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[Immunobiology of respiratory allergy].

Respiratory allergies are frequent and the etiological diagnosis is not always easy. Most often, the allergy assessment is vital. For the allergist, this assessment begins with skin tests which must be complemented by measurement of the level of specific IgE in case of doubt. For the generalist or physician who does not have special competence in allergy, an alternative to a specialist consultation at once is a multi-allergen test of detection. This assessment is necessary to set out the etiological diagnosis and facilitate the responsibility of the therapy.

Allergens↗

[Phadiatop: a new in vitro test for diagnosing respiratory allergy].

Respiratory diseases are very frequent in childhood, for the discrimination between atopic and non atopic causes. We therefore investigated a new in vitro test for specific IgE to inhalant allergens. Sera from 29 patients pediatrics with suspected allergic symptoms of the respiratory tract were analysed. Diagnosis was established by clinical history, PRIST, laboratory test, intradermal skin tests. The issue of our study show that Phadiatop can be effectively screened in the diagnosis of allergy in young children.

Child↗

[Stigmas and signs for the diagnosis of respiratory allergy].

The clinical allergy respiratory symptoms are more frequent every day and principally affect the pediatric population. An evaluation of stigmas and symptoms is made through a physical exploration in the allergy service of the "Instituto Nacional de Pediatría", searching the frequency in 100 pediatric patients. There were also analyzed some laboratory results and their relation with the atopic population.

Adolescent↗

Common environmental allergens causing respiratory allergy in India.

Respiratory allergy affects all age groups but the children are the worst affected by the respiratory allergy. Bioparticles from different biological sources are the main cause of allergy. Pollen grains, fungal spores, insect and other materials of biological origin form the most important allergen load in the air. For the efficient diagnosis of the allergy and its effective treatment it is very important to know about the prevalence, seasonal and annual variations of aeroallergens of the area. India being the climatically diversed country, there is diversity in the flora and fauna of different parts of the country. Atmospheric surveys carried out in different parts of India reveal that, Alanus nitida, Amarantus spinosus, Argemone mexicana Cocos nucifera, Betula utilis, Borasus flabellifer, Caraica papaya, Cedrus deodara, Cassia fistula, Parthenium, Chenopodium album, Dodonaea viscosa, Malotus phillipensis, Plantago ovata, Prosopis juliflora, Ricinus communis, Holoptelea intergifolia are the allergenically important pollens of the country. Among the fungal aeroallergens, Alternaria, Candida aibieans, Aspergillus versicolor, Aspergillus terreus, Aspergillus japonicus, Cladosporium cladosporoides, Fusarium roseum, Ganoderma lucidum,Neurospora sitophila Helminthosporium, Ustilago trtici, Uromyses are important allergens. Dust mites D. farinae, D.pteronyssinus are also important source of inhalant allergens particularly in the coastal areas of the country. Cockroaches, beetles, weevils, mosquitoes, house flies also contribute towards the aeroallergen load and are allergenically implicated. Avoidance of the indoor and outdoor aeroallergens is recommended for better management of respiratory allergy.

Allergens↗

[Importance of air purifiers in the prevention of respiratory allergy].

Prevention of respiratory allergy and thus diminution of its prevalence consists of the application not only of preventative measures on the allergens themselves, but also on atmospheric pollutants such as NO, CO and diesel particles. These modify the allergens and increase synthesis of allergen-specific IgE. Use of air purifiers, on condition that they have HEPA or ULPA filters may contribute to reduction of allergenicity linked to pollutants and are one of the not-negligible means of protection from respiratory allergy and asthma in particular.

Air Conditioning↗

Respiratory allergy in the dog: induction by the respiratory route and the effect of passive antibody.

A technique for inducing hypersensitivity to prairie sage pollen (Artemisia gnopheles) in the dog was developed. The allergen induced skin reactivity in most dogs and respiratory hypersensitivity in 7 of the 17 animals tested. The respiratory hypersensitivity resembled naturally occurring respiratory allergies in both man and dog. The route of allergy induction resembles the natural route and it is felt that this system provides a useful model system for the study of respiratory allergies. Animals in which hypersensitivity was induced were used to investigate the role of passive 'blocking' antibody in respiratory allergy. It was observed that passive antibody will greatly inhibit the respiratory response to inspired allergen while completely inhibiting the cutaneous response. The results of these studies are discussed in relation to other studies.

Administration, Intranasal↗

[Diathesis and the prevention of asthma and respiratory allergies].

Asthma and respiratory allergies arise from the union of innate (predisposing and hereditary) and acquired factors (e.g. environmental). Without yet being perfectly elucidated there will in the future be a better understanding of the basic concept of the "diathesis" of allergic asthma. It includes the hereditary transmission of sensitising capacity to various major allergens and also of bronchial hyperactivity whose congenital predisposition is shown by studies of groups of twins; but perhaps it is not indispensable to the genesis of asthma, since it apparently may be acquired, as for example in occupational asthma. The understanding of the diathesis enables the prediction of respiratory allergic risk and consequently the early initiation of preventative measures in those new-born at high risk. Together these preventative steps consist of quite a heavy burden, whose efficacy remains imperfect but always timely.

Asthma↗

[Exploration of respiratory allergies and prevention].

Respiratory allergies are found in more than 50% of the asthmatics. Allergen sources and their secondary reservoirs are better known. The different methods of exploration of allergic asthma consist of clinical history, skin tests, and in vitro tests particularly measurement of specific serum IgE. Specific challenge tests are realized with nebulized allergenic extracts as well as in the realistic manner with substances in occupational environment. It is equally important to evaluate the allergenic environment, especially by simple but informative techniques such as the Acarex test for mites. The eviction methods are the same for primary prevention (to prevent sensitization) as well as for the secondary prevention (to reduce the disease exacerbation in the patients already sensitized). The eviction methods mainly concern the allergens of mites, domestic animals, cockroaches and the molds.

Allergens↗

[Effectiveness of a test for verification of the presence of acari in house dust for the prevention of respiratory allergies in children].

Respiratory allergy and bronchial asthma in particular can be serious afflictions in younger as well as in older children. Therefore interest has been focused on methods for the prevention of atopy. The role and allergenic importance of Dermatophagoides pteronyssinus (Dpt) in house and other environments have been identified. This mite provokes asthma in children at an earlier age than pollens. However the most under-valued area of asthma prevention is environmental control. The steps may seem difficult at first, but the results will be well worth the efforts and the sacrifices. We report on the high effectiveness of the guanine detection test (Acarex) based on the colorimetric quantification of allergen sources in house dust (mattresses, pillows, upholstered furniture, carpets, moquettes, etc), which can be treated with house dust mite extermination products such as benzyl benzoate. The eradication measures will allow the parents to reduce the allergen exposure, to be monitored at 3-6 month intervals. The guanine detection test performed in our Division on house dust samples assembled by the patents of children with house dust mite induced asthma (study group) or pollen asthma (control group) yielded highly significant statistical differences.

Acari↗

Salsola pollen as a predominant cause of respiratory allergies in Kuwait.

BACKGROUND: Respiratory allergies are common in Kuwait, and the role of certain allergens has been previously documented. OBJECTIVE: To evaluate the results of skin prick tests to a range of allergens that were considered relevant to the vegetation surveys and aerobiological studies performed in Kuwait. METHOD: New patients attending our center during August 2002 to February 2003 with asthma or allergic rhinitis underwent skin prick tests to a battery of allergens. RESULTS: A total of 451 patients aged 5 to 60 years (mean age, 29.5 years) were tested. Of these patients, 403 (89.4%) had a positive test result to at least one allergen and were considered allergic. A total of 76.7% of the allergic patients had a positive reaction to Salsola pollen, with a mean wheal diameter of 8.25 mm (median, 8 mm). Chenopodium album was positive in 57.6% and Bermuda grass was positive in 38.2% of the allergic cases. Indoor allergens seemed to play a lesser role than pollens: Dermatophagoides pteronyssinus was positive in only 37.5%, and American and German cockroaches were positive in 33.2% and 22.3%, respectively. All the allergens other than Salsola elicited a mean wheal diameter of less than 6.25 mm (median, < or = 6 mm). CONCLUSIONS: Indoor allergens seem to play a lesser role in respiratory allergies in Kuwait. Most allergic patients become sensitized to pollens; the strongest and most frequent reaction is from Salsola pollen. Salsola imbricata is found growing extensively in most areas of the country, flowering mainly in autumn, when the most common pollen is of the Chenopod-Amaranth type and when most patients with seasonal allergic rhinitis become symptomatic.

Adolescent↗

[Food allergy in patients with respiratory allergy. Diagnostic possibilities and problems].

UNLABELLED: In the past two years the authors examined 28 patients with abdominal complaints and allergic respiratory symptoms. Detailed internal, gastroenterological, allergological examinations were made. METHODS: 1 skin Prick-test (SPT) with inhalative and nutritive panel 2. measuring of food-specific (gliadin, alpha-lactalbumin beta-lactoglobulin, ovalbumin) IgG-antibody level detecting with ELISA method, 3. leukocyte migration inhibition (LMI) test against the same foodstuffs, 4. histological examination of the stomach and the duodenum especially for mucosal mastocytes (MMCs). RESULTS: 1. SPT was positive in 23/28 patients for inhalative, but in the 5 cases we did not identify any inhalative allergen. The SPT for the main foodstuffs were positive in 18 patients while in 3 other patients there was urtica only for the other antigens. 2. The food-specific IgG-antibody level was increased in 18/27 patients against one or more antigens. The SPTs and the antibody determination showed identity in 8/18 cases. 3. The LMI tests were positive against one or more main food-products in 23/27 cases. There was common positivity in respect of antigens (between LMI test and antibody identification) in 17 cases. Pathological immunological reactions were presented against the same main foodstuffs with at least two methods for flour in 11, for egg in 10 and for milk in 12 patients. Endoscopic examinations were performed in 27 cases. The number of the MMCs were increased in 22/27 patients. After a specific elimination diet open-food challenges were performed and they confirmed the results of the in vitro and in vivo examinations. CONCLUSION: It is common that the respiratory allergic symptoms in atopic patients accompanied with food allergy for the main foodstuffs caused not only more severe respiratory symptoms, but abdominal complaints too. In respect to the many positive LMI tests the late-type hypersensitivity have important pathogenetical role in it. This three methods together define well the main food-products, which can be antigens as well. The examination of the MMCs supports the local disturbance in the immunoregulatory system.

Adolescent↗

The role of outdoor air pollution and climatic changes on the rising trends in respiratory allergy.

Evidence suggests that allergic respiratory diseases such as hay fever and bronchial asthma have become more common world-wide in the last two decades, and the reasons for this increase are still largely unknown. A major responsible factor could be outdoor air pollution, derived from cars and other vehicles. Studies have demonstrated that urbanization and high levels of vehicle emissions and westernized lifestyle is correlated with the increasing frequency of pollen-induced respiratory allergy. People who live in urban areas tend to be more affected by pollen-induced respiratory allergy than those from of rural areas. Pollen allergy has been one of the most frequent models used to study the interrelationship between air pollution and respiratory allergic diseases. Pollen grains or plant-derived paucimicronic components carry allergens that can produce allergic symptoms. They may also interact with air pollution (particulate matter, ozone) in producing these effects. There is evidence that air pollutants may promote airway sensitization by modulating the allergenicity of airborne allergens. Furthermore, airway mucosal damage and impaired mucociliary clearance induced by air pollution may facilitate the access of inhaled allergens to the cells of the immune system. In addition, vegetation reacts with air pollution and environmental conditions and influence the plant allergenicity. Several factors influence this interaction, including type of air pollutants, plant species, nutrient balance, climatic factors, degree of airway sensitization and hyperresponsiveness of exposed subjects.

Air Pollution↗

Segregation analyses of asthma and respiratory allergy: the Humboldt family study.

We performed segregation analyses of asthma and respiratory allergy based on data from 309 nuclear families comprising 1,053 individuals living in the town of Humboldt, Saskatchewan, in 1993, using the REGD program of the S.A.G.E. program package. For adults, information on asthma and history of respiratory allergy was provided by the subjects themselves, and for children by their parents. When asthma was considered as the trait in segregation analysis, models of no major effect, with or without familial effects, were rejected, but they were not rejected after adjusting for history of respiratory allergy. The major gene hypothesis was not rejected before adjusting for history of respiratory allergy. When respiratory allergy was analyzed as the trait, both major gene and multifactorial models fitted the data well, regardless of whether there was adjustment for asthma or not. Other covariates adjusted for in the segregation analyses were age, sex, number of household smokers, current smoking, number of household members, generation, and house type. The data suggest that a major gene related to respiratory allergy may explain the familial aggregation of asthma.

Adolescent↗

Cytokine fingerprinting and hazard assessment of chemical respiratory allergy.

Allergic sensitization of the respiratory tract resulting in occupational asthma and other symptoms can be caused by a variety of chemicals and represents an important occupational health problem. Although there is a need to identify and characterize those chemicals that are able to cause respiratory allergy, there are currently no well validated or widely accepted predictive test methods. Some progress has been made with guinea pig assays, but our attention in this laboratory has focused instead on the development of novel approaches based on an understanding of the nature of immune responses induced in mice by chemical allergens. We have shown that whereas contact allergens provoke in mice selective type 1 immune responses, characterized by the secretion by draining lymph node cells (LNC) of high levels of the cytokine interferon gamma (IFN-gamma), chemical respiratory allergens stimulate instead preferential type 2 responses associated with comparatively high levels of interleukins 4 and 10 (IL-4 and IL-10). The divergent immune responses provoked by different classes of chemical allergens, and the phenotypes of selective cytokine secretion that characterize such responses, form the basis of a novel method-cytokine fingerprinting--that permits chemicals that have the potential to cause respiratory allergy to be identified and distinguished from those that are associated primarily with contact sensitization. In this article the immunobiological basis for cytokine fingerprinting is considered and the development, evaluation and practical application of the assay are reviewed.

Allergens↗

Contact allergy from Frullania and respiratory allergy from Thuja.

Occupational allergic contact dermatitis in 52 forest-workers was caused by sesquiterpene lactones from liverworts (Frullania) and by usnic acid from lichens which grow on various trees including cedar (Thuja). Occupational asthma and rhinitis in 35 wood-workers was caused by wood dust of western red cedar (Thuja plicata). Characteristically, the respiratory symptoms occurred in the evening and at night and not during working hours; inhalation challenge with plicatic acid from the wood provoked immediate, late or dual (combined immediate and late) asthmatic reactions. Another class of compounds, tropolones, derived from Thuja plicata wood, was responsible for dermatitis in a wood-worker. These distinct industrial hazards in two groups of workers at the tree-felling and wood-working levels in the forest-products industry can be identified by clinical history and examination supplemented by specific cutaneous or respiratory clinical investigation.

Alcohols↗

Allergenicity of common foods restricted in respiratory allergy.

Although hypersensitivity to foods is often linked to exacerbations of symptoms of respiratory allergy, no such information is available regarding the foods traditionally considered to play a probable etiological role in respiratory allergy in India, which are in fact quite different from the ones implicated in the West. The present study was undertaken to investigate whether the practice of withholding certain common foods by parents and practitioners of indigenous systems of medicine (i.e. Ayurvedic and Unani systems of medicine) in children suffering from respiratory allergy had any scientific basis or explanation as judged by modern techniques of investigation. Skin prick tests were performed on 64 children with symptoms pertaining to respiratory allergy (32 each in study and control group) using crude antigenic food extracts. Oral food challenges were administered to children to confirm or rule out allergenicity of food (s) incriminated on the basis of the clinical history and/or a positive skin test. Parental history of food restriction alone, in absence of positive skin prick test was of little value in predicting a positive response to the food challenges (1 challenge positive out of 77 based on food restriction: 1.29%). Only 27.02% and 18.75% of positive skin tests were found to be clinically significant in study and control groups respectively. Traditionally, food beliefs were upheld in only 12.5% children for immediate onset clinical reactions (with 5.31% of the foods restricted in their diet) and 9.37% children for delayed onset clinical reactions (with 3.19% of the foods restricted in their diet). The present study shows that even though food restriction is a common practice in patients with respiratory allergy in India, objective documentation of Type I reactions due to these foods cannot be obtained in a majority of such children.

Adolescent↗