
  • Short-acting antihistamines, which are generally over-the-counter (non-prescription), often relieve mild to moderate symptoms, but can cause drowsiness. A pediatrician should be consulted before using these medicines in children, as they may affect learning. One formerly prescription medication, loratadine (Claritin®), is now available over the counter in many countries. It does not tend to cause drowsiness or affect learning in children. Azelastine (Astelin®) is the only antihistamine available as a nasal spray.
  • Longer-acting antihistamines cause less drowsiness, can be equally effective, and usually do not interfere with learning. These medications include fexofenadine (Allegra), and cetirizine (Zyrtec).
  • New leukotriene receptor antagonists, such as montelukast (Singulair) and zafirlukast (Accolate) have proven very effective in dealing with allergic rhinitis, without the common side-effects of the first-generation antihistimines, such as drowsiness. These medicines are also long-acting, and are recommended to be taken once-daily.
  • Corticosteroid nasal sprays are effective and somewhat safe, and may be effective without oral antihistamines. These medications include fluticasone (Flonase/Flixonase), budesonide (Rhinocort), mometasone (Nasonex), triamcinolone (Nasacort) and beclomethasone (Beconase®).
  • Topical decongestants may also be helpful in reducing symptoms such as nasal congestion, but should not be used for long periods as stopping them after protracted use can lead to a rebound nasal congestion (Rhinitis medicamentosa).
  • Cromolyn sodium (or cromoglycate) is a drug that stabilizes mast cells and prevent their degranulation and subsequent release of histamine. It is available as a nasal spray (Nasalcrom) for treating hay fever. Eye drop versions of cromolyn sodium (Crolom) are available for allergic conjunctivitis.
  • "Allergy shots" (Hyposensibilization, immunotherapy) are occasionally recommended if the allergen cannot be avoided and if symptoms are hard to control. This includes regular injections of the allergen, given in increasing doses (each dose is slightly larger than the previous dose) that may help the body adjust to the antigen. These tend to be offered as a last resort as the therapy is more expensive and can increase the risk of triggering a secondary allergic reaction such as an asthma attack.

Source: Medic8 wikipedia GFDL

FOOD ALLERGIES

Food allergies or food intolerances affect nearly everyone at some point. People often have an unpleasant reaction to something they ate and wonder if they have a food allergy. One out of three people either say that they have a food allergy or that they modify the family diet because a family member is suspected of having a food allergy. But only about three percent of children have clinically proven allergic reactions to foods. In adults, the prevalence of food allergy drops to about one percent of the total population.

This difference between the clinically proven prevalence of food allergy and the public perception of the problem is in part due to reactions called "food intolerances" rather than food allergies. A food allergy, or hypersensitivity, is an abnormal response to a food that is triggered by the immune system. The immune system is not responsible for the symptoms of a food intolerance, even though these symptoms can resemble those of a food allergy.

It is extremely important for people who have true food allergies to identify them and prevent allergic reactions to food because these reactions can cause devastating illness and, in some cases, be fatal.

How Allergic Reactions Work

An allergic reaction involves two features of the human immune response. One is the production of immunoglobulin E (IgE), a type of protein called an antibody that circulates through the blood. The other is the mast cell, a specific cell that occurs in all body tissues but is especially common in areas of the body that are typical sites of allergic reactions, including the nose and throat, lungs, skin, and gastrointestinal tract.

The ability of a given individual to form IgE against something as benign as food is an inherited predisposition. Generally, such people come from families in which allergies are common�not necessarily food allergies but perhaps hay fever, asthma, or hives. Someone with two allergic parents is more likely to develop food allergies than someone with one allergic parent.

Before an allergic reaction can occur, a person who is predisposed to form IgE to foods first has to be exposed to the food. As this food is digested, it triggers certain cells to produce specific IgE in large amounts. The IgE is then released and attaches to the surface of mast cells. The next time the person eats that food, it interacts with specific IgE on the surface of the mast cells and triggers the cells to release chemicals such as histamine. Depending upon the tissue in which they are released, these chemicals will cause a person to have various symptoms of food allergy. If the mast cells release chemicals in the ears, nose, and throat, a person may feel an itching in the mouth and may have trouble breathing or swallowing. If the affected mast cells are in the gastrointestinal tract, the person may have abdominal pain or diarrhoea. The chemicals released by skin mast cells, in contrast, can prompt hives.

Food allergens (the food fragments responsible for an allergic reaction) are proteins within the food that usually are not broken down by the heat of cooking or by stomach acids or enzymes that digest food. As a result, they survive to cross the gastrointestinal lining, enter the bloodstream, and go to target organs, causing allergic reactions throughout the body.

The complex process of digestion affects the timing and the location of a reaction. If people are allergic to a particular food, for example, they may first experience itching in the mouth as they start to eat the food. After the food is digested in the stomach, abdominal symptoms such as vomiting, diarrhoea, or pain may start. When the food allergens enter and travel through the bloodstream, they can cause a drop in blood pressure. As the allergens reach the skin, they can induce hives or eczema, or when they reach the lungs, they may cause asthma. All of this takes place within a few minutes to an hour.

Common Food Allergies

In adults, the most common foods to cause allergic reactions include: shellfish such as shrimp, crayfish, lobster, and crab; peanuts, a legume that is one of the chief foods to cause severe anaphylaxis, a sudden drop in blood pressure that can be fatal if not treated quickly; tree nuts such as walnuts; fish; and eggs.

In children, the pattern is somewhat different. The most common food allergens that cause problems in children are eggs, milk, and peanuts. Adults usually do not lose their allergies, but children can sometimes outgrow them. Children are more likely to outgrow allergies to milk or soy than allergies to peanuts, fish, or shrimp.

The foods that adults or children react to are those foods they eat often. In Japan, for example, rice allergy is more frequent. In Scandinavia, codfish allergy is more common.

Cross Reactivity

If someone has a life-threatening reaction to a certain food, the doctor will counsel the patient to avoid similar foods that might trigger this reaction. For example, if someone has a history of allergy to shrimp, testing will usually show that the person is not only allergic to shrimp but also to crab, lobster, and crayfish as well. This is called cross-reactivity.

Another interesting example of cross-reactivity occurs in people who are highly sensitive to ragweed. During ragweed pollination season, these people sometimes find that when they try to eat melons, particularly cantaloupe, they have itching in their mouth and they simply cannot eat the melon. Similarly, people who have severe birch pollen allergy also may react to the peel of apples. This is called the "oral allergy syndrome."

Differential Diagnoses

A differential diagnosis means distinguishing food allergy from food intolerance or other illnesses. If a patient goes to the doctor's office and says, "I think I have a food allergy," the doctor has to consider the list of other possibilities that may lead to symptoms that could be confused with food allergy.

One possibility is the contamination of foods with microorganisms, such as bacteria, and their products, such as toxins. Contaminated meat sometimes mimics a food reaction when it is really a type of food poisoning.

There are also natural substances, such as histamine, that can occur in foods and stimulate a reaction similar to an allergic reaction. For example, histamine can reach high levels in cheese, some wines, and in certain kinds of fish, particularly tuna and mackerel. In fish, histamine is believed to stem from bacterial contamination, particularly in fish that hasn't been refrigerated properly. If someone eats one of these foods with a high level of histamine, that person may have a reaction that strongly resembles an allergic reaction to food. This reaction is called histamine toxicity.

Another cause of food intolerance that is often confused with a food allergy is lactase deficiency. This most common food intolerance affects at least one out of ten people. Lactase is an enzyme that is in the lining of the gut. This enzyme degrades lactose, which is in milk. If a person does not have enough lactase, the body cannot digest the lactose in most milk products. Instead, the lactose is used by bacteria, gas is formed, and the person experiences bloating, abdominal pain, and sometimes diarrhoea. There are a couple of diagnostic tests in which the patient ingests a specific amount of lactose and then the doctor measures the body's response by analyzing a blood sample.

Another type of food intolerance is an adverse reaction to certain products that are added to food to enhance taste, provide color, or protect against the growth of microorganisms. Compounds that are most frequently tied to adverse reactions that can be confused with food allergy are yellow dye number 5, monosodium glutamate, and sulfites. Yellow dye number 5 can cause hives, although rarely. Monosodium glutamate (MSG) is a flavor enhancer, and, when consumed in large amounts, can cause flushing, sensations of warmth, headache, facial pressure, chest pain, or feelings of detachment in some people. These transient reactions occur rapidly after eating large amounts of food to which MSG has been added.

Sulfites can occur naturally in foods or are added to enhance crispness or prevent mold growth. Sulfites in high concentrations sometimes pose problems for people with severe asthma. Sulfites can give off a gas called sulfur dioxide, which the asthmatic inhales while eating the sulfited food. This irritates the lungs and can send an asthmatic into severe bronchospasm, a constriction of the lungs. Such reactions led the U.S. Food and Drug Administration (FDA) to ban sulfites as spray-on preservatives in fresh fruits and vegetables. But they are still used in some foods and are made naturally during the fermentation of wine, for example.

There are several other diseases that share symptoms with food allergies including ulcers and cancers of the gastrointestinal tract. These disorders can be associated with vomiting, diarrhoea, or cramping abdominal pain exacerbated by eating.

Gluten intolerance is associated with the disease called gluten-sensitive enteropathy or celiac disease. It is caused by an abnormal immune response to gluten, which is a component of wheat and some other grains.

Some people may have a food intolerance that has a psychological trigger. In selected cases, a careful psychiatric evaluation may identify an unpleasant event in that person's life, often during childhood, tied to eating a particular food. The eating of that food years later, even as an adult, is associated with a rush of unpleasant sensations that can resemble an allergic reaction to food.

Diagnosis

To diagnose food allergy a doctor must first determine if the patient is having an adverse reaction to specific foods. This assessment is made with the help of a detailed patient history, the patient's diet diary, or an elimination diet.

The first of these techniques is the most valuable. The physician sits down with the person suspected of having a food allergy and takes a history to determine if the facts are consistent with a food allergy. The doctor asks such questions as:

  • What was the timing of the reaction? Did the reaction come on quickly, usually within an hour after eating the food?
  • Was allergy treatment successful? (Antihistamines should relieve hives, for example, if they stem from a food allergy.)
  • Is the reaction always associated with a certain food?
  • Did anyone else get sick? For example, if the person has eaten fish contaminated with histamine, everyone who ate the fish should be sick. In an allergic reaction, however, only the person allergic to the fish becomes ill.
  • How much did the patient eat before experiencing a reaction? The severity of the patient's reaction is sometimes related to the amount of food the patient ate.
  • How was the food prepared? Some people will have a violent allergic reaction only to raw or undercooked fish. Complete cooking of the fish destroys those allergens in the fish to which they react. If the fish is cooked thoroughly, they can eat it with no allergic reaction.
  • Were other foods ingested at the same time of the allergic reaction? Some foods may delay digestion and thus delay the onset of the allergic reaction.

Sometimes a diagnosis cannot be made solely on the basis of history. In that case, the doctor may ask the patient to go back and keep a record of the contents of each meal and whether he or she had a reaction. This gives more detail from which the doctor and the patient can determine if there is consistency in the reactions.

The next step some doctors use is an elimination diet. Under the doctor's direction, the patient does not eat a food suspected of causing the allergy, like eggs, and substitutes another food, in this case, another source of protein. If the patient removes the food and the symptoms go away, the doctor can almost always make a diagnosis. If the patient then eats the food (under the doctor's direction) and the symptoms come back, then the diagnosis is confirmed. This technique cannot be used, however, if the reactions are severe (in which case the patient should not resume eating the food) or infrequent.

If the patient's history, diet diary, or elimination diet suggests a specific food allergy is likely, the doctor will then use tests that can more objectively measure an allergic response to food. One of these is a scratch skin test, during which a dilute extract of the food is placed on the skin of the forearm or back. This portion of the skin is then scratched with a needle and observed for swelling or redness that would indicate a local allergic reaction. If the scratch test is positive, the patient has IgE on the skin's mast cells that is specific to the food being tested.

Skin tests are rapid, simple, and relatively safe. But a patient can have a positive skin test to a food allergen without experiencing allergic reactions to that food. A doctor diagnoses a food allergy only when a patient has a positive skin test to a specific allergen and the history of these reactions suggests an allergy to the same food.

In some extremely allergic patients who have severe anaphylactic reactions, skin testing cannot be used because it could evoke a dangerous reaction. Skin testing also cannot be done on patients with extensive eczema.

For these patients a doctor may use blood tests such as the RAST and the ELISA. These tests measure the presence of food-specific IgE in the blood of patients. These tests may cost more than skin tests, and results are not available immediately. As with skin testing, positive tests do not necessarily make the diagnosis.

The final method used to objectively diagnose food allergy is double-blind food challenge. This testing has come to be the "gold standard" of allergy testing. Various foods, some of which are suspected of inducing an allergic reaction, are each placed in individual opaque capsules. The patient is asked to swallow a capsule and is then watched to see if a reaction occurs. This process is repeated until all the capsules have been swallowed. In a true double-blind test, the doctor is also "blinded" (the capsules having been made up by some other medical person) so that neither the patient nor the doctor knows which capsule contains the allergen.

The advantage of such a challenge is that if the patient has a reaction only to suspected foods and not to other foods tested, it confirms the diagnosis. Someone with a history of severe reactions, however, cannot be tested this way. In addition, this testing is expensive because it takes a lot of time to perform and multiple food allergies are difficult to evaluate with this procedure.

Consequently, double-blind food challenges are done infrequently. This type of testing is most commonly used when the doctor believes that the reaction a person is describing is not due to a specific food and the doctor wishes to obtain evidence to support this judgment so that additional efforts may be directed at finding the real cause of the reaction. Exercise-Induced Food Allergy At least one situation may require more than the simple ingestion of a food allergen to provoke a reaction: exercise-induced food allergy. People who experience this reaction eat a specific food before exercising. As they exercise and their body temperature goes up, they begin to itch, get light-headed, and soon have allergic reactions such as hives or even anaphylaxis. The cure for exercised-induced food allergy is simple�not eating for a couple of hours before exercising.

Treatment

Food allergy is treated by dietary avoidance. Once a patient and the patient's doctor have identified the food to which the patient is sensitive, the food must be removed from the patient's diet. To do this, patients must read lengthy, detailed ingredient lists on each food they are considering eating. Many allergy-producing foods such as peanuts, eggs, and milk, appear in foods one normally would not associate them with. Peanuts, for example, are often used as a protein source and eggs are used in some salad dressings. The FDA requires ingredients in a food to appear on its label. People can avoid most of the things to which they are sensitive if they read food labels carefully and avoid restaurant-prepared foods that might have ingredients to which they are allergic.

In highly allergic people even minuscule amounts of a food allergen (for example, 1/44,000 of a peanut kernel) can prompt an allergic reaction. Other less sensitive people may be able to tolerate small amounts of a food to which they are allergic.

Patients with severe food allergies must be prepared to treat an inadvertent exposure. Even people who know a lot about what they are sensitive to occasionally make a mistake. To protect themselves, people who have had anaphylactic reactions to a food should wear medical alert bracelets or necklaces stating that they have a food allergy and that they are subject to severe reactions. Such people should always carry a syringe of adrenaline (epinephrine), obtained by prescription from their doctors, and be prepared to self-administer it if they think they are getting a food allergic reaction. They should then immediately seek medical help by either calling the rescue squad or by having themselves transported to an emergency room. Anaphylactic allergic reactions can be fatal even when they start off with mild symptoms such as a tingling in the mouth and throat or gastrointestinal discomfort.

Special precautions are warranted with children. Parents and caregivers must know how to protect children from foods to which the children are allergic and how to manage the children if they consume a food to which they are allergic, including the administration of epinephrine. Schools must have plans in place to address any emergency.

There are several medications that a patient can take to relieve food allergy symptoms that are not part of an anaphylactic reaction. These include antihistamines to relieve gastrointestinal symptoms, hives, or sneezing and a runny nose. Bronchodilators can relieve asthma symptoms. These medications are taken after people have inadvertently ingested a food to which they are allergic but are not effective in preventing an allergic reaction when taken prior to eating the food. No medication in any form can be taken before eating a certain food that will reliably prevent an allergic reaction to that food.

There are a few non-approved treatments for food allergies. One involves injections containing small quantities of the food extracts to which the patient is allergic. These shots are given on a regular basis for a long period of time with the aim of "desensitizing" the patient to the food allergen. Researchers have not yet proven that allergy shots relieve food allergies.

Infants and Children

Milk and soy allergies are particularly common in infants and young children. These allergies sometimes do not involve hives and asthma, but rather lead to colic, and perhaps blood in the stool or poor growth. Infants and children are thought to be particularly susceptible to this allergic syndrome because of the immaturity of their immune and digestive systems. Milk or soy allergies in infants can develop within days to months of birth. Sometimes there is a family history of allergies or feeding problems. The clinical picture is one of a very unhappy colicky child who may not sleep well at night. The doctor diagnoses food allergy partly by changing the child's diet. Rarely, food challenge is used.

If the baby is on cow's milk, the doctor may suggest a change to soy formula or exclusive breast milk, if possible. If soy formula causes an allergic reaction, the baby may be placed on an elemental formula. These formulas are processed proteins (basically sugars and amino acids). There are few if any allergens within these materials. The doctor will sometimes prescribe corticosteroids to treat infants with severe food allergies. Fortunately, time usually heals this particular gastrointestinal disease. It tends to resolve within the first few years of life.

Exclusive breast feeding (excluding all other foods) of infants for the first 6 to 12 months of life is often suggested to avoid milk or soy allergies from developing within that time frame. Such breast feeding often allows parents to avoid infant-feeding problems, especially if the parents are allergic (and the infant therefore is likely to be allergic). There are some children who are so sensitive to a certain food, however, that if the food is eaten by the mother, sufficient quantities enter the breast milk to cause a food reaction in the child. Mothers sometimes must themselves avoid eating those foods to which the baby is allergic.

There is no conclusive evidence that breast feeding prevents the development of allergies later in life. It does, however, delay the onset of food allergies by delaying the infant's exposure to those foods that can prompt allergies, and it may avoid altogether those feeding problems seen in infants. By delaying the introduction of solid foods until the infant is 6 months old or older, parents can also prolong the child's allergy-free period.

Controversial Issues

There are several disorders thought by some to be caused by food allergies, but the evidence is currently insufficient or contrary to such claims. It is controversial, for example, whether migraine headaches can be caused by food allergies. There are studies showing that people who are prone to migraines can have their headaches brought on by histamines and other substances in foods. The more difficult issue is whether food allergies actually cause migraines in such people. There is virtually no evidence that most rheumatoid arthritis or osteoarthritis can be made worse by foods, despite claims to the contrary. There is also no evidence that food allergies can cause a disorder called the allergic tension fatigue syndrome, in which people are tired, nervous, and may have problems concentrating, or have headaches.

Cerebral allergy is a term that has been applied to people who have trouble concentrating and have headaches as well as other complaints. This is sometimes attributed to mast cells degranulating in the brain but no other place in the body. There is no evidence that such a scenario can happen, and most doctors do not currently recognize cerebral allergy as a disorder.

Another controversial topic is environmental illness. In a seemingly pristine environment, some people have many non-specific complaints such as problems concentrating or depression. Sometimes this is attributed to small amounts of allergens or toxins in the environment. There is no evidence that such problems are due to food allergies.

Some people believe hyperactivity in children is caused by food allergies. But researchers have found that this behavioral disorder in children is only occasionally associated with food additives, and then only when such additives are consumed in large amounts. There is no evidence that a true food allergy can affect a child's activity except for the proviso that if a child itches and sneezes and wheezes a lot, the child may be miserable and therefore more difficult to guide. Also, children who are on anti-allergy medicines that can cause drowsiness may get sleepy in school or at home.

Controversial Diagnostic Techniques

One controversial diagnostic technique is cytotoxicity testing, in which a food allergen is added to a patient's blood sample. A technician then examines the sample under the microscope to see if white cells in the blood "die." Scientists have evaluated this technique in several studies and have not been found it to effectively diagnose food allergy.

Another controversial approach is called sublingual or, if it is injected under the skin, subcutaneous provocative challenge. In this procedure, dilute food allergen is administered under the tongue of the person who may feel that his or her arthritis, for instance, is due to foods. The technician then asks the patient if the food allergen has aggravated the arthritis symptoms. In clinical studies, researchers have not shown that this procedure can effectively diagnose food allergies.

An immune complex assay is sometimes done on patients suspected of having food allergies to see if there are complexes of certain antibodies bound to the food allergen in the bloodstream. It is said that these immune complexes correlate with food allergies. But the formation of such immune complexes is a normal offshoot of food digestion, and everyone, if tested with a sensitive enough measurement, has them. To date, no one has conclusively shown that this test correlates with allergies to foods.

Another test is the IgG subclass assay, which looks specifically for certain kinds of IgG antibody. Again, there is no evidence that this diagnoses food allergy.

Controversial Treatments

Controversial treatments include putting a dilute solution of a particular food under the tongue about a half hour before the patient eats that food. This is an attempt to "neutralise" the subsequent exposure to the food that the patient believes is harmful. As the results of a carefully conducted clinical study show, this procedure is not effective in preventing an allergic reaction.

Summary

Food allergies are caused by immunologic reactions to foods. There actually are several discrete diseases under this category, and a number of foods that can cause these problems.

After one suspects a food allergy, a medical evaluation is the key to proper management. Treatment is basically avoiding the food(s) after it is identified. People with food allergies should become knowledgeable about allergies and how they are treated, and should work with their physicians.

Source: Medic8

CONJUNCTIVITIS

Conjunctivitis (also known as "pink eye") is an inflammation of the eye. It describes a group of diseases that cause swelling, itching, burning, and redness of the conjunctiva, the protective membrane that lines the eyelids and covers exposed areas of the white of the eye (sclera).

Infective conjunctivitis can spread from one person to another through direct contact.

Conjunctivitis can be caused by a bacterial or viral infection, allergy, environmental irritants, a contact lens product, eyedrops, or eye ointments.

At its onset, conjunctivitis is usually painless and does not adversely affect vision.

Symptoms include red, itchy, swollen eye(s). There may be a watery or sticky discharge from the affected eye(s), and vision can become blurry.

A thick discharge (pus) on the eyekids is typical of a bacterial eye infection. A sore throat and fever preceeding the conjunctivitis suggest a viral infection. Chronic conjunctivitis is usually caused by an allergen irritating the eye.

Conjunctival infection will clear in most cases without requiring medical care. Infection typically resolves in about 1 week.

For some forms of conjunctivitis, treatment will be needed. In theses instances, if treatment is delayed, the infection may worsen and cause corneal inflammation and a loss of vision.

Treatment

Bacterial conjunctivitis may be treated with antibiotic eye drops. Viral conjunctivitis treatment is symptomatic.

Cold compresses and artificial tears can help ease the symptoms. In severe cases, steroid eye drops may be prescribed by an ophthalmologist.

Conjunctivitis due to an infection will usually resolve within 7-10 days.

For allergic conjunctivitis, the mainstay of treatment is to avoid the allergen (if it is known). Antihistamines may help reduce the swelling and inflammation.

Source: Medic8

BEE STINGS

Bee stings are very common & are serious for those who are allergic to them.

When a bee stings you, it leaves the stinger in the skin. The stinger will continue to pump venom into the body for up to 20 mins, so it is important to remove the stinger as quickly as possible.

The sting may be painful for a few hours.

Swelling and itching may persist for a week.

Treatment of bee stings

The first step is removal of the barbed stinger from the skin. The method of removal is less important than the time it takes to remove the stinger. Using tweezers may, in fact, squeeze more venom into the body.

Once the barb is removed, an ice pack will help to recuce swelling and inflammation. The sting will often leave a red, swollen welt on the affected area.

Allergic reaction to bee stings

It is important to check for an allergic reaction to bee stings. Symptoms of an allergic reaction can include a raised rash (weals), headache, fever, severe swelling of the face, tongue, and lips, and/or difficulty breathing.

An allergic reaction will usually occur within 1 hour of a sting. Allergic reactions are more common after multiple stings.

Allergic reactions require emergency medical help if there is collapse and/or difficulty breathing. Treatment of an allergic reaction may involve antihistamines, adrenaline, and tracheostomy (an emergency procedure to create a direct airway into the trachea if the upper airways are blocked).

People with a known allergy to bee stings should wear a warning braclet and carry an epipen (epinephrine autoinjector) for emergency use.

Epipens contain adrenaline, can be self-administered and are very fast-acting.

Source: Medic8

ASTHMA IN CHILDHOOD

Asthma is one of the commonest chronic medical conditions to affect children and it has been affecting an increasing number of children in the past 10 years.

Children with asthma, like adults with asthma, should see a doctor for treatment of their asthma. Treatment may include allergy testing, finding ways to limit contact with things that bring on asthma attacks, and taking medicine.

Young children will need help from their parents and other caregivers to keep their asthma under control. Older children can learn to care for themselves and follow their asthma self-management plan with less supervision.

Asthma medicines for children are like those adults use, but doses are smaller. Children with asthma may need both a quick-relief (or "rescue") inhaler for attacks and daily medicine to control their asthma. Children with moderate or severe asthma should learn to use a peak flow meter to help keep their asthma under control. Using a peak flow meter can be very helpful because children often have a hard time describing their symptoms.

Parents should be alert for possible signs of asthma in children, such as coughing at night, frequent colds, wheezing, or other signs of breathing problems. If you suspect that your child has asthma or that your child's asthma is not well controlled, take your child to a doctor for an exam and testing.

Your doctor will choose medicines for your child based on the child's symptoms and test results. If your child has asthma, you will need to go to the doctor for regular followup visits and to make sure that your child uses the medicines properly.

ASTHMA

What Is Asthma?

Asthma is a chronic disease that affects your airways. The airways are the tubes that carry air in and out of your lungs. If you have asthma, the inside walls of your airways are inflamed (swollen). The inflammation makes the airways very sensitive, and they tend to react strongly to things that you are allergic to or find irritating. When the airways react, they get narrower, and less air flows through to your lung tissue. This causes symptoms like wheezing (a whistling sound when you breathe), coughing, chest tightness, and trouble breathing, especially at night and in the early morning.

Asthma cannot be cured, but most people with asthma can control it so that they have few and infrequent symptoms and can live active lives.

When your asthma symptoms become worse than usual, it is called an asthma episode or attack. During an asthma attack, muscles around the airways tighten up, making the airways narrower so less air flows through. Inflammation increases, and the airways become more swollen and even narrower. Cells in the airways may also make more mucus than usual. This extra mucus also narrows the airways. These changes make it harder to breathe.

Asthma attacks are not all the same—some are worse than others. In a severe asthma attack, the airways can close so much that not enough oxygen gets to vital organs. This condition is a medical emergency. People can die from severe asthma attacks.

So, if you have asthma, you should see your doctor regularly. You will need to learn what things cause your asthma symptoms and how to avoid them. Your doctor will also prescribe medicines to keep your asthma under control.

Taking care of your asthma is an important part of your life. Controlling it means working closely with your doctor to learn what to do, staying away from things that bother your airways, taking medicines as directed by your doctor, and monitoring your asthma so that you can respond quickly to signs of an attack. By controlling your asthma every day, you can prevent serious symptoms and take part in all activities.

If your asthma is not well controlled, you are likely to have symptoms that can make you miss school or work and keep you from doing things you enjoy. Asthma is one of the leading causes of children missing school.

What Causes Asthma?

It is not clear exactly what makes the airways of people with asthma inflamed in the first place. Your inflamed airways may be due to a combination of things. We know that if other people in your family have asthma, you are more likely to develop it. New research suggests that being exposed to things like tobacco smoke, infections, and some allergens early in your life may increase your chances of developing asthma.

What Causes Asthma Symptoms and Attacks?

There are things in the environment that bring on your asthma symptoms and lead to asthma attacks. Some of the more common things include exercise, allergens, irritants, and viral infections. Some people have asthma only when they exercise or have a viral infection.

The list below gives some examples of things that can bring on asthma symptoms.

Allergens

  • Animal dander (from the skin, hair, or feathers of animals)
  • Dust mites (contained in house dust)
  • Cockroaches
  • Pollen from trees and grass
  • Mold (indoor and outdoor)

Irritants

  • Cigarette smoke
  • Air pollution
  • Cold air or changes in weather
  • Strong odors from painting or cooking
  • Scented products
  • Strong emotional expression (including crying or laughing hard) and stress

Others

  • Medicines such as aspirin and beta-blockers
  • Sulfites in food (dried fruit) or beverages (wine)
  • A condition called gastroesophageal (GAS-tro-e-sof-o-JEE-al) reflux disease that causes heartburn and can worsen asthma symptoms, especially at night
  • Irritants or allergens that you may be exposed to at your work, such as special chemicals or dusts
  • Infections

This is not a complete list of all the things that can bring on asthma symptoms. People can have trouble with one or more of these. It is important for you to learn which ones are problems for you. Your doctor can help you identify which things affect your asthma and ways to avoid them.

Who Is At Risk for Asthma?

In the United States, about 20 million people have been diagnosed with asthma; nearly 9 million of them are children.

Asthma is closely linked to allergies. Most, but not all, people with asthma have allergies. Children with a family history of allergy and asthma are more likely to have asthma.

Although asthma affects people of all ages, it most often starts in childhood. More boys have asthma than girls, but in adulthood, more women have asthma than men.

Although asthma affects people of all races, African Americans are more likely than Caucasians to be hospitalized for asthma attacks and to die from asthma.

What Are the Signs and Symptoms of Asthma?

Common asthma symptoms include:

  • Coughing. Coughing from asthma is often worse at night or early in the morning, making it hard to sleep.
  • Wheezing. Wheezing is a whistling or squeaky sound when you breathe.
  • Chest tightness. This can feel like something is squeezing or sitting on your chest.
  • Shortness of breath. Some people say they can't catch their breath, or they feel breathless or out of breath. You may feel like you can't get enough air in or out of your lungs.
  • Faster breathing or noisy breathing.

Not all people have these symptoms, and symptoms may vary from one asthma attack to another. Symptoms can differ in how severe they are: Sometimes symptoms can be mildly annoying, other times they can be serious enough to make you stop what you are doing, and sometimes symptoms can be so serious that they are life threatening.

Symptoms also differ in how often they occur. Some people with asthma have symptoms only once every few months, others have symptoms every week, and still other people have symptoms every day. With proper treatment, however, most people with asthma can expect to have few or no symptoms.

How Is Asthma Diagnosed?

Some things your doctor will ask about include:

  • Periods of coughing, wheezing, shortness of breath, or chest tightness that come on suddenly, occur often, or seem to happen during certain times of the year or season
  • Colds that seem to "go to the chest" or take more than 10 days to get over
  • Medicines you may have used to help your breathing
  • Your family history of asthma and allergies
  • Things that seem to cause your symptoms or make them worse

Your doctor will listen to your breathing and look for signs of asthma or allergies.

Your doctor will probably use a device called a spirometer (speh-ROM-et-er) to check how your lungs are working. This test is called spirometry (speh-ROM-eh-tree). The test measures how much air you can blow out of your lungs after taking a deep breath, and how fast you can do it . The results will be lower than normal if your airways are inflamed and narrowed, or if the muscles around your airways have tightened up.

As part of the test, your doctor may give you a medicine that helps open narrowed airways to see if the medicine changes or improves your test results.

Spirometry is also used to check your asthma over time to see how you are doing.

Spirometry usually cannot be used in children younger than 5 years. If your child is younger than 5 years, the doctor may decide to try medicine for a while to see if the child's symptoms get better.

If your spirometry results are normal but you have asthma symptoms, your doctor will probably want you to have other tests to see what else could be causing your symptoms.

These include:

  • Allergy testing to find out if and what allergens affect you.
  • A test in which you use a peak flow meter every day for 1-2 weeks to check your breathing. A peak flow meter is a hand-held device that helps you monitor how well you are breathing.
  • A test to see how your airways react to exercise.
  • Tests to see if you have gastroesophageal reflux disease.
  • A test to see if you have sinus disease.

Other tests, such as a chest x ray or an electrocardiogram, may be needed to find out if a foreign object or other lung diseases or heart disease could be causing your symptoms. A correct diagnosis is important because asthma is treated differently from other diseases with similar symptoms.

Depending on the results of your physical exam, medical history, and lung function tests, your doctor can determine how severe your asthma is. This is important because the severity of your asthma will determine how your asthma should be treated. One way for doctors to classify asthma severity is by considering how often you have symptoms when you are not taking any medicine or when your asthma is not well controlled.

Based on symptoms, the four levels of asthma severity are:

  • Mild intermittent (comes and goes)—you have episodes of asthma symptoms twice a week or less, and you are bothered by symptoms at night twice a month or less; between episodes, however, you have no symptoms and your lung function is normal.
  • Mild persistent asthma—you have asthma symptoms more than twice a week, but no more than once in a single day. You are bothered by symptoms at night more than twice a month. You may have asthma attacks that affect your activity.
  • Moderate persistent asthma—you have asthma symptoms every day, and you are bothered by nighttime symptoms more than once a week. Asthma attacks may affect your activity.
  • Severe persistent asthma—you have symptoms throughout the day on most days, and you are bothered by nighttime symptoms often. In severe asthma, your physical activity is likely to be limited.

Anyone with asthma can have a severe attack—even people who have intermittent or mild persistent asthma.

How Is Asthma Treated?

Your doctor can work with you to decide about your treatment goals and what you need to do to control your asthma to achieve these goals. Asthma treatment includes:

  • Working closely with your doctor to decide what your treatment goals are and learning how to meet those goals.
  • Avoiding things that bring on your asthma symptoms or make your symptoms worse. Doing so can reduce the amount of medicine you need to control your asthma.
  • Using asthma medicines. Allergy medicine and shots may also help control asthma in some people.
  • Monitoring your asthma so that you can recognise when your symptoms are getting worse and respond quickly to prevent or stop an asthma attack.

With proper treatment, you should ideally have these results:

  • Your asthma should be controlled.
  • You should be free of asthma symptoms.
  • You should have fewer attacks.
  • You should need to use quick-relief medicines less often.
  • You should be able to do normal activities without having symptoms.

Your doctor will work with you to develop an asthma self-management plan for controlling your asthma on a daily basis and an emergency action plan for stopping asthma attacks. These plans will tell you what medicines you should take and other things you should do to keep your asthma under control.

Medicines for Asthma

There are two main types of medicines for asthma:

  • Quick-relief medicines—taken at the first signs of asthma symptoms for immediate relief of these symptoms. You will feel the effects of these medicines within minutes.
  • Long-term control medicines—taken every day, usually over long periods of time, to prevent symptoms and asthma episodes or attacks. You will feel the full effects of these medicines after taking them for a few weeks. People with persistent asthma need long-term control medicines.

Quick-relief medicines

Everyone with asthma needs a quick-relief or "rescue" medicine to stop asthma symptoms before they get worse. Short-acting inhaled beta-agonists are the preferred quick-relief medicine. These medicines are bronchodilators. They act quickly to relax tightened muscles around your airways so that the airways can open up and allow more air to flow through.

You should take your quick-relief medicine when you first begin to feel asthma symptoms, such as coughing, wheezing, chest tightness, or shortness of breath. You should carry your quick-relief inhaler with you at all times in case of an asthma attack.

Your doctor may recommend that you take your quick-relief medicines at other times as well—for example, before exercise.

Long-term control medicines

The most effective, long-term control medicine for asthma is an inhaled corticosteroid because this medicine reduces the airway swelling that makes asthma attacks more likely.

Inhaled corticosteroids (or steroids for short) are the preferred medicine for controlling mild, moderate, and severe persistent asthma. They are generally safe when taken as directed by your doctor.

In some cases, steroid tablets or liquid are used for short periods of time to bring asthma under control. The tablet or liquid form may also be used to control severe asthma.

Other long-term control medicines include:

  • Inhaled long-acting beta-agonists. These medicines are bronchodilators, or muscle relaxers, not anti-inflammatory drugs. They are used to help control moderate and severe asthma and to prevent nighttime symptoms. Long-acting beta-agonists are usually taken together with inhaled corticosteroid medicines.
  • Leukotriene modifiers (montelukast, zafirlukast, and zileuton), which are used either alone to treat mild persistent asthma or together with inhaled corticosteroids to treat moderate or severe asthma.
  • Cromolyn and nedocromil, which are used to treat mild persistent asthma.
  • Theophylline, which is used either alone to treat mild persistent asthma or together with inhaled corticosteroids to treat moderate persistent asthma. People who take theophylline should have their blood levels checked to be sure the dose is appropriate.

If you stop taking long-term control medicines, your asthma will likely worsen again.

Many people with asthma need both a short-acting bronchodilator to use when symptoms worsen and long-term daily asthma control medicines to treat the ongoing inflammation.

Over time, your doctor may need to make changes in your asthma medicine. You may need to increase your dose, lower your dose, or try a combination of medicines. Be sure to work with your doctor to find the best treatment for your asthma. The goal is to use the least amount of medicine necessary to control your asthma.

Most asthma medicines are inhaled. They go directly into your lungs where they are needed. There are many kinds of inhalers, and many require different techniques. It is important to know how to use your inhaler correctly.

Use a Peak Flow Meter

As part of your daily asthma self-management plan, your doctor may recommend that you use a hand-held device called a peak flow meter at home to monitor how well your lungs are working.

You use the peak flow meter by taking a deep breath in and then blowing the air out hard into the peak flow meter. The peak flow meter then gives you a peak flow number that tells you how fast you moved the air out.

You will need to find out your "personal best" peak flow number. You do this by recording your peak flow number every day for a few weeks until your asthma is under control. The highest number you get during that time is your personal best peak flow. Then you can compare future peak flow measurements to your personal best peak flow, and that will show if your asthma is staying under control.

Your doctor will tell you how and when to use your peak flow meter and how to use your medicines based on the results. You may be advised to use your peak flow meter each morning to keep track of how well you are breathing.

Your peak flow meter can help warn you of a possible asthma attack even before you notice symptoms. If your peak flow meter shows that your breathing is getting worse, you should follow your emergency asthma action plan. Take your quick-relief or other medicines as your doctor directed. Then you can use the peak flow meter to see how your airways are responding to the medicine.

Ask your doctor about how you can take care of your asthma. You should know:

  • What things tend to make your asthma worse and how to avoid them
  • Early signs to watch for that mean your asthma is starting to get worse (like a drop in your peak flow number or an increase in symptoms)
  • How and when to use your peak flow meter
  • What medicines to take, how much to take, when to take them, and how to take them correctly
  • When to call or see your doctor
  • When you should get emergency treatment

Treating Asthma in Children

Children with asthma, like adults with asthma, should see a doctor for treatment of their asthma. Treatment may include allergy testing, finding ways to limit contact with things that bring on asthma attacks, and taking medicine.

Young children will need help from their parents and other caregivers to keep their asthma under control. Older children can learn to care for themselves and follow their asthma self-management plan with less supervision.

Asthma medicines for children are like those adults use, but doses are smaller. Children with asthma may need both a quick-relief (or "rescue") inhaler for attacks and daily medicine to control their asthma. Children with moderate or severe asthma should learn to use a peak flow meter to help keep their asthma under control. Using a peak flow meter can be very helpful because children often have a hard time describing their symptoms.

Parents should be alert for possible signs of asthma in children, such as coughing at night, frequent colds, wheezing, or other signs of breathing problems. If you suspect that your child has asthma or that your child's asthma is not well controlled, take your child to a doctor for an exam and testing.

Your doctor will choose medicines for your child based on the child's symptoms and test results. If your child has asthma, you will need to go to the doctor for regular followup visits and to make sure that your child uses the medicines properly.

Treating Asthma in Older Adults

Older adults may need to adjust their asthma treatment because of other diseases or conditions that they have. Some medicines (like beta blockers used for treating high blood pressure and glaucoma; aspirin; and nonsteroidal anti-inflammatory drugs) can interfere with asthma medicines or even cause asthma attacks. Be sure to tell your doctor about all medicines that you take, including over-the-counter ones.

Using steroids may affect bone density in adults, so ask your doctor about taking calcium and vitamin D supplements and other ways to help keep your bones strong.

Treating Asthma in Pregnancy

If you are pregnant, it is very important to both you and your baby to control your asthma. Uncontrolled asthma can lower the oxygen level in your blood, which means that your baby gets less oxygen too.

Most asthma medicines are generally safe to take during pregnancy. Doctors recommend that it is safer to take asthma medicines during pregnancy than to take the chance that you will have an attack.

If you are pregnant or thinking about becoming pregnant, talk to your doctor about your asthma and how to have a healthy pregnancy.

Treating Exercise-Induced Asthma

Regular physical activity is important for good health. If exercise brings on your asthma symptoms, talk to your doctor about the best ways to control your asthma when you are active. Some people with asthma use inhaled, quick-relief medicines before exercising to keep symptoms under control.

If you use your asthma medicines as directed, you should be able to take part in any physical activity or sport you choose. Many Olympic athletes have asthma.

Can Asthma Be Prevented?

We don't yet know how to prevent asthma, but there are some things that can lower your chances of having an asthma attack.

To prevent asthma symptoms:

  • Learn about your asthma and how to control it.
  • Use medicines as directed by your doctor to prevent or stop attacks.
  • Avoid things that make your asthma worse as much as possible.
  • Get regular checkups from your doctor.
  • Follow your asthma self-management plan.

Scientists do not yet know how to prevent the inflammation of the airways that leads to asthma. Scientists are exploring some theories:

  • Babies exposed to tobacco smoke are more likely to get asthma. If a woman is exposed to tobacco smoke during pregnancy, her baby may also be more likely to get asthma.
  • Obesity may be linked to asthma, as well as other health problems.

Living With Asthma

If you have asthma, it is important to learn how to take care of yourself. Work with your doctor on a daily asthma self-management plan that you are both happy with.

  • Tell your doctor about all other medications you are taking, in case one of them affects your asthma.
  • Follow your asthma self-management plan and have regular checkups.
  • Learn to use your medication correctly. Ask your doctor to teach you how to use your inhaler. This is very important. If you do not use your inhalers correctly, less medication will get into your airways.
  • If you are having problems taking your asthma medicine, let your doctor know right away.

You need to know what things bring on your asthma symptoms. Then do what you can to avoid or limit contact with these things.

  • If animal dander is a problem for you, keep your pet out of the house or at least out of your bedroom, or find it a new home.
  • Do not smoke or allow smoking in your home.
  • If pollen is a problem for you, stay indoors with the air conditioner on, if possible, when the pollen count is high.
  • To control dust mites, wash your sheets, blankets, pillows, and stuffed toys once a week in hot water. You can get special dust proof covers for your mattress and pillows.
  • If cold air bothers you, wear a scarf over your mouth and nose in the winter.
  • If you have symptoms when you exercise or do routine physical activities like climbing stairs, work with your doctor to find ways to be active without having asthma symptoms. Physical activity is important.
  • If you are allergic to sulfites, avoid foods (like dried fruit) or beverages (like wine) that contain them.

Be alert for warning signs of an asthma attack.

  • Watch for symptoms (for example, coughing, wheezing, chest tightness, and difficulty breathing) and use your quick-relief medicine as directed by your doctor.
  • Use your peak flow meter as directed to monitor your asthma.

If your asthma is not under control, there will be signs that you should not ignore. The following are some signs that your asthma is getting worse:

  • You have asthma symptoms more often than usual.
  • Your asthma symptoms are worse than they used to be.
  • Your asthma symptoms are bothering you a lot at night and making you lose sleep.
  • You are missing school or work because of your asthma.
  • Your peak flow number is low or varies a lot from day to day.
  • Your asthma medicines do not seem to be working very well anymore.
  • You have to use your short-acting quick-relief, or "rescue," inhaler more often. (Using quick-relief medicine every day or using more than one inhaler a month is too much.)
  • You have to go to the emergency room or doctor because of an asthma attack. You end up in the hospital because of your asthma.

If your asthma seems to be getting worse, see your doctor. You may need to change your medicines or do other things to get your asthma under control.

Helping Your Child Live With Asthma

Children with asthma need the help of parents, other caregivers, teachers, and health care professionals to keep their asthma under control.

You can help your child with asthma keep it under control. For example, you can:

  • Take your child to the doctor for regular checkups and treatment.
  • Make sure your child has an asthma self-management plan and that you know how to follow it.
  • Help your child learn about asthma and how to control it.
  • Help your child learn what things cause his or her asthma symptoms and how to avoid them, if possible.
  • Protect your child from tobacco smoke by not smoking and not allowing people to smoke in your home.
  • Find ways to reduce your child's exposure to allergens that bring on asthma attacks, like pollen, dust mites, cockroaches, or animal dander.
  • Make sure your child knows how to take asthma medicines correctly (if your child is old enough to use an inhaler without your help).
  • Make sure that your child uses a peak flow meter to help monitor and control asthma.
  • Encourage your child to take part in physical activity. Work together to keep his or her asthma under control. Your child can be active.
  • Talk to your child's other caregivers, teachers, or coaches about his or her asthma; give them copies of your child's asthma self-management plan.

Key Points

  • Asthma is a chronic disease that affects your airways, the tubes that carry air in and out of your lungs.
  • In asthma, the inside walls of your airways are inflamed, or swollen. The inflammation makes them very sensitive, and they tend to react strongly to things that you are allergic to or find irritating. When they react, they get narrower and less air flows through to your lungs. This causes symptoms like wheezing, coughing, chest tightness, and trouble breathing, especially at night and in the early morning.
  • Asthma cannot be cured, but most people with asthma can control it so that they have few and infrequent symptoms and can live normal, active lives.
  • When your asthma symptoms become worse than usual, it is called an asthma episode or attack. In a severe asthma attack, the airways can close so much that not enough oxygen can get to your vital organs. People can die from severe asthma attacks.
  • Taking care of your asthma is an important part of your life. Controlling it means working closely with your doctor to learn how to manage your condition, staying away from things that bother your airways and bring on asthma symptoms, taking medicines as directed by your doctor, and monitoring your asthma so you can respond quickly to signs of an attack. Ask your doctor for a written daily asthma self-management plan and an emergency action plan for asthma attacks, and make sure you understand and know how to use them.
  • Researchers still do not know what causes asthma, although they do know that if other people in your family have asthma, you are more likely to develop it. Being exposed early in your life to things like tobacco smoke, infections, and some allergens may also increase your chances of developing asthma.
  • Some of the more common things that bring on asthma symptoms include exercise, allergens, irritants, and viral infections.
  • Common asthma symptoms include coughing, wheezing, chest tightness, shortness of breath, and faster or noisy breathing.
  • Doctors find out whether you have asthma by looking at your family history of asthma and allergies, exploring the things that seem to cause your symptoms or make them worse, and giving you a test, called spirometry, that measures how much air you can blow out of your lungs after taking a deep breath and how quickly you can do it. They may also perform tests to find out if you have allergies, to see how your airways react to exercise, to find out whether you have gastroesophageal reflux disease or sinus disease, and to rule out heart disease and other lung diseases.
  • Asthma is treated with two kinds of medicines: quick-relief medicines to stop asthma symptoms and long-term control medicines to prevent symptoms.
  • Short-acting inhaled beta-agonists are the preferred quick-relief medicine. The most effective, long-term control medicine is an inhaled corticosteroid, which reduces inflammation in your lungs. Most long-term control medicines must be taken daily, even when you do not have symptoms.
  • Other long-term control medicines include inhaled long-acting beta-agonists, leukotriene modifiers, cromolyn, and theophylline.
  • Most asthma medicines are inhaled. As a result, they go straight to your lungs where they are needed. It is important to learn how to use your inhalers correctly.
  • Many people with asthma need to monitor their condition with a peak flow meter. This is a hand-held device that measures how well your lungs are working. A peak flow meter can help you detect early changes in your condition, especially if you change your medicines, and warn you of a possible attack even before you feel symptoms.
  • Parents of children with asthma need to help them manage their asthma, including making sure the child uses his or her medicines properly and watching for any signs of an attack.
  • Older people with asthma may need to adjust their treatment because of other diseases or conditions that they have. Some medicines that many older people take can interfere with asthma medicines or even cause asthma attacks.
  • It is especially important for pregnant women with asthma to control their asthma. Uncontrolled asthma can limit the supply of oxygen to the foetus. Doctors recommend that it is safer to take asthma medicines during pregnancy than to take the chance that you will have an attack.
  • Regular physical activity is just as important for people with asthma as for the rest of the population. If exercise brings on your asthma symptoms, talk to your doctor about the best ways to control your asthma when you are active.

ALLERGIC RHINITIS

Allergic rhinitis is inflammation of the nasal lining due to an allergen. When symptoms are caused by pollens, allergic rhinitis is commonly known as "hay fever".

Causes

Allergies are caused by an oversensitive immune system, leading to a misdirected immune response. The immune system normally protects the body against harmful substances such as bacteria and viruses. Allergy occurs when the immune system reacts to substances (allergens) that are generally harmless and in most people do not cause an immune response.

As noted above, hay fever involves an allergic reaction to pollen. A virtually identical reaction occurs with allergy to mold, animal dander, dust, and similar inhaled allergens. Particulate matter in polluted air and chemicals such as chlorine and detergents, which can normally be tolerated, can greatly aggravate the condition.

The pollens that cause hay fever vary from person to person and from region to region; generally speaking, the tiny, hardly visible pollens of wind-pollinated plants are the predominant culprits. Pollens of insect-pollinated plants are too large to remain airborne and pose no risk. Examples of plants commonly responsible for hay fever include:

  • Trees: such as birch (Betula), alder (Alnus), hazel (Corylus), hornbeam (Carpinus), horse chestnut (Aesculus), willow (Salix), poplar (Populus), plane (Platanus), linden/lime (Tilia) and olive (Olea). In northern latitudes birch is considered to be the most important allergenic tree pollen, with an estimated 15-20% of hay fever sufferers sensitive to birch pollen grains. Olive pollen is most predominant in Mediterranean regions.
  • Grasses (Family Poaceae): especially rye (Lolium sp.) and timothy (Phleum pratense). An estimated 90% of hay fever sufferers are allergic to grass pollen.
  • Weeds:ragweed (Ambrosia), plantain (Plantago), nettle/parietaria (Urticaceae), mugwort (Artemisia), Fat hen (Chenopodium) and sorrel/dock (Rumex)

In addition to individual sensitivity and geographic differences in local plant populations, the amount of pollen in the air can be a factor in whether hay fever symptoms develop. Hot, dry, windy days are more likely to have increased amounts of pollen in the air than cool, damp, rainy days when most pollen is washed to the ground. Interestingly however, many sufferers will experience the worst symptoms during rainy days.

The time of year at which hay fever symptoms manifest themselves varies greatly depending on the types of pollen to which an allergic reaction is produced. As most pollens are produced at fixed periods in the year, a long-term hay fever sufferer may also be able to anticipate when the symptoms are most likely to begin and end, although this may be complicated by an allergy to dust particles.

When an allergen such as pollen or dust is inhaled by a person with a sensitized immune system, it triggers antibody production. These antibodies mostly bind to mast cells, which contain histamine. When the antibodies are stimulated by pollen and dust, histamine (and other chemicals) are released. This causes itching, swelling, and mucus production. Symptoms vary in severity from person to person. Very sensitive individuals can experience hives or other rashes.

Some disorders may be associated with allergies. These include eczema and asthma, among others.

Allergies are common. Heredity and environmental exposures may contribute to a predisposition to allergies.

Symptoms

The effect of hayfever can vary greatly: some people may only be mildly afflicted, whereas others may suffer greatly. Common symptoms include:

  • coughing
  • headache
  • itching nose, mouth, eyes, throat, skin, or any area exposed to the allergen.
  • runny nose (and occasionally nosebleeds)
  • impaired smell (and thus sensitivity to flavours)
  • sneezing
  • stuffy nose (nasal congestion)
  • watering eyes
  • sore throat
  • wheezing
  • fever
  • cross-reactivity allergy to some fruits
  • conjunctivitis

Signs and tests

The history of the person's symptoms is important in diagnosing allergic rhinitis, including whether the symptoms vary according to time of day or the season; exposure to pets or other allergens; and diet changes.

Allergy testing may reveal the specific allergens the person is reacting to. Skin testing is the most common method of allergy testing. This may include intradermal, scratch, patch, or other tests. Less commonly, the suspected allergen is dissolved and dropped onto the lower eyelid as a means of testing for allergies. (This test should only be done by a physician, never the patient, since it can be harmful if done improperly.)

In some individuals who cannot undergo skin testing (as determined by the doctor), the RAST blood test may be helpful in determining specific allergen sensitivity.

Sufferers might also find that cross-reactivity occurs. For example, someone allergic to birch pollen may also find that they have an allergic reaction to the skin of apples or potatoes. A clear sign of this is the occurrence of an itchy throat after eating an apple or sneezing when peeling potatoes. This occurs because of similarities in the proteins of the pollen and the food. There are many cross-reacting substances.

Prevention

Avoiding exposure to pollen is the best way to decrease allergic symptoms.

  • Remain indoors in the morning and evening when outdoor pollen levels are highest.
  • Wear face masks designed to filter out pollen if you must be outdoors.
  • Keep windows closed and use the air conditioner if possible in the house and car.
  • Do not dry clothes outdoors.
  • Avoid unnecessary exposure to other environmental irritants such as insect sprays, tobacco smoke, air pollution, and fresh tar or paint.
  • Avoid mowing the grass or doing other yard work, if possible.
  • Regular hand- and face-washing removes pollen from areas where it is likely to enter the nose.
  • A small amount of vaseline around the eyes and nostrils will stop some pollen from entering the areas that cause a reaction
  • It may be helpful to humidify the room you are in to help clean the allergens out of the air, perhaps by using a humidifier, leaving a bowl of water around or leaving a wet towel in the room.
  • You may find it useful to breathe through a wet towel or tissue when you feel the symptoms are acute, if you don't have access to a face mask.

Treatment

The goal of treatment is to reduce allergy symptoms caused by the inflammation of affected tissues. The best "treatment" is to avoid what causes your allergic symptoms in the first place.

Medication

The most appropriate medication depends on the type and severity of symptoms. Specific illnesses that are caused by allergies (such as asthma and eczema) may require other treatments.

Options include the following:

  • Fast-acting strong antihistamines such as drugs including chlorphenamine which relieve the symptoms after a hayfever "attack".
  • Short-acting antihistamines, which are generally over-the-counter (non-prescription), often relieve mild to moderate symptoms, but can cause drowsiness. A pediatrician should be consulted before using these medicines in children, as they may affect learning. One formerly prescription medication, loratadine (Claritin®), is now available over the counter in many countries. It does not tend to cause drowsiness or affect learning in children. Azelastine (Astelin®) is the only antihistamine available as a nasal spray.
  • Longer-acting antihistamines cause less drowsiness, can be equally effective, and usually do not interfere with learning. These medications include fexofenadine (Allegra), and cetirizine (Zyrtec).
  • New leukotriene receptor antagonists, such as montelukast (Singulair) and zafirlukast (Accolate) have proven very effective in dealing with allergic rhinitis, without the common side-effects of the first-generation antihistimines, such as drowsiness. These medicines are also long-acting, and are recommended to be taken once-daily.
  • Corticosteroid nasal sprays are effective and somewhat safe, and may be effective without oral antihistamines. These medications include fluticasone (Flonase/Flixonase), budesonide (Rhinocort), mometasone (Nasonex), triamcinolone (Nasacort) and beclomethasone (Beconase®).
  • Topical decongestants may also be helpful in reducing symptoms such as nasal congestion, but should not be used for long periods as stopping them after protracted use can lead to a rebound nasal congestion (Rhinitis medicamentosa).
  • Cromolyn sodium (or cromoglycate) is a drug that stabilizes mast cells and prevent their degranulation and subsequent release of histamine. It is available as a nasal spray (Nasalcrom) for treating hay fever. Eye drop versions of cromolyn sodium (Crolom) are available for allergic conjunctivitis.
  • "Allergy shots" (Hyposensibilization, immunotherapy) are occasionally recommended if the allergen cannot be avoided and if symptoms are hard to control. This includes regular injections of the allergen, given in increasing doses (each dose is slightly larger than the previous dose) that may help the body adjust to the antigen. These tend to be offered as a last resort as the therapy is more expensive and can increase the risk of triggering a secondary allergic reaction such as an asthma attack.

Source: wikipedia GFDL

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