首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Relation between maximum replicative capacity and oxidative stress-induced responses in human skin fibroblasts in vitro.
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Relation between maximum replicative capacity and oxidative stress-induced responses in human skin fibroblasts in vitro.

机译:人体皮肤成纤维细胞中最大复制能力与氧化应激诱导的反应之间的关系。

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Cellular senescence, an important factor in ageing phenotypes, can be induced by replicative exhaustion or by stress. We investigated the relation between maximum replicative capacity, telomere length, stress-induced cellular senescence, and apoptosis/cell death in human primary fibroblast strains obtained from nonagenarians of the Leiden 85-plus Study. Fibroblast strains were cultured until replicative senescence and stressed with rotenone at low passage. Telomere length, senescence-associated-beta-galactosidase activity, sub-G1 content, and Annexin-V/PI positivity were measured in nonstressed and stressed conditions. Fibroblast strains with a higher replicative capacity had longer telomeres (p = .054). In nonstressed conditions, replicative capacity was not associated with beta-gal activity (p = .07) and negatively with sub-G1 (p = .008). In rotenone-stressed conditions, replicative capacity was negatively associated with beta-gal activity (p = .034) and positively with sub-G1 (p = .07). Summarizing, fibroblast strains with a higher maximum replicative capacity have longer telomeres, are less prone to go into stress-induced cellular senescence, and more prone to die after stress.
机译:细胞衰老是衰老表型的重要因素,可以通过复制性衰竭或应激来诱导。我们调查了从莱顿85岁以上研究的非agenarians获得的人原代成纤维细胞株中最大复制能力,端粒长度,应激诱导的细胞衰老和凋亡/细胞死亡之间的关系。培养成纤维细胞菌株直至复制性衰老,并以低通量的鱼藤酮胁迫。在无压力和压力条件下测量端粒长度,衰老相关的β-半乳糖苷酶活性,亚G1含量和膜联蛋白-V / PI阳性。具有较高复制能力的成纤维细胞菌株具有更长的端粒(p = .054)。在非应激条件下,复制能力与β-gal活性无关(p = .07),与亚G1负相关(p = .008)。在鱼藤酮胁迫条件下,复制能力与β-gal活性呈负相关(p = .034),与sub-G1正相关(p = .07)。总而言之,具有最高最大复制能力的成纤维细胞菌株具有更长的端粒,不易进入应激诱导的细胞衰老,并且更容易在应激后死亡。

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