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Meta-analytic evidence for the anti-aging effect of hormesis on Caenorhabditis elegans

机译:荟萃分析证据,用于拔氧性杆菌的抗衰老作用

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摘要

Mild stress-induced hormesis, as a promising strategy to improve longevity and healthy aging, meets both praise and criticism. To comprehensively assess the applicability of hormesis in aging intervention, this meta-analysis was conducted focusing on the effect of hormesis on Caenorhabditis elegans. Twenty-six papers involving 198 effect size estimates met the inclusion criteria. Meta-analytic results indicated that hormesis could significantly extend the mean lifespan of C. elegans by 16.7% and 25.1% under normal and stress culture conditions (p < 0.05), respectively. The healthspan assays showed that hormesis remarkably enhanced the bending frequency and pumping rate of worms by 28.9% and 7.0% (p < 0.05), respectively, while effectively reduced the lipofuscin level by 15.9% (p < 0.05). The obviously increased expression of dauer formation protein-16 (1.66-fold) and its transcriptional targets, including superoxide dismutase-3 (2.46-fold), catalase-1 (2.32-fold) and small heat shock protein-16.2 (2.88-fold) (p < 0.05), was one of the molecular mechanisms underlying these positive effects of hormesis. This meta-analysis provided strong evidence for the anti-aging role of hormesis, highlighting its lifespan-prolonging, healthspan-enhancing and resistance-increasing effects on C. elegans. Given that dauer formation protein-16 was highly conservative, hormesis offered the theoretical possibility of delaying intrinsic aging through exogenous intervention among humans.
机译:轻度胁迫诱导的血液化,作为提高长寿和健康衰老的有希望的策略,符合赞誉和批评。为了综合评估血管性的适用性在衰老干预中,对这种荟萃分析的关注致力于激发杆菌杆菌的影响。涉及198份效果规模的二十六篇论文估计达到了纳入标准。 Meta-Analytic结果表明,在正常和应力培养条件下分别在25.7%和25.1%下显着地将C.秀丽隐杆线虫的平均寿命扩展了(P <0.05)。 Healthspan测定结果表明,血液化显着提高了蠕虫的弯曲频率和泵送速度,分别将蠕虫的弯曲频率和泵送速度分别增强了28.9%和7.0%(P <0.05),同时将脂肪属素水平有效降低了15.9%(P <0.05)。显然增加了Dauer形成蛋白-16(1.66倍)的表达及其转录靶标,包括超氧化物歧化酶-3(2.46倍),过氧化氢酶-1(2.32倍)和小型热休克蛋白-16.2(2.88倍)(P <0.05),是这些积极影响的分子机制之一。该META分析提供了强有力的抗衰老作用的证据,突出了其延长的寿命,健康钢,升性和抵抗效应。鉴于Dauer形成蛋白-16是高度保守的,血流血提供了通过人类外源干预延迟内在老化的理论可能性。

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