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在亚致死剂量过氧化氢处理的年轻MRC5成纤维细胞中过早诱导衰老与谷胱甘肽过氧化物酶水平升高及对DNA断裂的抗性相关。

Premature induction of aging in sublethally H2O2-treated young MRC5 fibroblasts correlates with increased glutathione peroxidase levels and resistance to DNA breakage.

作者信息

Caldini R, Chevanne M, Mocali A, Tombaccini D, Paoletti F

机构信息

Istituto di Patologia Generale, Università di Firenze, Italy.

出版信息

Mech Ageing Dev. 1998 Sep 15;105(1-2):137-50. doi: 10.1016/s0047-6374(98)00085-2.

DOI:10.1016/s0047-6374(98)00085-2
PMID:9922124
Abstract

Human MRC5 fibroblasts, at different passages in cultures, were used as an in vitro model to assess variations and/or induction of aging parameters under basal conditions or following sublethal oxidative stress by H2O2. DNA sensitivities to oxidatively-induced breakage, rather than basal levels of damaged DNA, were significantly different between cultures at low and high population doubling level (PDL): old cells maintained most of their DNA integrity even at high concentrations of H2O2, while young cells showed more extensive DNA damage which developed in a dose-dependent fashion. However, young cells pretreated with low doses of H2O2 exhibited increased resistance against further oxidative damage to DNA thus reproducing a senescent-like profile of sensitivity. In turn, DNA from old cultures incubated in a NAD precursor-free medium was more prone to H2O2-induced strand breaks mimicking DNA sensitivity of young cells. The extent of oxidatively-induced DNA damage in MRC5 populations correlated inversely with the levels of glutathione peroxidase (GPx) activity that almost doubled when cells passed from the young to the senescent stage. In addition, H2O2-pretreatment of young cells induced an increase in GPx expression approaching old cell values and promoted also the premature appearance of neutral beta-galactosidase activity and decreased c-fos expression upon serum stimulation, both of which were assumed to be characteristic traits of the senescent phenotype.

摘要

不同传代次数的人MRC5成纤维细胞被用作体外模型,以评估在基础条件下或过氧化氢亚致死性氧化应激后衰老参数的变化和/或诱导情况。在低群体倍增水平(PDL)和高群体倍增水平的培养物之间,DNA对氧化诱导断裂的敏感性(而非受损DNA的基础水平)存在显著差异:即使在高浓度过氧化氢条件下,衰老细胞仍能保持其大部分DNA完整性,而年轻细胞则表现出更广泛的DNA损伤,且这种损伤呈剂量依赖性发展。然而,用低剂量过氧化氢预处理的年轻细胞对DNA进一步氧化损伤的抗性增强,从而呈现出类似衰老细胞的敏感性特征。反过来,在无NAD前体培养基中培养的衰老细胞的DNA更容易受到过氧化氢诱导的链断裂,这类似于年轻细胞的DNA敏感性。MRC5群体中氧化诱导的DNA损伤程度与谷胱甘肽过氧化物酶(GPx)活性水平呈负相关,当细胞从年轻阶段进入衰老阶段时,GPx活性几乎翻倍。此外,对年轻细胞进行过氧化氢预处理会导致GPx表达增加,接近衰老细胞的值,同时还会促进血清刺激后中性β-半乳糖苷酶活性的过早出现以及c-fos表达的降低,这两者都被认为是衰老表型的特征。

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