肿瘤细胞光氧化还原状态与活性氧的关系

Reactive oxygen species (Apex, N.C.) Pub Date : 2020-03-01
Allison Podsednik, Annemarie Jacob, Lin Z Li, He N Xu
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引用次数: 0

摘要

转移的NAD(H)氧化还原状态和增强的活性氧(ROS)清除系统已在癌症中观察到。然而,这种氧化还原转移与癌细胞中ROS水平的关系尚不清楚。光学氧化还原成像(ORI)通过收集氧化黄素蛋白(Fp含黄素腺嘌呤二核苷酸)和还原烟酰胺腺嘌呤二核苷酸(NADH)的固有荧光,通过光学氧化还原比Fp/(NADH+Fp) (NAD +偶联氧化还原态NAD+/NADH的替代标记物)提供了线粒体氧化还原状态的定量测量。我们的研究旨在利用培养的乳腺癌细胞模型,通过成像NADH、Fp和ROS水平,探讨NAD(H)氧化还原状态与ROS之间的关系。通过应用外源H2O2或通过代谢扰动化合物控制ROS水平,我们发现:(1)在较低H2O2浓度(高达~700 μM)下,NAD(H)氧化还原状态的氧化与ROS水平相关,但在较高浓度下则不一定;(2) ROS水平升高降低NADH,降低氧化还原比可塑性;(3)更多的氧化或更多的还原状态可能与ROS水平升高相关;(4)有时,更氧化的状态可能与ROS水平降低相关,这取决于细胞系。这些观察结果表明,细胞NAD(H)氧化还原状态和ROS是复杂相关的,但也可以单独改变。由于NAD(H)氧化还原状态和ROS都与癌症的转化和进展有关,因此该研究对癌症研究有益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relationship between Optical Redox Status and Reactive Oxygen Species in Cancer Cells.

Shifted NAD(H) redox status and enhanced reactive oxygen species (ROS) scavenging systems have been observed in cancers. However, how such redox shift is related to the ROS level in cancer cells is less clear. Based on collecting the intrinsic fluorescence of oxidized flavoproteins (Fp containing flavin adenine dinucleotide) and reduced nicotinamide adenine dinucleotide (NADH), optical redox imaging (ORI) provides a quantitative measure of the mitochondrial redox state by the optical redox ratio, Fp/(NADH+Fp), a surrogate marker of the NAD+-coupled redox state NAD+/NADH. Our study aims to explore the relationship between NAD(H) redox status and ROS by imaging NADH, Fp, and ROS levels using cultured breast cancer cell models. By manipulating either ROS levels via application of exogenous H2O2 or redox status via metabolic perturbation compounds, we found that: (1) oxidation of NAD(H) redox status correlates with ROS levels at lower H2O2 concentrations (up to ~700 μM), but not necessarily at higher concentrations; (2) an elevated ROS level diminishes NADH and reduces redox ratio plasticity; (3) either more oxidized or more reduced status can correlate to an increased ROS level; and (4) sometimes, a more oxidized status can correlate to a decreased ROS level depending on cell lines. These observations indicated that cellular NAD(H) redox state and ROS are intricately related but can also change separately. This study can benefit cancer research as both NAD(H) redox status and ROS have been implicated in cancer transformation and progression.

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