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Oxidative Stress and Epigenetic Regulation in Ageing and Age-Related Diseases

机译:衰老和年龄相关疾病的氧化应激和表观遗传调控

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摘要

Recent statistics indicate that the human population is ageing rapidly. Healthy, but also diseased, elderly people are increasing. This trend is particularly evident in Western countries, where healthier living conditions and better cures are available. To understand the process leading to age-associated alterations is, therefore, of the highest relevance for the development of new treatments for age-associated diseases, such as cancer, diabetes, Alzheimer and cardiovascular accidents. Mechanistically, it is well accepted that the accumulation of intracellular damage determined by reactive oxygen species (ROS) might orchestrate the progressive loss of control over biological homeostasis and the functional impairment typical of aged tissues. Here, we review how epigenetics takes part in the control of stress stimuli and the mechanisms of ageing physiology and physiopathology. Alteration of epigenetic enzyme activity, histone modifications and DNA-methylation is, in fact, typically associated with the ageing process. Specifically, ageing presents peculiar epigenetic markers that, taken altogether, form the still ill-defined “ageing epigenome”. The comprehension of mechanisms and pathways leading to epigenetic modifications associated with ageing may help the development of anti-ageing therapies.
机译:最新统计数据表明,人口正在迅速老龄化。健康,但也有病的老年人正在增加。这种趋势在西方国家尤其明显,那里有更健康的生活条件和更好的治疗方法。因此,了解导致年龄相关性改变的过程与开发与年龄相关的疾病,例如癌症,糖尿病,阿尔茨海默氏病和心血管意外的新疗法具有最高的相关性。从机理上讲,公认的是,由活性氧(ROS)决定的细胞内损伤的积累可能会导致对生物体内平衡控制的逐步丧失和衰老组织的典型功能损害。在这里,我们回顾了表观遗传学如何参与应激刺激的控制以及衰老生理学和生理病理学的机制。实际上,表观遗传酶活性,组蛋白修饰和DNA甲基化的改变通常与衰老过程有关。具体而言,衰老呈现出独特的表观遗传标记,这些标记共同构成了仍然不确定的“衰老表观基因组”。对与衰老相关的表观遗传修饰的机制和途径的理解可能有助于抗衰老疗法的发展。

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