Department of Preventive Medicine, Feinberg School of Medicine, Northwestern University, Chicago, Illinois, USA.
Occup Environ Med. 2013 Oct;70(10):743-9. doi: 10.1136/oemed-2012-101350. Epub 2013 Jun 17.
Telomeres are complexes of tandem repeats of DNA (5'-TTAGGG-3') and protein that cap eukaryotic chromosomes and play a critical role in chromosome stability. Telomeres shorten with aging and this process can be accelerated by increased oxidative stress and episodes of inflammation. Evidence is rapidly growing that telomere length (TL) may be affected by environmental chemicals that have frequently been associated with chronic diseases. In this article, we review the published data on TL in relation to environmental and occupational exposure to several chemicals based on our own and others' studies. The environmental and occupational exposures associated with shorter TL include traffic-related air pollution (ie, particulate matter (PM), black carbon (BC), and benzene and toluene), polycyclic aromatic hydrocarbons (PAHs), N-nitrosamines, pesticides, lead, exposure in car mechanical workshops, and hazardous waste exposure. Arsenic, persistent organic pollutants (POPs) and short-term exposure to PM are associated with longer TL. We discuss the possible reasons for the differences in results, including time- and dose-related issues, study design, and possible mechanisms involved in telomere regulation. We also discuss the future directions and challenges for TL-related environmental and occupational health research, such as investigation of TL in subpopulations of blood leukocytes, and the study of genetic and epigenetic factors that may regulate telomere integrity using longitudinal designs.
端粒是 DNA(5'-TTAGGG-3')和蛋白质的串联重复复合物,它们覆盖真核染色体并在染色体稳定性中发挥关键作用。随着年龄的增长,端粒会缩短,而氧化应激增加和炎症发作会加速这一过程。有越来越多的证据表明,端粒长度(TL)可能受到与慢性疾病频繁相关的环境化学物质的影响。在本文中,我们根据自己和他人的研究,综述了与几种化学物质的环境和职业暴露相关的 TL 发表数据。与较短 TL 相关的环境和职业暴露包括与交通有关的空气污染(即颗粒物(PM)、黑碳(BC)和苯、甲苯)、多环芳烃(PAHs)、N-亚硝胺、农药、铅、汽车机械车间的暴露以及危险废物暴露。砷、持久性有机污染物(POPs)和 PM 的短期暴露与较长 TL 有关。我们讨论了结果差异的可能原因,包括时间和剂量相关问题、研究设计以及端粒调节中涉及的可能机制。我们还讨论了 TL 相关环境和职业健康研究的未来方向和挑战,例如在血液白细胞亚群中研究 TL,以及使用纵向设计研究可能调节端粒完整性的遗传和表观遗传因素。