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首页> 外文期刊>Journal of assisted reproduction and genetics >Improvement of gamete quality by stimulating and feeding the endogenous antioxidant system: mechanisms, clinical results, insights on gene-environment interactions and the role of diet
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Improvement of gamete quality by stimulating and feeding the endogenous antioxidant system: mechanisms, clinical results, insights on gene-environment interactions and the role of diet

机译:通过刺激和喂养内源性抗氧化系统来改善配子质量:机制,临床结果,对基因环境相互作用的见解以及饮食的作用

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摘要

Oxidative damage triggers extensive repair in gametes and thereafter in the zygote but it results in clinically relevant damage when affecting the maturation of the gametes chromatin, i.e. padlocking and epigenetic marking. It associates with defective DNA methylation and/or with oxidation of the methyl marks leading to derangement of gamete epigenetics, defects of chromatin condensation and aneuploidy. A proper feed to the one carbon cycle has the potential to stimulate the endogenous antioxidant defences, i.e. gluthatione synthesis, and to activate compensative homeostatic mechanisms restoring both the oxy-redox balance and DNA methylation, which are indeed strictly cross-regulated. This has been shown to produce measurable clinical improvements of male reproductive potential in pilot studies herein summarised. However, the effects of dietary habits and of supplementations are variable according to the individual genetic substrate, as genetic variants of several of the concerned enzymes occur with high frequency. Individual risk assessments and personalised interventions are still difficult to implement, in the meantime, a very varied diet may facilitate metabolic compensation in the majority of the cases. This review aims to report on the mechanisms of damage, on the opportunities to modulate the physiologic oxy-redox homeostasis by means of a varied diet or dietary supplements and on the open issues related to the genetic variability of the population.
机译:氧化损伤触发在游戏中的广泛修复,然后在Zygote中进行了大量修复,但它会在影响配子染色质的成熟时导致临床相关损伤,即挂锁和表观遗传标记。它与缺陷的DNA甲基化和/或氧化甲基标记的染色,导致配子外观遗传学的紊乱,染色质缩合的缺陷和非倍差。对一个碳循环的适当进料具有刺激内源性抗氧化剂防御,即Gluthatione合成,并激活补偿性稳态机制恢复氧氧化还原平衡和DNA甲基化,这确实严格地进行了严格调节。这已被证明在本文的试验研究中产生了可衡量的临床改进,概述了本发明的试验研究。然而,饮食习惯和补充的影响是根据个体遗传底物的可变的,因为几种有关酶的遗传变异以高频率发生。与此同时,个人风险评估和个性化干预措施仍然难以实施,饮食非常多样化,可能促进大多数情况下的代谢补偿。本综述旨在通过各种饮食或膳食补充剂以及与人口遗传变异有关的公开问题来报告损害机会的机会,了解损害的机会。

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