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Early life exposure to lead (Pb) and changes in DNA methylation: relevance to Alzheimer's disease

机译:生命早期接触铅(Pb)和DNA甲基化的变化:与阿尔茨海默氏病的相关性

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摘要

Recent advances in neuroepigenetics have revealed its essential role in governing body function and disease. Epigenetics regulates an array of mechanisms that are susceptible to undergoing alteration by intracellular or extracellular factors. DNA methylation, one of the most extensively studied epigenetic markers is involved in the regulation of gene expression and also plays a vital role in neuronal development. The epigenome is most vulnerable during early the embryonic stage and perturbation in DNA methylation during this period can result in a latent outcome which can persist during the entire lifespan. Accumulating evidence suggests that environmental insults during the developmental phase can impart changes in the DNA methylation landscape. Based on reports on human subjects and animal models this review will explore the evidence on how developmental exposure of the known environmental pollutant, lead (Pb), can induce changes in the DNA methylation of genes which later can induce development of neurodegenerative disorders like Alzheimer's disease (AD).
机译:神经表观遗传学的最新进展已经揭示了其在调控机体功能和疾病中的重要作用。表观遗传学调节一系列机制,这些机制容易受到细胞内或细胞外因素的改变。 DNA甲基化是最广泛研究的表观遗传标记之一,参与基因表达的调控,并且在神经元发育中也起着至关重要的作用。表观基因组在胚胎早期最为脆弱,在此期间DNA甲基化的扰动可能会导致潜在的后果,并可能在整个生命周期中持续存在。越来越多的证据表明,发育阶段的环境侮辱可以使DNA甲基化格局发生变化。根据关于人类受试者和动物模型的报道,本综述将探索证据,证明已知环境污染物铅(Pb)的发育暴露如何能够诱导基因的DNA甲基化变化,随后可以诱导神经退行性疾病(如阿尔茨海默氏病)的发展(广告)。

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