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空气污染应激与衰老表型:端粒的关联。

Air Pollution Stress and the Aging Phenotype: The Telomere Connection.

机构信息

Centre for Environmental Sciences, Hasselt University, 3500, Hasselt, Belgium.

Department of Public Health & Primary Care, Leuven University, 3000, Leuven, Belgium.

出版信息

Curr Environ Health Rep. 2016 Sep;3(3):258-69. doi: 10.1007/s40572-016-0098-8.

Abstract

Aging is a complex physiological phenomenon. The question why some subjects grow old while remaining free from disease whereas others prematurely die remains largely unanswered. We focus here on the role of air pollution in biological aging. Hallmarks of aging can be grouped into three main categories: genomic instability, telomere attrition, and epigenetic alterations leading to altered mitochondrial function and cellular senescence. At birth, the initial telomere length of a person is largely determined by environmental factors. Telomere length shortens with each cell division and exposure to air pollution as well as low residential greens space exposure is associated with shorter telomere length. Recent studies show that the estimated effects of particulate air pollution exposure on the telomere mitochondrial axis of aging may play an important role in chronic health effects of air pollution. The exposome encompasses all exposures over an entire life. As telomeres can be considered as the cellular memories of exposure to oxidative stress and inflammation, telomere maintenance may be a proxy for assessing the "exposome". If telomeres are causally related to the aging phenotype and environmental air pollution is an important determinant of telomere length, this might provide new avenues for future preventive strategies.

摘要

衰老是一个复杂的生理现象。为什么有些个体在没有患病的情况下衰老,而有些个体则过早死亡,这个问题在很大程度上仍未得到解答。我们在这里关注的是空气污染在生物衰老中的作用。衰老的特征可以分为三大类:基因组不稳定性、端粒磨损和表观遗传改变,导致线粒体功能改变和细胞衰老。在出生时,一个人的初始端粒长度在很大程度上取决于环境因素。随着每个细胞的分裂以及暴露于空气污染和低居住绿地,端粒长度会缩短。最近的研究表明,颗粒物空气污染暴露对衰老的端粒-线粒体轴的估计影响可能在空气污染对慢性健康的影响中起着重要作用。暴露组包含了一生中所有的暴露。由于端粒可以被认为是对氧化应激和炎症暴露的细胞记忆,因此端粒的维持可能是评估“暴露组”的替代指标。如果端粒与衰老表型有因果关系,并且环境空气污染是端粒长度的重要决定因素,那么这可能为未来的预防策略提供新的途径。

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