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首页> 外文期刊>International journal of endocrinology >Epigenetic Modifications due to Environment, Ageing, Nutrition, and Endocrine Disrupting Chemicals and Their Effects on the Endocrine System
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Epigenetic Modifications due to Environment, Ageing, Nutrition, and Endocrine Disrupting Chemicals and Their Effects on the Endocrine System

机译:由于环境,衰老,营养和内分泌扰乱化学品及其对内分泌系统的影响而导致的表观遗传修饰

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The epigenome of an individual can be altered by endogenous hormones, environment, age, diet, and exposure to endocrine disrupting chemicals (EDCs), and the effects of these modifications can be seen across generations. Epigenetic modifications to the genome can alter the phenotype of the individual without altering the DNA sequence itself. Epigenetic modifications include DNA methylation, histone modification, and aberrant microRNA (miRNA) expression; they begin during germ cell development and embryogenesis and continue until death. Hormone modulation occurs during the ageing process due to epigenetic modifications. Maternal overnutrition or undernutrition can affect the epigenome of the fetus, and the effects can be seen throughout life. Furthermore, maternal care during the childhood of the offspring can lead to different phenotypes seen in adulthood. Diseases controlled by the endocrine system, such as obesity and diabetes, as well as infertility in females can be associated with epigenetic changes. Not only can these phenotypes be seen in F1, but also some chemical effects can be passed through the germline and have effects transgenerationally, and the phenotypes are seen in F3. The following literature review expands upon these topics and discusses the state of the science related to epigenetic effects of age, diet, and EDCs on the endocrine system.
机译:个体的表观蛋白组可以通过内源激素,环境,年龄,饮食和暴露于内分泌破坏化学品(EDC)来改变,并且可以在几代内看到这些修饰的影响。对基因组的表观遗传修饰可以改变个体的表型而不改变DNA序列本身。表观遗传修饰包括DNA甲基化,组蛋白修饰和异常微稻草(miRNA)表达;它们在生殖细胞发育和胚胎发生期间开始,继续死亡。由于表观遗传修饰,在老化过程中发生激素调制。母体过度或缺营可以影响胎儿的表观蛋白酶,并且可以在整个生命中看到效果。此外,后代童年期间的产妇护理可以导致成年期间看到的不同表型。由内分泌系统控制的疾病,例如肥胖症和糖尿病,以及女性中的不孕症可能与表观遗传变化有关。这些表型不能在F1中看到这些表型,而且可以通过种系可以通过种系,并具有转基因的效果,并且在F3中看到表型。以下文献综述扩大了这些主题,并讨论了与年龄,饮食和EDC在内分泌系统中的表观遗传效应相关的科学状态。

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