HLA-DPB1 E69 genotype and exposure in beryllium sensitisation and disease

Author:

Crooks James,Mroz Margaret M,VanDyke Michael,McGrath Alison,Schuler Christine,McCanlies Erin CORCID,Virji M Abbas,Rosenman Kenneth D,Rossman Milton,Rice Carol,Monos Dimitri,Fingerlin Tasha E,Maier Lisa AORCID

Abstract

ObjectivesHuman leukocyte antigen-DP beta 1 (HLA-DPB1) with a glutamic acid at the 69th position of the ß chain (E69) genotype and inhalational beryllium exposure individually contribute to risk of chronic beryllium disease (CBD) and beryllium sensitisation (BeS) in exposed individuals. This retrospective nested case–control study assessed the contribution of genetics and exposure in the development of BeS and CBD.MethodsWorkers with BeS (n=444), CBD (n=449) and beryllium-exposed controls (n=890) were enrolled from studies conducted at nuclear weapons and primary beryllium manufacturing facilities. Lifetime-average beryllium exposure estimates were based on workers’ job questionnaires and historical and industrial hygienist exposure estimates, blinded to genotype and case status. Genotyping was performed using sequence-specific primer-PCR. Logistic regression models were developed allowing for over-dispersion, adjusting for workforce, race, sex and ethnicity.ResultsHaving no E69 alleles was associated with lower odds of both CBD and BeS; every additional E69 allele increased odds for CBD and BeS. Increasing exposure was associated with lower odds of BeS. CBD was not associated with exposure as compared to controls, yet the per cent of individuals with CBD versus BeS increased with increasing exposure. No evidence of a gene-by-exposure interaction was found for CBD or BeS.ConclusionsRisk of CBD increases with E69 allele frequency and increasing exposure, although no gene by environment interaction was found. A decreased risk of BeS with increasing exposure and lack of exposure response in CBD cases may be due to the limitations of reconstructed exposure estimates. Although reducing exposure may not prevent BeS, it may reduce CBD and the associated health effects, especially in those carrying E69 alleles.

Funder

National Center for Advancing Translational Sciences

National Institute of Environmental Health Sciences

Publisher

BMJ

Subject

Public Health, Environmental and Occupational Health

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Hypersensitivity Reactions in the Respiratory Tract;Reference Module in Biomedical Sciences;2024

2. Realistic biomarkers from plasma extracellular vesicles for detection of beryllium exposure;International Archives of Occupational and Environmental Health;2022-05-12

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