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选择胎盘的早期生活环境暴露和 DNA 甲基化。

Select Early-Life Environmental Exposures and DNA Methylation in the Placenta.

机构信息

Gangarosa Department of Environmental Health, Rollins School of Public Health, Emory University, Atlanta, USA.

出版信息

Curr Environ Health Rep. 2023 Mar;10(1):22-34. doi: 10.1007/s40572-022-00385-1. Epub 2022 Dec 5.

Abstract

PURPOSE OF REVIEW

To summarize recent literature relating early-life environmental exposures on DNA methylation in the placenta, to identify how variation in placental methylation is regulated in an exposure-specific manner, and to encourage additional work in this area.

RECENT FINDINGS

Multiple studies have evaluated associations between prenatal environmental exposures and placental methylation in both gene-specific and epigenome-wide frameworks. Specific exposures lead to unique variability in methylation, and cross-exposure assessments have uncovered certain genes that demonstrate consistency in differential placental methylation. Exposure studies that assess methylation effects in a trimester-specific approach tend to find larger effects during the 1st trimester exposure. Earlier studies have more targeted gene-specific approaches to methylation, while later studies have shifted towards epigenome-wide, array-based approaches. Studies focusing on exposures such as air pollution, maternal smoking, environmental contaminants, and trace metals appear to be more abundant, while studies of socioeconomic adversity and circadian disruption are scarce but demonstrate remarkable effects. Understanding the impacts of early-life environmental exposures on placental methylation is critical to establishing the link between the maternal environment, epigenetic variation, and long-term health. Future studies into this field should incorporate repeated measures of exposure throughout pregnancy, in order to determine the critical windows in which placental methylation is most heavily affected. Additionally, the use of methylation-based scores and sequencing technology could provide important insights into epigenetic gestational age and uncovering more genomic regions where methylation is affected. Studies examining the impact of other exposures on methylation, including pesticides, alcohol, and other chemicals are also warranted.

摘要

目的综述

总结近期有关生命早期环境暴露对胎盘 DNA 甲基化的影响的文献,明确环境暴露特异性调节胎盘甲基化的方式,并鼓励该领域的进一步研究。

研究进展

多项研究评估了产前环境暴露与特定基因和全基因组范围内胎盘甲基化之间的相关性。特定暴露导致甲基化的独特变异性,交叉暴露评估揭示了某些在胎盘甲基化差异方面表现出一致性的基因。在特定孕期评估甲基化效应的暴露研究往往在孕早期暴露时发现更大的效应。早期研究更倾向于采用有针对性的特定基因的甲基化方法,而后来的研究则转向基于全基因组、基于阵列的方法。关注空气污染、母亲吸烟、环境污染物和痕量金属等暴露因素的研究似乎更为丰富,而关于社会经济逆境和昼夜节律紊乱的研究则很少,但却显示出显著的影响。了解生命早期环境暴露对胎盘甲基化的影响对于建立母体环境、表观遗传变异和长期健康之间的联系至关重要。未来该领域的研究应在整个孕期重复测量暴露,以确定胎盘甲基化受影响最严重的关键时期。此外,基于甲基化的评分和测序技术的使用可以为了解基于甲基化的妊娠年龄提供重要见解,并揭示更多受甲基化影响的基因组区域。研究其他暴露对甲基化的影响,包括杀虫剂、酒精和其他化学物质,也是必要的。

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