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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Raman micro-spectroscopy monitoring of cytochrome c redox state in Candida utilis during cell death under low-temperature plasma-induced oxidative stress
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Raman micro-spectroscopy monitoring of cytochrome c redox state in Candida utilis during cell death under low-temperature plasma-induced oxidative stress

机译:低温等离子体诱导氧化应激在细胞死亡期间Centchrome C氧化还原状态的拉曼微光谱监测

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摘要

Oxidative stress may result in different modes of cell death, such as necrosis, apoptosis and necroptosis. Currently, researchers are still striving to develop efficient tools/methods to distinguish the cell death modes in direct and label-free ways. In this study, we attempted to employ Raman micro-spectroscopy to observe the molecular changes in Candida utilis cells under oxidative stress induced by low-temperature plasma (LTP) and explore the spectroscopic biomarkers for the modes of cell death under oxidative stress. In this research, we confirmed that LTP could impose oxidative stress on the yeast cells, and recorded the changes of Raman signals of cytochrome c in the cells under LTP oxidative stress. Subsequently, we identified the biochemical and morphological characteristic features corresponding to different modes of cell death. Interestingly, we found that LTP under certain conditions could induce oxidative stress which caused the yeast cell death mainly by means of necroptosis, which was verified by Annexin V/PI, HMGB1 location assay and immunoprecipitation assay of the RIP1/RIP3 necrosome. Correspondingly, we also showed that the LTP induced necroptosis, associated with the increase of cytoplasmic Ca~(2+) and mitochondrial ROS, the decrease of mitochondrial membrane potential, the release of oxidized cytochrome c from the mitochondrion to the cytoplasm, and the destruction of mitochondria in yeast cells. This work has therefore demonstrated that monitoring the redox state of cytochrome c using Raman micro-spectroscopy is very useful for distinguishing the modes of cell death and particularly may unveil the unique necroptosis process of cells under extrinsic oxidative stress.
机译:氧化应激可能导致不同的细胞死亡模式,例如坏死,细胞凋亡和虐余化。目前,研究人员仍在努力开发有效的工具/方法,以将细胞死亡模式以直接和免费的方式区分开来。在这项研究中,我们试图采用拉曼微光谱,观察低温等离子体(LTP)诱导的氧化应激下念珠菌利用酶细胞的分子变化,并探讨氧化应激下细胞死亡模式的光谱生物标志物。在这项研究中,我们证实LTP可能对酵母细胞施加氧化应激,并记录了LTP氧化应激下细胞中细胞色素C的拉曼信号的变化。随后,我们确定了对应于不同细胞死亡模式的生物化学和形态学特征。有趣的是,我们发现在某些条件下的LTP可以诱导氧化应激,这主要通过肮脏衰竭引起酵母细胞死亡,该抗体由Annexin v / Pi,HMGB1位置测定和RIP1 / RIP3墓穴的免疫沉淀测定验证。相应地,我们还表明,LTP诱导的坏凋亡,随着细胞质Ca〜(2+)和线粒体ROS的增加,线粒体膜电位的降低,从线粒体到细胞质中释放氧化细胞色素C,以及破坏酵母细胞的线粒体。因此,该工作表明,使用拉曼微谱检查监测细胞色素C的氧化还原状态对于区分细胞死亡模式,特别是在外本氧化应激下揭示细胞的独特虐鼠过程。

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