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首页> 外文期刊>Antioxidants >Oxygen and Glucose Levels in Cell Culture Media Determine Resveratrol’s Effects on Growth, Hydrogen Peroxide Production, and Mitochondrial Dynamics
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Oxygen and Glucose Levels in Cell Culture Media Determine Resveratrol’s Effects on Growth, Hydrogen Peroxide Production, and Mitochondrial Dynamics

机译:细胞培养基中的氧气和葡萄糖水平决定了白藜芦醇对生长,过氧化氢产生和线粒体动力学的影响

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摘要

Resveratrol is a plant-derived polyphenol that has been widely studied for its putative health promoting effects. Many of those studies have been conducted in cell culture, in supra-physiological levels of oxygen and glucose. Resveratrol interacts with reactive oxygen species (ROS) as an antioxidant or pro-oxidant. Resveratrol affects the expression and activities of ROS-producing enzymes and organelles. It is therefore important to consider how cell culture conditions might determine the effects of resveratrol on cultured cells. We determined the effects of resveratrol on cell growth, hydrogen peroxide production, and mitochondrial network characteristics in C2C12 mouse myoblasts and PC3 human prostate cancer cells under conditions of physiological (5%) and supra-physiological (18%) oxygen, and normo- (5 mM) and hyper-glycemia (25 mM). Interestingly, most effects of resveratrol on the parameters measured here were dependent upon prevailing oxygen and glucose levels during the experiment. Many of the effects of resveratrol on cell growth, hydrogen peroxide production, and mitochondrial network characteristics that were seen in 25 mM glucose and/or 18% oxygen were absent under the physiologically relevant conditions of 5 mM glucose with 5% oxygen. These findings emphasize the importance of using physiologically meaningful starting conditions for cell-culture experiments with resveratrol and indeed any manipulation affecting ROS metabolism and mitochondria.
机译:白藜芦醇是植物来源的多酚,由于其对健康的促进作用而被广泛研究。这些研究中有许多是在细胞培养中以超生理水平的氧气和葡萄糖进行的。白藜芦醇作为抗氧化剂或促氧化剂与活性氧(ROS)相互作用。白藜芦醇影响产生ROS的酶和细胞器的表达和活性。因此,重要的是考虑细胞培养条件如何确定白藜芦醇对培养细胞的作用。我们确定了白藜芦醇在生理(5%)和超生理(18%)的氧气和正常(-)条件下对C2C12小鼠成肌细胞和PC3人前列腺癌细胞中细胞生长,过氧化氢生成和线粒体网络特征的影响。 5 mM)和高血糖症(25 mM)。有趣的是,白藜芦醇对此处测量的参数的大多数影响取决于实验过程中主要的氧气和葡萄糖水平。在5 mM葡萄糖和5%氧气的生理相关条件下,白藜芦醇对细胞生长,过氧化氢生成和线粒体网络特性的许多影响在25 mM葡萄糖和/或18%氧气中均不存在。这些发现强调了在白藜芦醇的细胞培养实验中使用生理学上有意义的起始条件的重要性,以及实际上影响ROS代谢和线粒体的任何操作的重要性。

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