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Time series analysis of morbidity data for assessment of acute environmental health effects.

We present a method we developed to overcome some of the problems that are encountered in the attempts to identify acute health effects of environmental stimuli such as air pollution. To illustrate this method we have used daily records of asthmatic attacks in New York City. We also review some of the shortcomings of the presently used regression techniques, where a health variable is regressed on one or more environmental variables.

Air Pollution

[Exercise-induced asthma and placebos].

The effectiveness of a placebo in 15 patients with exercise-induced asthma (E.I.A., decrease of FEV1 by more than 10% after a standard run uphill on a treadmill) has been measured. 7 patients repeated the test without placebo protection, to separate the psychological effect of placebo from the emotional influences of the unusual environment of a technically highly developed hospital and adaptation to test procedures. On selection day FEV1 in % of preexercise value 10 min after exercise was 68.2 +/- 7.9% and on control day 67.1 +/- 9.5% (no statistical difference). The second stage comprised 14 patients who took the placebo or Cromolyn (Lomudal) before exercise; on selection day FEV1 in % of preexercise value 10 min after exercise was 70.1 +/- 4.8%; on placebo day it was 76.0 +/- 3.4% and on Cromolyn day 90.7 +/- 3.3%. There was statistically significant (p less than 0.025) protection by placebo. However, the protective effect of Cromolyn was much better than that of placebo (p less than 0.005). Placebo has a significantly greater protective effectiveness in E.I.A. than expected, and one much greater than previously suggested in preexisting asthma. As environmental influences were ruled out, the only explanation for the high degree of protection by placebo is the patients' trust in the placebo.

Adolescent

Functional Variant Discovery Identifies a Novel Genetic Link between SPRY2, Wood Smoke, and Asthma.

As a consequence of climate change and land-use policies, there has been a historic rise in wildfire smoke across the United States and the world. Although the deleterious effects of wildfire smoke and associated air pollution on asthma outcomes are established epidemiologically, genetic risks and molecular mechanisms of how wildfire smoke affects asthma are unknown. This knowledge gap hinders the identification of high-risk individuals and the creation of targeted therapies or recommendations to protect these individuals. We identified 52 genetic risk variants that colocalized with genomic responses to woodsmoke particles (WSPs), a model of wildfire particulate matter, and associated with asthma in the GERA (Genetic Epidemiology Research on Adult Health and Aging) cohort. We used additional filters to prioritize variants for direct testing of allele-dependent transcriptional regulatory function in plasmid reporters. We found that the rs3861144 variant (odds ratioasthma, 1.036) changes SPRY2 responses to WSPs in airway epithelial cells, which are involved in IL-8 secretion, ERK (extracellular signal-related kinase) activation, and mechanical scratch repair in cell culture. These findings provide insights into the molecular pathways through which WSPs may influence asthma risk and propose genetic candidates that warrant further study for their potential as clinical tools for asthma.

Asthma

A cross-sectional study of oxidative stress pathway genotypes and their interactions with environmental pollutant levels identifies associations with gene expression and lung function.

BACKGROUND: Asthma is a heterogeneous disease influenced by genetic and environmental factors. Fine particulate matter (PM2.5) exacerbates asthma, likely through oxidative stress pathways, but whether genetic variation modifies this effect remains unclear. METHODS: We analysed data on 948 adults with asthma from the Severe Asthma Research Program (SARP), linking ZIP-code-level PM2.5 exposure with whole-genome sequencing data. We tested 4337 single nucleotide polymorphisms (SNPs) in 120 oxidative stress pathway genes for gene-environment (GxE) interactions with PM2.5 on lung function (forced expiratory volume in 1 s [FEV1] % predicted) using weighted linear regression. Gene expression data from bronchial epithelial cells (n = 170) were used to assess cis-expression quantitative trait loci (eQTLs). FINDINGS: Higher PM2.5 exposure was associated with lower FEV1% predicted (β per μg/m3 = -0.7, p = 0.01). We identified 20 SNPs across seven genes (OXSR1, PXDN, TPO, LRRK2, APP, MSRA, MSRB2) with significant GxE interactions after multiple-testing correction. Five SNPs were also eQTLs, linking PM2.5-modified gene expression to lung function. Minor alleles in OXSR1 and PXDN were associated with reduced gene expression and worsened FEV1% under high PM2.5 exposure. Conversely, TPO variants were associated with higher baseline expression and lower lung function, but under increasing PM2.5 exposure, minor allele carriers showed suppressed TPO expression and improved FEV1%. INTERPRETATION: This study identified 20 SNPs in oxidative stress pathway genes that modify the effect of PM2.5 on lung function in asthma. These findings highlight the importance of integrating environmental context in genetic studies and suggest potential therapeutic targets for pollution-sensitive asthma phenotypes. FUNDING: Supported by NIH grants.

Cross-Sectional Studies

Multi-omics causal inference of childhood asthma triggered by ambient particulate matter.

BACKGROUND: The causal impact of fine particulate matter (PM2.5), an established environmental risk factor, on childhood asthma and its biological mechanisms remain to be elucidated. The objective of the present study was to evaluate the causal association between PM2.5 and childhood asthma and to dissect the mediating role of plasma proteins through a multi-omics integrated Mendelian randomisation (MR) framework. METHODS: Two-sample MR was performed on large-scale genome-wide association data to estimate the causal effect of PM2.5 on childhood asthma. Genes commonly associated with PM2.5 and childhood asthma were screened by transcriptome-wide association study (TWAS) and subjected to enrichment analyses and MR. Mediator proteins were identified by two-step MR. Potential adverse effects were scanned by phenome-wide MR (Phe-MR). RESULTS: MR revealed a significant positive causal effect of PM2.5 on childhood asthma (OR=1.897, 95% CI: 1.063-3.388, p=0.030). TWAS highlighted 70 genes co-expressed in PM2.5 and childhood asthma that were enriched in inflammatory pathways such as lysosome- and leukocyte-mediated immunity. MEAF6 was validated as a protective gene and RNF40 as a risk gene for childhood asthma. Two-step MR identified FUT10 as a positive mediator mediating 19.3% of the causal effect, and CD200 and MANBA as negative mediator proteins. Phe-MR indicated the association of these genes and proteins with multiple other diseases, implying possible adverse effects from therapeutic intervention. CONCLUSION: Long-term PM2.5 exposure is causally linked to childhood asthma with MEAF6, RNF40, CD200, MANBA and FUT10 identified as key molecules. The study provides new evidence for the biological mechanisms linking PM2.5 to childhood asthma.

Journal Article

The conflicting role of parasitic infections in modulating the prevalence of asthma.

Nothwithstanding difficulties associated with the limitations of survey techniques and methodology employed to define asthma, the evidence accumulated to date suggests that the reported differences in the prevalence rates of this disease from country to country and within local populations of the one country are real. It is accepted that allergy is not the sole cause of asthma but nonetheless hypersensitivity to environmental allergens is a significant triggering factor in most countries of the world. Comparisons between countries might therefore be influenced by the time of the year when the survey is taken since the prevalence of seasonal asthma would be higher in the period of pollinosis. Environmental factors, and in particular the relative atmospheric concentrations of pollens and the density of house dust mite (D. pteronyssinus and D. farinae) in dwellings, must therefore be considered when accumulating prevalence data. The prevalence rate for childhood asthma is high in Australia, United Kingdom, United States of America and New Zealand, and medium to low in the Scandinavian countries and Switzerland. It is not clear what factors contribute toward these differences since several studies indicate that racial characteristics per se are not pre-eminent in defining susceptibility to asthma. Most surveys indicate that the prevalence of childhood asthma is low to very low among low-income populations living in tropical areas. While it is possible to implicate inadequate diagnosis, genetic factors, nutritional status and allergen exposure as factors contributing towards the low prevalence, it has become fashionable to attribute this observation to the influence of certain helminthic infections. Parasites stimulate the production of high levels of serum IgE, the bulk of which has as yet an undetermined specificity. The suggestion that this IgE blocks mast cell receptors leaving insufficient sites available for sensitization by allergen-specific IgE antibody is attractive. However, since the kinetics of binding to mast cell receptors is unlikely to be the same for all IgE molecules, irrespective of their specificity, this hypothesis appears to be an oversimplification of the problem. It is more likely that parasitic infections repress the synthesis of IgE antibody to environmental allergens, although the mechanism for this is unclear. Circumstantial evidence suggests that the time course of exposure to parasites versus sensitization by environmental allergens may be critical. Another possibility is that parasitic infections in some way nullify the effect of allergens at the level of the target organ, perhaps through the modulating role of eosinophils. If it is established that parasitic infections, particularly in early childhood, suppress the capacity of potentially atopic children to develop asthma and other allergic disorders, there would be some justification in attempting to circumvent allergic disorders in susceptible individuals by a harmless preparation of parasite antigens.

Adolescent

Effect of environmental exposure on bronchial sensitivity to antigen.

Bronchial sensitivity to grass and ragweed extracts was determined in four adult asthmatic subjects at the beginning and end of the grass and ragweed pollen seasons. 4 subjects with ragweed sensitivity had increased bronchial sensitivity to ragweed antigen at the end of the ragweed season. 2 of 3 grass sensitive subjects demonstrated increased bronchial sensitivity to grass antigen after the grass pollen season. This study suggests that natural environmetnal exposure to pollen antigens may induce priming in the lung.

Adult

[Bronchial asthma due to occupation allergy of immediate type (I) to platinum salts (author's transl)].

Occupational inhalation allergy (bronchial asthma, rhinitis, conjunctivitis), often in association with urticaria and Quincke oedema is common in platinum associated industry. It is due to sensitization against platinum chloride. The reaction mechanism corresponds to the immediate type (I) allergy as shown by clinical tests (skin tests), in virtro (histamine release from leucocytes) and in vivo investigations (passive cutaneous anaphylaxis in apes). The degree of sensitization is so high that test investigations in affected persons must be performed with care. For prick testing with platinum chloride (PtCl6)2- or (PtCl4)2- an initial concentration of 10(-9) g/ml is recommended. As an average of 60% of people working in the platinum industry fall ill with bronchial asthma more stringent protective occupational measures are suggested.

Angioedema

Immediate hypersensitivity to hog trypsin resulting from industrial exposure.

Clinical, immunologic and psysiologic studies were undertaken to establish the role of hog trypsin dust in four cases of occupational asthma and to define the mechanism of this respiratory disease. Objective evidence was obtained that these patients, but not their asymptomatic co-workers, were allergic to trypsin, and that this fact accounted for their respiratory symptoms. Direct skin testing, passive transfer of IgE antibodies, antigen-mediated histamine release from peripheral blood leukocytes and airway obstruction in response to inhalation challenge indicated IgE-mediated, Type I hypersensitivity. These effects were induced by inactivated trypsin and were therefore independent of tryptic enzymatic activity. The data suggested that periodic skin testing for immediate sensitivity to organic dust would be an inexpensive and convenient screening procedure for early detection and prevention of some types of occupational asthma.

Aerosols

Asthma due to non-occupational exposure to toluene (tolylene) di-isocyanate.

The production of asthma by toluene di-isocyanate, aspirated into the ventilating system and emanating from the exhausts of a neighbouring factory, was established in three otherwise non-exposed clerical workers. Occupational-type exposure tests with a polyurethane varnish/toluene di-isocyanate mixture elicited vigorous and prolonged non-immediate asthmatic reactions, thus enabling identification of the otherwise, obscure etiological cause of their asthma.

Adult

Occupational formalin asthma.

Hypersensitivity to formalin used to sterilise artificial kidney machines was shown by inhalation provocation tests to be responsible for attacks of wheezing accompanied by productive cough in two members of the nursing staff of a haemodialysis unit. Three further members of the staff of 28 who were continually exposed to this substance occupationally had developed similar recurrent but less frequent episodes since joining the unit. Two underwent inhalation provocation tests with formalin which did not reproduce these symptoms. Single episodes of these symptoms had been noted by three additional staff members so that altogether eight (29%) had experienced attacks described as bronchitic since becoming exposed to formalin. We suggest that, while exposure to formalin did not seem to be directly responsible in all cases, it might have increased susceptibility to other provoking agents or induced a hyper-reactive responsiveness of the airways. The responses observed in the two nurses after inhalation provocation tests with fromalin were predominantly of airways obstruction. Wheezing began between two and three hours after exposure, and peak expiratory flow rates fell maximally by approximately 50%. Reactions persisted for 10 hours to 10 days depending on the exposure dose. A productive cough was a prominent feature. The sputum appeared to be mucopurulent, but culture produced a scanty growth of Haemophilus influenzae only, together with upper respiratory tract commensals. The cellular content was not homogeneous, neutrophil leucocytes and eosinophil leucocoytes variably dominating. Variable responses of neutrophil and eosinophil leucocytes were also seen in the peripheral blood.

Adult