Department of Epidemiology, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands.
Department of Bioinformatics, Isfahan University of Medical Sciences, Isfahan, Iran.
Clin Epigenetics. 2022 Jun 30;14(1):82. doi: 10.1186/s13148-022-01301-y.
Given the global increase in air pollution and its crucial role in human health, as well as the steep rise in prevalence of metabolic syndrome (MetS), a better understanding of the underlying mechanisms by which environmental pollution may influence MetS is imperative. Exposure to air pollution is known to impact DNA methylation, which in turn may affect human health. This paper comprehensively reviews the evidence for the hypothesis that the effect of air pollution on the MetS is mediated by DNA methylation in blood. First, we present a summary of the impact of air pollution on metabolic dysregulation, including the components of MetS, i.e., disorders in blood glucose, lipid profile, blood pressure, and obesity. Then, we provide evidence on the relation between air pollution and endothelial dysfunction as one possible mechanism underlying the relation between air pollution and MetS. Subsequently, we review the evidence that air pollution (PM, ozone, NO and PAHs) influences DNA methylation. Finally, we summarize association studies between DNA methylation and MetS. Integration of current evidence supports our hypothesis that methylation may partly mediate the effect of air pollution on MetS.
鉴于全球范围内的空气污染不断增加及其对人类健康的重要作用,以及代谢综合征(MetS)的患病率急剧上升,深入了解环境污染可能影响 MetS 的潜在机制至关重要。众所周知,空气污染会影响 DNA 甲基化,进而可能影响人类健康。本文全面综述了空气污染通过血液 DNA 甲基化影响 MetS 的假设的证据。首先,我们总结了空气污染对代谢失调的影响,包括 MetS 的组成部分,即血糖、血脂谱、血压和肥胖方面的紊乱。然后,我们提供了空气污染与血管内皮功能障碍之间的关系的证据,这是空气污染与 MetS 之间关系的一个可能机制。随后,我们回顾了空气污染(PM、臭氧、NO 和 PAHs)影响 DNA 甲基化的证据。最后,我们总结了 DNA 甲基化与 MetS 之间的关联研究。综合现有证据支持我们的假设,即甲基化可能部分介导了空气污染对 MetS 的影响。