氧化应激的细胞培养模型:超氧和过氧化氢与常压高氧

J.J.P. Gille, H. Joenje
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引用次数: 194

摘要

根据衰老的自由基理论,衰老过程中细胞功能的丧失是活性氧造成的亚细胞损伤积累的结果。在细胞中,当自由基形成和破坏(去除)之间的平衡被扰乱时,活性氧的有害影响可能会变得明显,从而产生一种被称为“氧化应激”的情况。细胞培养系统在研究氧化应激的毒性和细胞适应性反应方面特别有用。更好地理解这些过程可能与充分理解细胞衰老过程有关。本文综述了氧化应激的三种模式系统:细胞外O2 -和H2O2来源,以及常压高氧(升高的环境氧气)。讨论了这些暴露模型的方法和实践方面,以及它们在中国仓鼠细胞系培养中观察到的突出效果。由于慢性暴露模型是首选,因此有人认为,常压高氧是体外细胞衰老研究中特别相关的氧化应激模型。
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Cell culture models for oxidative stress: superoxide and hydrogen peroxide versus normobaric hyperoxia

According to the free radical theory of aging, loss of cellular function during aging is a consequence of accumulating subcellular damage inflicted by activated oxygen species. In cells, the deleterious effects of activated oxygen species may become manifest when the balance between radical formation and destruction (removal) is disturbed creating a situation denoted as ‘oxidative stress’. Cell culture systems are especially useful to study the effects of oxidative stress, in terms of both toxicity and cellular adaptive responses. A better understanding of such processes may be pertinent to fully comprehend the cellular aging process.

This article reviews three model systems for oxidative stress: extracellular sources of O2 and H2O2, and normobaric hyperoxia (elevated ambient oxygen). Methodological and practical aspects of these exposure models are discussed, as well as their prominent effects as observed in cultures of Chinese hamster cell lines. Since chronic exposure models are to be preferred, it is argued that normobaric hyperoxia is a particularly relevant oxidative stress model for in vitro cellular aging studies.

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Publisher's note Editorial An accessory protein enhances both DNA binding and activity of DNA polymerase α isolated from normal, but not transformed, human fibroblasts Differences in the spectrum of spontaneous mutations in the hprt gene between tumor cells of the microsatellite mutator phenotype Spermatid micronucleus analysis of aging effects in hamsters
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