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糖尿病的发育起源:环境表观基因组学与新兴模式。

Developmental origins of diabetes mellitus: Environmental epigenomics and emerging patterns.

机构信息

Obstetrics and Gynecology Hospital, Institute of Reproduction and Development, Fudan University, Shanghai, China.

Research Units of Embryo Original Diseases, Chinese Academy of Medical Sciences, Shanghai, China.

出版信息

J Diabetes. 2023 Jul;15(7):569-582. doi: 10.1111/1753-0407.13403. Epub 2023 May 16.

Abstract

Mounting epidemiological evidence indicates that environmental exposures in early life have roles in diabetes susceptibility in later life. Additionally, environmentally induced diabetic susceptibility could be transmitted to subsequent generations. Epigenetic modifications provide a potential association with the environmental factors and altered gene expression that might cause disease phenotypes. Here, we bring the increasing evidence that environmental exposures early in development are linked to diabetes through epigenetic modifications. This review first summarizes the epigenetic targets, including metastable epialleles and imprinting genes, by which the environmental factors can modify the epigenome. Then we review the epigenetics changes in response to environmental challenge during critical developmental windows, gametogenesis, embryogenesis, and fetal and postnatal period, with the specific example of diabetic susceptibility. Although the mechanisms are still largely unknown, especially in humans, the new research methods are now gradually available, and the animal models can provide more in-depth study of mechanisms. These have implications for investigating the link of the phenomena to human diabetes, providing a new perspective on environmentally triggered diabetes risk.

摘要

越来越多的流行病学证据表明,生命早期的环境暴露在晚年的糖尿病易感性中起作用。此外,环境诱导的糖尿病易感性可能会传递给后代。表观遗传修饰提供了一种与环境因素和改变的基因表达相关的潜在关联,这种改变可能导致疾病表型。在这里,我们提出越来越多的证据表明,发育早期的环境暴露通过表观遗传修饰与糖尿病有关。这篇综述首先总结了环境因素可以通过表观遗传靶点(包括不稳定的表观等位基因和印迹基因)修饰表观基因组的情况。然后,我们回顾了在关键发育窗口、配子发生、胚胎发生以及胎儿和出生后期间,对环境挑战的表观遗传变化,以糖尿病易感性为例。尽管这些机制在很大程度上仍然未知,特别是在人类中,但新的研究方法现在逐渐可用,动物模型可以提供对机制的更深入研究。这些对于研究这些现象与人类糖尿病之间的联系具有重要意义,为环境触发的糖尿病风险提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3388/10345978/752c66deeb04/JDB-15-569-g001.jpg

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