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Redox biology of hydrogen sulfide: Implications for physiology pathophysiology and pharmacology

机译:硫化氢的氧化还原生物学:对生理学病理生理学和药理学的影响

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摘要

Hydrogen sulfide (H2S) has emerged as a critical mediator of multiple physiological processes in mammalian systems. The pathways involved in the production, consumption, and mechanism of action of H2S appear to be sensitive to alterations in the cellular redox state and O2 tension. Indeed, the catabolism of H2S through a putative oxidation pathway, the sulfide quinone oxido-reductase system, is highly dependent on O2 tension. Dysregulation of H2S homeostasis has also been implicated in numerous pathological conditions and diseases. In this review, the chemistry and the main physiological actions of H2S are presented. Some examples highlighting the cytoprotective actions of H2S within the context of cardiovascular disease are also reported. Elucidation of the redox biology of H2S will enable the development of new pharmacological agents based on this intriguing new redox cellular signal.
机译:硫化氢(H2S)已成为哺乳动物系统中多种生理过程的关键介体。 H2S的产生,消耗和作用机理涉及的途径似乎对细胞氧化还原状态和O2张力的变化敏感。实际上,通过推定的氧化途径(硫化物醌氧化还原酶系统)对H2S的分解代谢高度依赖于O2张力。 H 2 S动态平衡的失调也与许多病理状况和疾病有关。在这篇综述中,介绍了硫化氢的化学和主要生理作用。还报告了一些实例,这些实例突出了H2S在心血管疾病中的细胞保护作用。 H2S氧化还原生物学的阐明将使基于这种有趣的新氧化还原细胞信号的新药理学剂的开发成为可能。

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