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生理毒性人细胞培养可提高细胞活力、代谢和线粒体形态,同时减少 DNA 损伤。

Physioxic human cell culture improves viability, metabolism, and mitochondrial morphology while reducing DNA damage.

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario, Canada.

出版信息

FASEB J. 2019 Apr;33(4):5716-5728. doi: 10.1096/fj.201802279R. Epub 2019 Jan 16.

Abstract

Multicellular organisms balance oxygen delivery and toxicity by having oxygen pass through several barriers before cellular delivery. In human cell culture, these physiologic barriers are removed, exposing cells to higher oxygen levels. Human cells cultured in ambient air may appear normal, but this is difficult to assess without a comparison at physiologic oxygen. Here, we examined the effects of culturing human cells throughout the spectrum of oxygen availability on oxidative damage to macromolecules, viability, proliferation, the antioxidant and DNA damage responses, metabolism, and mitochondrial fusion and morphology. We surveyed 4 human cell lines cultured for 3 d at 7 oxygen conditions between 1 and 21% O. We show that oxygen levels and cellular benefit are not inversely proportional, but the benefit peaks within the physioxic range. Normoxic cells are in a perpetual state of responding to damaged macromolecules and mitochondrial networks relative to physioxic cells, which could compromise an investigation. These data contribute to the concept of an optimal oxygen availability for cell culture in the physioxic range where the oxygen is not too high to reduce oxidative damage, and not too low for efficient oxidative metabolism, but just right: the Goldiloxygen zone.-Timpano, S., Guild, B. D., Specker, E. J., Melanson, G., Medeiros, P. J., Sproul, S. L. J., Uniacke, J. Physioxic human cell culture improves viability, metabolism, and mitochondrial morphology while reducing DNA damage.

摘要

多细胞生物通过让氧气在进入细胞之前通过几个屏障来平衡氧气的输送和毒性。在人类细胞培养中,这些生理屏障被去除,使细胞暴露在更高的氧气水平下。在常氧空气中培养的人类细胞可能看起来正常,但如果没有与生理氧水平进行比较,就很难评估。在这里,我们研究了在整个氧气供应范围内培养人类细胞对大分子氧化损伤、活力、增殖、抗氧化和 DNA 损伤反应、代谢以及线粒体融合和形态的影响。我们调查了 4 个人类细胞系,在 7 种氧气条件下培养 3 天,氧气浓度在 1%至 21%之间。我们表明,氧气水平和细胞益处不是成反比的,而是在生理氧范围内达到峰值。与生理氧细胞相比,常氧细胞对受损的大分子和线粒体网络处于持续反应状态,这可能会影响研究。这些数据有助于形成一个概念,即在生理氧范围内为细胞培养提供最佳的氧气供应,在这个范围内,氧气既不会高到降低氧化损伤,也不会低到影响氧化代谢效率,而是恰到好处:即 Goldiloxygen 区。-Timpano, S., Guild, B. D., Specker, E. J., Melanson, G., Medeiros, P. J., Sproul, S. L. J., Uniacke, J. 生理氧培养的人类细胞可提高活力、代谢和线粒体形态,同时减少 DNA 损伤。

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