首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Stress Resistance Screen in a Human Primary Cell Line Identifies Small Molecules That Affect Aging Pathways and Extend Caenorhabditis elegans’ Lifespan
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Stress Resistance Screen in a Human Primary Cell Line Identifies Small Molecules That Affect Aging Pathways and Extend Caenorhabditis elegans’ Lifespan

机译:人类原代细胞系中的抗压力筛选可识别影响衰老途径并延长秀丽线虫的寿命的小分子

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摘要

Increased resistance to environmental stress at the cellular level is correlated with the longevity of long-lived mutants and wild-animal species. Moreover, in experimental organisms, screens for increased stress resistance have yielded mutants that are long-lived. To find entry points for small molecules that might extend healthy longevity in humans, we screened ∼100,000 small molecules in a human primary-fibroblast cell line and identified a set that increased oxidative-stress resistance. Some of the hits fell into structurally related chemical groups, suggesting that they may act on common targets. Two small molecules increased ’ stress resistance, and at least 9 extended their lifespan by ∼10–50%. We further evaluated a chalcone that produced relatively large effects on lifespan and were able to implicate the activity of two, stress-response regulators, / and / , in its mechanism of action. Our findings suggest that screening for increased stress resistance in human cells can enrich for compounds with promising pro-longevity effects. Further characterization of these compounds may reveal new ways to extend healthy human lifespan.
机译:在细胞水平上增加的对环境胁迫的抗性与长寿命突变体和野生动物物种的寿命相关。此外,在实验生物中,针对增加的抗逆性的筛选产生了长寿命的突变体。为了找到可能延长人类健康寿命的小分子的切入点,我们在人原代成纤维细胞系中筛选了约100,000个小分子,并确定了一组可增加抗氧化应激能力的分子。一些命中属于结构相关的化学类别,表明它们可能对共同的目标起作用。两个小分子提高了抗压力能力,至少有9个小分子将其寿命延长了约10–50%。我们进一步评估了查尔酮,其对寿命产生相对较大的影响,并且能够在其作用机理中暗示两个应激反应调节因子/和/的活性。我们的发现表明,筛选人细胞中增加的抗逆性可以富集具有前途长寿效应的化合物。这些化合物的进一步表征可能揭示出延长人类健康寿命的新方法。

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