PubMed HealthSearch

Biomedical subjects

J B Clough

Publications and source records attributed to J B Clough.

7 recordsLinked to original sources

Genetic 'risk' for atopy is associated with delayed postnatal maturation of T-cell competence.

Recent in vitro studies suggest that IgE production in adults is co-ordinately regulated by negative signals from gamma IFN-producing CD4+ T-helper-1 (TH-1) and positive signals from IL-4 producing (TH-2) T-cells. Additionally, seroepidemiological evidence has pinpointed infancy as the period of maximum lifetime risk for T-cell sensitization to ubiquitous environmental antigens. The present study sought to elucidate the relationship between these observations, by examination of CD4+ T-cell function in normal children and those genetically at 'high risk' for atopy, spanning the age range (up to 4 years) in which IgE responses to environmental allergens is typically manifest. Immunocompetent T-cell precursor frequencies (determined by cloning at limiting dilution) were markedly reduced in 'high risk' children relative to normals (0.53 +/- 0.29 vs 0.26 +/- 0.19; P = 0.0025). Consistent with reports from other laboratories employing bulk T-cell culture techniques, the gamma IFN producing capacity of CD4+ T-cell clones from both groups of children were markedly reduced relative to adults, and was lowest in the high risk group (P < 0.02). IL-4 production by CD4+ T-cell clones from the normal children was within the adult range, but again was significantly lower in the high risk group (P < 0.00005). This indicates that initial immune responses to environmental allergens in early childhood occur against a background of maturational 'deficiency' in CD4+ T-cell function, and suggests the possibility that variations in the rate of postnatal maturation of T-cell competence may be a contributing factor in the development of differing patterns of immunological responsiveness to environmental allergens.

Adult

Longitudinal changes in skin-prick test reactivity over 2 years in a population of schoolchildren with respiratory symptoms.

As part of a larger epidemiological study, 114 children with respiratory symptoms, born between 1978 and 1980, were skin-prick tested to Dermatophagoides pteronyssinus (DP), mixed grass pollens (G) and cat dander (C), and to histamine and saline controls (Bencard, U.K.) using 1 mm prick-lancets (Dome/Hollister-Stier), between July and September 1987 and again in October 1989. A weal > or = 2 mm to one or more allergens was regarded as a positive result. Each child was tested by the same investigator on each occasion, using similar techniques. Three children were excluded from analysis as they had failed to respond to histamine testing on one of the two occasions. In 1987, of the 111 children analysed, 58 (52%) children were skin-test positive, and 53 (48%) skin-test negative, while in 1989 62 (56%) were positive and 49 (44%) negative. Twelve children (11%) changed status from negative to positive, while eight (7%) changed from positive to negative. For the group as a whole the percentage agreement between the results obtained 2 years apart was 82%. In comparison to previous studies a greater number of subjects in this population than expected changed atopic status. We therefore further examined the data from those who had changed status and classified as borderline those subjects with no difference in weal size of greater than 2 mm for any allergen between 1987 and 1989. Only five children then changed status from negative to positive, none from positive to negative and 15 demonstrated only borderline changes. The coefficients of repeatability for the 106 children who did not change status were 3.37 mm, 2.80 mm and 2.33 mm for D. pteronyssinus, mixed grass pollens and cat dander respectively. The good short-term repeatability of the testing method was demonstrated in a group of 29 similar children; the coefficients of repeatability were 0.38 mm for DP and G, and 0.72 mm for C. These data demonstrate that, in a population of children with respiratory symptoms, skin-prick testing within individuals is highly repeatable over the short term, but poorly repeatable over a 2 year period. However, the percentage agreement in skin-prick test status for the group as a whole was high (82%). While no child became unequivocally skin-test negative having been previously positive, a small number of children changed status from negative to unequivocally positive, suggesting a genuine but small (4%) increase in the prevalence of skin-test positivity in this population.

Allergens

Profile of bronchial responsiveness in children with respiratory symptoms.

A postal questionnaire inquiring into the presence of respiratory symptoms was sent to 3698 children aged 7 and 8 years. Those reporting either cough or wheeze were randomised, and a sample invited to attend for skin testing. A total of 192 symptomatic children, half of whom were atopic and half non-atopic, were randomly selected to enter the study. All children performed and recorded best of three peak expiratory flow measurements twice a day and completed a 10 point respiratory symptom score card each day for one year. They also recorded all treatment taken and made a note of relevant life events. Each child was seen monthly for general assessment and for measurement of nonspecific bronchial responsiveness to methacholine. Of the 192 children, 183 successfully completed the study. For six subjects 11 measurements of the provocation dose required to cause a 20% fall in forced expiratory volume in one second (PD20) were available for analysis and on the remaining 177, greater than or equal to 12 measurements. The prevalence and degree of bronchial hyper-responsiveness (PD20 less than 6.4 mumol) and its relationship to atopy was examined by comparing the percentage of members of each symptom group demonstrating bronchial hyper-responsiveness and the number of occasions on which they did so, and by comparison of minimum and median PD20 values. The range of bronchial responsiveness shown during the study period by each child was expressed as doubling doses of methacholine and compared between symptom groups. Atopy and wheeze were both independently associated with an increased prevalence and greater degree of bronchial hyper-responsiveness when compared with non-atopy and cough respectively, all differences being significant a the 0.001 level.. Thirty three per cent of subjects demonstrated a rnge of methacholine responsiveness of >4 and 13.4% of >6 doubling doses during one year.

Bronchi

Airway response to exercise and methacholine in children with respiratory symptoms.

Thirty atopic and 30 non-atopic subjects were identified from a population of 7-8 year old children with current respiratory symptoms. The response of the airways to exercise and provocation by methacholine were compared. In these children, who had symptoms but were not necessarily asthmatic, there was no significant correlation between the two stimuli. The atopic children were, however, significantly more responsive than the non-atopic children to both. For the whole group, odds ratios derived for atopy and for an increased response to methacholine (expressed as a PD20--the dose that caused the forced expiratory volume in one second (FEV1) to fall by 20%--of less than 6.4 mumol/l), a positive exercise test (greater than 15% fall in FEV1), and the presence of asthma were 13.5, 3.3, and 21.0, respectively; that for positive response to methacholine and positive exercise challenge was 1.5. Thus though increased bronchial responsiveness to methacholine and exercise challenge are both associated with a diagnosis of asthma, the association between the two stimuli is complex, and supports the view that they reflect entirely different components of airways dysfunction.

Asthma

Effect of atopy on the natural history of symptoms, peak expiratory flow, and bronchial responsiveness in 7- and 8-year-old children with cough and wheeze. A 12-month longitudinal study [published errarum appears in Am Rev Respir Dis 1992 Aug;146(2):540].

Recurrent lower respiratory tract symptoms are common and disabling in childhood, but little is known of their natural history and relationship to asthma. We report a 12-month longitudinal study designed to determine the influence of atopy on respiratory symptoms and bronchial responsiveness in 7- and 8-yr-old children. A postal questionnaire inquiring into the presence of respiratory symptoms was sent to 3,698 children aged 7 and 8 yr. Those reporting either current wheeze (14.8%) or current cough in the absence of wheeze (12.8%) were randomized, and a sample was invited to attend for skin testing. The following groups of symptomatic children entered the longitudinal study: 48 atopic children with cough, 48 atopic children with wheeze, 48 nonatopic children with cough, and 48 nonatopic children with wheeze. All children recorded twice daily the best of three peak expiratory flow (PEF) measurements and completed a 10-point symptom score card, each day for 1 yr. They also recorded all treatment taken and made a note of relevant life events. Each child was seen monthly for general assessment and for measurement of methacholine bronchial responsiveness. Despite the arduous nature of the study 183 of the 192 children (95.3%) successfully completed the 12 months of observation. Symptom groups were compared with regard to FEV1, bronchial responsiveness, symptom chronicity and severity, and diurnal and day-to-day variation in PEF. Atopy was associated with a lower FEV1, increased prevalence of bronchial hyperresponsiveness, greater within-day and between-day variation in PEF, and greater severity of respiratory symptoms compared with the absence of atopy. Wheeze was associated with lower FEV1, increased prevalence of bronchial hyperresponsiveness, greater within-day and between-day variation in PEF1 and greater severity of respiratory symptoms compared with cough [corrected].

Bronchial Provocation Tests