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Biomedical subjects

M Wjst

Publications and source records attributed to M Wjst.

72 records · Page 4Linked to original sources

Collaborative study on the genetics of asthma in Germany.

In several clinical centres in Germany (Berlin, Hamburg, Munich and others) a collaborative study on the genetics of asthma is being performed. It started at the beginning of 1995, when 100 nuclear families with two or more affected siblings were recruited. The participants are being characterized by interview information, methacholine challenge, peak flow variability, skin-prick test, total and specific IgE.

Adolescent↗

Bronchial hyperreactivity and history of wheezing in children.

UNLABELLED: The objective of this analysis was to determine the relationship between wheezing at different age groups in children and the prevalence of bronchial hyperreactivity at the age of 10. A population-based cross-sectional study was conducted in Leipzig and the region around Halle in Germany. Of 3105 10-year-old children, 2658 questionnaires (85.6%) were returned. In addition 2279 (73.4%) pulmonary function tests were performed before and after cold air challenge. 658 children (24.8%) had recurrent wheezing during their lifetime. In 579 children the individual time course could be evaluated (46 children with and 533 without a physician-confirmed diagnosis of asthma). Wheezing began most frequently in the 1st year of life (44.1% of all wheezing children) with the highest annual prevalence in the 3rd year (71.0% of all wheezing children). Wheezing which started in the first 2 years of life, had disappeared in most of the children by the age of 10. However, if wheezing began later than the 3rd year it was more persisting. Bronchial hyperreactivity measured after cold air challenge was higher in the group with recurrent wheezing (24.1%) than in the group without wheezing (18.8%, P = 0.004). CONCLUSION: Wheezing is a very common symptom in childhood and only partly associated with later bronchial hyperreactivity. On the other hand, asthma is often not diagnosed despite bronchial hyperreactivity and many years of wheezing.

Age Factors↗

Indoor factors and IgE levels in children.

The objective of the study was to determine indoor characteristics of households in relation to total serum IgE. In a population-based cross-sectional study, 1096 6-12-year-old children were examined in three East German towns (Eisleben, Hettstedt, and Zerbst). Of the questionnaires, 772 (70.4%) were returned by the parents. Serum IgE of 703 children and urinary cotinine in a random subsample of 224 children were analyzed. Linear regression on log(IgE) adjusted for the main covariates was used to assess indoor risk factors such as room size, and the presence of curtains, carpet, and plants in the child's room. Open-heating facilities indoors, passive smoking, and furniture made of chipboard had the most important effect. A higher urinary cotinine/creatinine ratio was associated with higher total IgE level. Total IGE increased also with the number of persons living in the household, independently of indoor smoking. We conclude that indoor air pollution from smoking and open-heating facilities may increase the IgE levels of children. The role of other factors such as chipboard, which could reflect the emission of formaldehyde, or the number of persons per household, which could reflect viral or helminthic infection, remains to be analyzed.

Air Pollution, Indoor↗

Pertussis infection and allergic sensitization.

BACKGROUND: The immunogenic activity of B. pertussis infection has been described in various laboratory, animal, and clinical studies. There is, however, no information on the impact of pertussis on allergies in the total population. OBJECTIVE: To compare the prevalence of allergic sensitization and allergic rhinitis in children with and without previous pertussis infection. METHODS: A population-based, cross-sectional study was carried out on 13,937 10-year-old children in the western (Munich and Southern Bavaria) and eastern parts of Germany (Leipzig and the region around Halle). A total of 11,969 questionnaires (85.9%) given to the parents were collected. Data from 9,484 German children (questionnaire and skin prick tests with six different allergens) were analyzed. RESULTS: Pertussis was much more common in the western than in the eastern part of Germany. The adjusted odds ratio for any allergic sensitization after pertussis was only slightly increased in western Germany with 1.3 (95% confidence limits 1.2 to 1.5) and in eastern Germany with 1.5, (1.2 to 1.8) but not for allergic rhinitis with 1.0 (0.7 to 1.4) and in Eastern Germany 1.3 (0.8 to 1.9). CONCLUSIONS: Infection with pertussis seems to have only a weak influence on allergic sensitization and does not explain the observed differences in allergic sensitization between western and eastern Germany.

Asthma↗

Road traffic and adverse effects on respiratory health in children.

OBJECTIVES: To examine whether road traffic in a big city has a direct effect on pulmonary function and respiratory symptoms in children. DESIGN: Cross sectional study. SETTING: Of all 7445 fourth grade children (aged 9-11 years) in Munich, 6537 were examined. Of the children with German nationality and the same residence during the past five years and known exposure data, 4678 questionnaires and 4320 pulmonary function tests could be analysed. MAIN OUTCOME MEASURES: Variables of pulmonary function by forced expiration and respiratory symptoms reported in a questionnaire; census data on car traffic collected in the school district. RESULTS: Density of car traffic ranged from 7000 to 125,000 cars per 24 hours. Multiple regression analysis of peak expiratory flow showed a significant decrease of 0.71% (95% confidence interval 1.08% to 0.33%) per increase of 25,000 cars daily passing through the school district on the main road. Maximum expiratory flow when 25% vital capacity had been expired was decreased by 0.68% (1.11% to 0.25%). In contrast, response to cold air challenge was not increased. The adjusted odds ratio for the cumulative prevalence of recurrent wheezing with the same exposure was 1.08 (1.01 to 1.16). Cumulative prevalence of recurrent dyspnoea was increased, with an odds ratio of 1.10 (1.00 to 1.20). Lifetime prevalence of asthma (odds ratio 1.04; 0.89 to 1.21) and recurrent bronchitis (1.05; 0.98 to 1.12) were not significantly increased. CONCLUSIONS: High rates of road traffic diminish forced expiratory flow and increase respiratory symptoms in children.

Automobiles↗

Evaluation of cold air challenge data in a population sample using a model of bronchial hyperreactivity and disposition to bronchial obstruction.

To explore the role of bronchial hyperreactivity and obstruction after cold air challenge, data from a cross-sectional study of more than 7,000 10-year-old children were used. Current knowledge of hyperreactivity is primarily based on pharmacological provocation tests with variable prechallenge flow rates and their decrease relative to baseline. Using forced expiratory volume (FEV) in 1 sec values before and after cold air challenge, however, it is possible to define a subsample of children with predominant hyperreactivity and a subsample with predominant obstruction after challenge. The prevalence of respiratory symptoms and the diagnoses in the two subsamples were compared. The analysis showed that children with bronchial obstruction have nearly the same frequency of respiratory symptoms as those with bronchial hyperreactivity. A combined model of bronchial obstruction and hyperreactivity was, therefore, more predictive of symptoms than a model of hyperreactivity alone.

Air↗

Reactivity to cold-air hyperventilation in normal and in asthmatic children in a survey of 5,697 schoolchildren in southern Bavaria.

The measurement of bronchial hyperreactivity (BHR) may give additional information to questionnaire-based studies of asthma prevalence. It is desirable to have a provocation method with high specificity that avoids the use of pharmacologic provocations in large numbers of healthy children. It was the aim of this study to establish a range of values for responsiveness to cold-air challenge in normal children, to describe its specificity and sensitivity for a diagnosis of asthma in a large unselected sample of schoolchildren in a field study, and to measure factors associated with hyperresponsiveness. All fourth-grade schoolchildren (9 to 11 yr of age) in Munich and several southern Bavarian communities (n = 9,403) were surveyed with a questionnaire (response rate, 87%), baseline lung function, and cold-air hyperventilation challenge (n = 5,697). A diagnosis of asthma was reported in 7.9% of children. In the reference group, the ninety-fifth percentile (%ile) for the change of FEV1 (DFEV1) was -9.0%; the 90%ile was -7.3%. Asymptomatic children fulfilling all criteria for the reference group showed a significantly increased reactivity if they had a family history of asthma (p = 0.038). With a cutoff for DFEV1 of -9.0% or -7.3% the respective sensitivities to "detect" a diagnosis of asthma were 21.6 and 30.7%, and for asthma with symptoms during the previous 12 months it was 26.2 and 35.1%. Reactivity to cold air increased with the number of episodes of asthma in the previous 12 months. In a multiple linear regression model, factors associated with increased reactivity to cold air were diagnosed asthma, hay fever, male sex, younger age, and a positive skin test.(ABSTRACT TRUNCATED AT 250 WORDS)

Asthma↗

[Cold air hyperventilation provocation].

The prevalence of asthma was determined by a parental questionnaire in 9403 schoolchildren aged 9-11 years. A cold air challenge was done in 7248 of these children to test for bronchial hyperresponsiveness. Regarding the doctor diagnoses of asthma as reported by the parental questionnaire the specificity of the cold air challenge was 92.5%, the sensitivity 28.7%, the positive predictive value 9.1% and the negative predictive value 98%.

Asthma↗

Month of birth and allergic disease at the age of 10.

The relationship between month of birth and asthma, hay fever and skin sensitization to mixed grass pollen was analysed in a population-based cross-sectional study in Munich and Bavaria 1989-1990 of 6535 10-year-old children. The relative risk of developing atopic disease is calculated by comparing the prevalence in a single month with the prevalence of all other months. A slightly increased risk of developing allergic skin sensitization for grass pollen (n = 1128) was found for February (odds ratio, 1.3, 95% confidence interval 1.0-1.6), May (1.4, 1.1-1.8) and June (1.3, 1.0-1.6). For hay fever (n = 379) an increase was found for May (1.5, 1.0-2.1) and for allergic asthma (n = 277) for August (1.4, 1.0-2.1). A protective effect was observed for certain months of birth; September for allergic sensitization (0.8, 0.6-1.0), October for and November for hay fever (0.6, 0.3-0.9). The occurrence of hay fever and positive prick test is explained by the seasonal variation of atmospheric grass pollen and the peak in August of asthmatic patients by house dust. Date of birth appears therefore to slightly influence the risk of developing an allergic sensitization and allergic diseases.

Child↗

Genetic risk for asthma, allergic rhinitis, and atopic dermatitis.

In order to explore the genetic risk of a child with a family history of allergies developing asthma, allergic rhinitis, or atopic dermatitis, questionnaires filled in by 6665 families were analysed. The data were collected in a population based cross sectional survey of 9-11 year old schoolchildren living in Munich and southern Bavaria. The relation between asthma, allergic rhinitis, and atopic dermatitis and the number of allergic first degree relatives, and the type of allergic disease was examined. Analyses were done separately for families with single or multiple allergic diseases. In families with one allergic parent the risk of the child developing asthma was increased by asthma in a parent, with an odds ratio (OR) of 2.6 (95% confidence interval 1.7 to 4.0) but not by parental allergic rhinitis with OR 1.0 (0.7 to 1.5) or atopic dermatitis, OR 1.0 (0.6 to 1.6). For allergic rhinitis the highest risk with OR 3.6 (2.9 to 4.6) was observed with allergic rhinitis of one parent, apparently lower for asthma of one parent, OR 2.5 (1.6 to 4.0) or atopic dermatitis, OR 1.7 (1.1 to 2.5). Children with parental atopic dermatitis had a high risk for atopic dermatitis, OR 3.4 (2.6 to 4.4), compared with children with parental asthma, OR 1.5 (1.0 to 2.2), or parental allergic rhinitis, OR 1.4 (1.1 to 1.8). Risk factors in families with combined allergies of two relatives (parents and siblings) were analysed separately for the different combinations. These results support the hypothesis that asthma, allergic rhinitis, and atopic dermatitis are multifactorial diseases brought about by various familial and environmental influences.

Asthma↗

[Effects of passive smoking on the pediatric respiratory tract].

OBJECTIVE: To explore the risk of parental smoking to the respiratory health of their children data of a cross sectional study on fourth-grade schoolchildren in Munich and Southern Bavaria were analysed. METHODS: Allergic and asthmatic diseases and symptoms, risk factors like family history, indoor pollution and parental smoking were evaluated by a questionnaire. Pulmonary function tests were performed in 7284 school children aged (9-11 years). Lung function values were adjusted for height, weight, sex and other confounders. RESULTS: The children, whose parents smoke at home, had significantly lower levels of peak flow, MEF75, MEF50 and MEF25 compared to children from non-smoking families, with a dose-response relationship. Smoking of more than 20 cigarettes at home is associated with a mean decrease in MEF75 of 5.7%, in MEF50 of 4.9% and in Peak Flow of 4.9% (p < 0.001). The prevalence of cough and wheezing increased with increasing smoking rates of the parents. CONCLUSIONS: Passive exposure to smoke has direct measurable dose-dependent effects on the respiratory system of children.

Asthma↗

[Does breast feeding prevent asthma and allergies? Results of the Munich asthma and allergy study].

The relationship of breast feeding to atopic diseases is studied in a population-based cross sectional study in Munich and Bavaria 1989/1990 in 6,535 german ten year old children. According to the questionnaire answers 1914 (29.3%) children were not breast fed, 2,368 (36.2%) shorter than 2 months, 1,744 (26.7%) 2 to 6 months and 509 (7.8%) more than 6 months. Compared to controls without any allergic disease the relative risk of later asthma, hayfever, atopic dermatitis and of allergic skin sensitization was not diminished by breast feeding. The same result pertained to high risk subgroups defined by positive family history of asthma or hayfever. It is concluded that breast feeding alone has no long term protective effect against atopic diseases.

Asthma↗

[Prevalence of asthma in 6,000 10-year-old children in Munich and Upper Bavaria based on physicians' diagnoses and a symptom score].

In the Munich Survey on Asthma and Allergy the parents of 9,349 fourth-class schoolchildren (mean age 9.8 years) in Munich and Southern Bavaria were addressed by a questionnaire to which 8,204 responded (87%). In 7,192 children (76%) a skin prick test was performed and 7,284 (77%) had pulmonary function tests with maximum expiratory flow-volume loops before and after cold air challenge. Of the 6,083 children of German nationality, 160 children (2.6%) had physician-diagnosed asthma, 79 (1.3%) so called asthmoid bronchitis and 373 children (6.1%) spastic bronchitis. Since physician-diagnosed diseases does not reflect all children with respiratory disease, symptoms reported in the questionnaire, results of skin prick and pulmonary function tests were combined to a score of probable asthma (VSA) with 9 items. Of the group with physician-diagnosed asthma, 79.4% of the children (127) have an elevated VSA, of 68.4% (54) of asthmoid bronchitis, 35.9% (134) of spastic bronchitis, 11.4% (192) of simple bronchitis and 3% of (114) never-diagnosed bronchial disease. The cumulative prevalence of asthma in ten-year-old children is therefore estimated at 10.2%. Only half of these children have been diagnosed with asthmatic disease.

Asthma↗

Factors affecting internal mercury burdens among eastern German children.

Internal burdens of mercury were evaluated among 5- to 14-y-old eastern German children in the heavily polluted areas of Bitterfeld, a center of chemical production and coal mining, and Hettstedt, a region of nonferrous metal smelting and mining. We compared blood and urine mercury concentrations in these children with mercury burdens in children who lived in a control area. The unadjusted geometric means of mercury levels in the total group were 0.25 microg/l (95% confidence interval = 0.24, 0.27) in blood and 0.36 microg mercury/g creatinine (95% confidence interval = 0.33, 0.39) in urine. Mercury levels in blood and urine were not significantly higher in children who occupied the two polluted areas, compared with children in the control area. The most significant factor that affected urinary mercury levels was the number of dental amalgam fillings; 27% of the variance in the regression model was explained by the presence of these fillings.

Adolescent↗

Effect of cadmium body burden on immune response of school children.

The effects of cadmium on measures of immune-system function were determined from a health survey of school children in heavily polluted regions of eastern Germany. A representative sample of 842 students, aged 5-14 y, was included in logistic regression analyses in which the relationship between urinary cadmium content and blood immunoglobulin levels was examined. Investigators further evaluated a subsample of 807 students to determine cadmium's effect on the immediate hypersensitivity reactions elicited by skin-prick challenges with 12 common aeroallergens. Several potentially confounding factors were controlled for, after which investigators found that increasing body burdens of cadmium were associated consistently with dose-dependent suppression of immediate hypersensitivity and of immunoglobin G, but not immunoglobulins M, A, or E levels. The immunoglobulin pattern observed in exposed children led investigators to suggest that secondary humoral responses were impaired by cadmium.

Adolescent↗