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Telomerase and the aging cell: implications for human health.

机译:端粒酶与衰老细胞:对人类健康的影响。

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Recent research has shown that inserting a gene for the protein component of telomerase into senescent human cells reextends their telomeres to lengths typical of young cells, and the cells then display all the other identifiable characteristics of young, healthy cells. This advance not only suggests that telomeres are the central timing mechanism for cellular aging, but also demonstrates that such a mechanism can be reset, extending the replicative life span of such cells and resulting in markers of gene expression typical of "younger" (ie, early passage) cells without the hallmarks of malignant transformation. It is now possible to explore the fundamental cellular mechanisms underlying human aging, clarifying the role played by replicative senescence. By implication, we may soon be able to determine the extent to which the major causes of death and disability in aging populations in developed countries-cancer, atherosclerosis, osteoarthritis, macular degeneration, and Alzheimer dementia--are attributable to such fundamental mechanisms. If they are amenable to prevention or treatment by alteration of cellular senescence, the clinical implications have few historic precedents.
机译:最近的研究表明,在衰老的人类细胞中插入端粒酶蛋白成分的基因可以将其端粒延长到年轻细胞的典型长度,然后这些细胞就显示出年轻健康细胞的所有其他可识别特征。这一进展不仅表明端粒是细胞衰老的主要计时机制,而且还证明了这种机制可以重置,从而延长了此类细胞的复制寿命,并产生了“年轻人”的典型基因表达标记(即,早期传代)没有恶变特征的细胞。现在有可能探索人类衰老的基本细胞机制,阐明复制性衰老所起的作用。言外之意,我们也许很快就能确定发达国家老龄化人口的死亡和残疾的主要原因,如癌症,动脉粥样硬化,骨关节炎,黄斑变性和阿尔茨海默氏痴呆,可归因于这种基本机制。如果它们适合通过改变细胞衰老来预防或治疗,则其临床意义尚无历史性的先例。

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