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Focusing at the double-edged sword of redox imbalance: Signals for cell survival or for cell death?

机译:着眼于氧化还原失衡的双刃剑:细胞存活或细胞死亡的信号?

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摘要

Redox signaling plays a fundamental role in tissue physiological metabolism. A fine balance between reactive oxidizing species (ROS) generation and antioxidant levels allows either the cross talk between cells or the control of fundamental intracellular functions, such as cell-cell interactions, cell division, migration, and contraction. A deregulation of this balance, for example, leading to oxidative stress, has been implicated in many pathological conditions, including cardiovascular-, neuronal-, and immunological-related diseases, as well as in cancer. A key role of ROS generation has also been associated with a variety of cell death processes, including necrosis, apoptosis, and autophagy. More recently, the discovery that autophagy, formerly considered as a cell death program, mainly represents an important cytoprotection mechanism, led to a series of studies aimed at the comprehension of the role of ROS generation in regulating intracellular signals leading to the activation of survival mechanisms or triggering cell death. However, different cell types, for example, neuronal cells, muscle cells, lymphocytes, or epithelial cells, seem to display different redox sensitivities, different signaling pathways, and different defense mechanisms. In few words, as illustrated in detail in the present Forum, the future challenge on this matter will be represented by the comprehension of the histotype-associated or histotype-dependent intracellular mechanisms of ROS management. Antioxid. Redox Signal. 21, 52-55.
机译:氧化还原信号在组织生理代谢中起重要作用。活性氧化物质(ROS)生成和抗氧化剂含量之间的良好平衡允许细胞之间的串扰或基本细胞内功能的控制,例如细胞间相互作用,细胞分裂,迁移和收缩。例如,这种平衡的失调会导致氧化应激,涉及许多病理状况,包括心血管疾病,神经元疾病和免疫相关疾病以及癌症。 ROS产生的关键作用还与多种细胞死亡过程有关,包括坏死,细胞凋亡和自噬。最近,自噬(以前被认为是细胞死亡程序)主要代表一种重要的细胞保护机制,这一发现导致进行了一系列旨在了解ROS生成在调节细胞内信号中的作用的研究,从而激活了生存机制。或触发细胞死亡。但是,不同的细胞类型,例如神经元细胞,肌肉细胞,淋巴细胞或上皮细胞,似乎表现出不同的氧化还原敏感性,不同的信号传导途径和不同的防御机制。简而言之,正如本届论坛所详细说明的那样,对这一问题的未来挑战将以对ROS管理的组织型相关或组织型依赖性细胞内机制的理解为代表。抗氧化。氧化还原信号。 21,52-55。

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