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Age-associated molecular changes are deleterious and may modulate life span through diet

机译:与年龄相关的分子变化是有害的,并可能通过饮食调节寿命

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Transition through life span is accompanied by numerous molecular changes, such as dysregulated gene expression, altered metabolite levels, and accumulated molecular damage. These changes are thought to be causal factors in aging; however, because they are numerous and are also influenced by genotype, environment, and other factors in addition to age, it is difficult to characterize the cumulative effect of these molecular changes on longevity. We reasoned that age-associated changes, such as molecular damage and tissue composition, may influence life span when used in the diet of organisms that are closely related to those that serve as a dietary source. To test this possibility, we used species-specific culture media and diets that incorporated molecular extracts of young and old organisms and compared the influence of these diets on the life span of yeast, fruitflies, and mice. In each case, the “old” diet or medium shortened the life span for one or both sexes. These findings suggest that age-associated molecular changes, such as cumulative damage and altered dietary composition, are deleterious and causally linked with aging and may affect life span through diet.
机译:整个生命周期的过渡都伴随着许多分子变化,例如基因表达失调,代谢产物水平改变和分子损伤累积。这些变化被认为是衰老的原因。但是,由于它们数量众多,并且还受年龄影响,而且还受基因型,环境和其他因素的影响,因此很难描述这些分子变化对寿命的累积影响。我们认为与年龄相关的变化(例如分子损伤和组织组成)在与与饮食来源密切相关的生物的饮食中使用时可能会影响寿命。为了测试这种可能性,我们使用了特定物种的培养基和饮食,其中结合了年轻和古老生物的分子提取物,并比较了这些饮食对酵母,果蝇和小鼠的寿命的影响。在每种情况下,“老”饮食或中等饮食都会缩短一个或两个性别的寿命。这些发现表明,与年龄相关的分子变化(例如累积损伤和饮食结构的变化)是有害的,并且与衰老有因果关系,并可能影响饮食的寿命。

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