在环境表观遗传学中使用表观遗传时钟:估计围产期和儿科样本生物老化的建议。

IF 5.7 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Gillian England-Mason
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引用次数: 0

摘要

在各种早期环境经历和暴露之后,表观遗传修饰(如DNA甲基化)被认为是影响整个生命周期健康和疾病的候选机制。表观遗传时钟是一种衰老生物标志物,可以深入了解与早期环境暴露相关的年龄相关变化。这篇综述提供了一个简单的概述表观遗传时钟,很容易用于围产期和/或儿科样本,以及一些最近的研究已经研究了早期环境化学暴露和表观遗传老化率之间的关系。从广义上讲,容易获得的表观遗传时钟可分为实足年龄估计器和胎龄估计器,但有些时钟是为特定组织和/或年龄组开发的。先前的环境流行病学研究表明,早期环境暴露,如空气污染物和干扰内分泌的化学物质,与围产期和儿科人群表观遗传老化率的改变有关。然而,需要更多的研究来检验暴露水平、暴露时间和性别等因素如何影响关联的方向和程度。最后,对表观遗传时钟在环境表观遗传学中的应用提出了建议和未来发展方向。总的来说,表观遗传时钟是有希望的,早期暴露的非因果生物标志物,可以检查与环境化学物质,健康和疾病结果的关系,并作为生物介质。未来的研究可以帮助确定这些时钟是否有希望作为反映早期暴露于环境化学物质后发育表观毒性的信息生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Using epigenetic clocks in environmental epigenetics: recommendations for estimating biological aging in perinatal and pediatric samples.

Using epigenetic clocks in environmental epigenetics: recommendations for estimating biological aging in perinatal and pediatric samples.

Following a variety of early environmental experiences and exposures, epigenetic modifications such as DNA methylation are proposed as candidate mechanisms that contribute to health and disease across the lifespan. Epigenetic clocks are a type of aging biomarker that can offer insight into age-related changes associated with early environmental exposures. This review provides a brief overview of epigenetic clocks that are readily available for use with perinatal and/or pediatric samples, as well as highlights some recent research that has studied the associations between early environmental chemical exposures and epigenetic aging rates. Broadly, the easily accessible epigenetic clocks can be categorized as chronological age estimators and gestational age estimators, but some clocks were developed for use with specific tissues and/or age groups. Previous environmental epidemiology studies have shown that early environmental exposures such as air pollutants and endocrine-disrupting chemicals are associated with altered epigenetic aging rates in perinatal and pediatric populations. However, more research is needed that examines how factors such as exposure level, timing of exposure, and sex may affect the direction and magnitude of associations. This review concludes with some recommendations and future directions for the use of epigenetic clocks in environmental epigenetics. Overall, epigenetic clocks are promising, non-causal biomarkers of early exposures that can be examined in relation to environmental chemicals, health and disease outcomes, and as biological mediators. Future research could help determine whether these clocks hold promise as informative biomarkers that reflect developmental epigenotoxicity following early exposure to environmental chemicals.

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来源期刊
Essays in biochemistry
Essays in biochemistry 生物-生化与分子生物学
CiteScore
10.50
自引率
0.00%
发文量
105
审稿时长
>12 weeks
期刊介绍: Essays in Biochemistry publishes short, digestible reviews from experts highlighting recent key topics in biochemistry and the molecular biosciences. Written to be accessible for those not yet immersed in the subject, each article is an up-to-date, self-contained summary of the topic. Bridging the gap between the latest research and established textbooks, Essays in Biochemistry will tell you what you need to know to begin exploring the field, as each article includes the top take-home messages as summary points. Each issue of the journal is guest edited by a key opinion leader in the area, and whether you are continuing your studies or moving into a new research area, the Journal gives a complete picture in one place. Essays in Biochemistry is proud to publish Understanding Biochemistry, an essential online resource for post-16 students, teachers and undergraduates. Providing up-to-date overviews of key concepts in biochemistry and the molecular biosciences, the Understanding Biochemistry issues of Essays in Biochemistry are published annually in October.
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