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首页> 外文期刊>BioMed research international >Do Telomeres Adapt to Physiological Stress? Exploring the Effect of Exercise on Telomere Length and Telomere-Related Proteins
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Do Telomeres Adapt to Physiological Stress? Exploring the Effect of Exercise on Telomere Length and Telomere-Related Proteins

机译:端粒适应生理压力吗?探索运动对端粒长度和端粒相关蛋白的影响

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Aging is associated with a tissue degeneration phenotype marked by a loss of tissue regenerative capacity. Regenerative capacity is dictated by environmental and genetic factors that govern the balance between damage and repair. The age-associated changes in the ability of tissues to replace lost or damaged cells is partly the cause of many age-related diseases such as Alzheimer's disease, cardiovascular disease, type II diabetes, and sarcopenia. A well-established marker of the aging process is the length of the protective cap at the ends of chromosomes, called telomeres. Telomeres shorten with each cell division and with increasing chronological age and short telomeres have been associated with a range of age-related diseases. Several studies have shown that chronic exposure to exercise (i.e., exercise training) is associated with telomere length maintenance; however, recent evidence points out several controversial issues concerning tissue-specific telomere length responses. The goals of the review are to familiarize the reader with the current telomere dogma, review the literature exploring the interactions of exercise with telomere phenotypes, discuss the mechanistic research relating telomere dynamics to exercise stimuli, and finally propose future directions for work related to telomeres and physiological stress.
机译:衰老与以组织再生能力丧失为特征的组织变性表型有关。再生能力由环境和遗传因素决定,这些因素决定了破坏与修复之间的平衡。组织替换丢失或损坏的细胞的能力与年龄相关的变化部分是许多与年龄相关的疾病的原因,例如阿尔茨海默氏病,心血管疾病,II型糖尿病和肌肉减少症。一个成熟的衰老过程标记是染色体末端保护帽的长度,即端粒。端粒随着细胞分裂的增加和年龄的增长而缩短,端粒短与多种与年龄有关的疾病有关。几项研究表明,长期进行运动(即运动训练)与端粒长度的维持有关。然而,最近的证据指出了一些与组织特异性端粒长度反应有关的争议性问题。综述的目的是使读者熟悉当前的端粒教条,回顾探讨端粒表型与运动的相互作用的文献,讨论端粒动力学与运动刺激有关的机制研究,最后提出与端粒和端粒相关的未来研究方向生理压力。

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