Indiana University School of Medicine-South Bend, South Bend, Indiana 46617, USA.
Am J Physiol Regul Integr Comp Physiol. 2011 Aug;301(2):R297-312. doi: 10.1152/ajpregu.00045.2011. Epub 2011 May 4.
Hydrogen sulfide (H(2)S) has become the hot new signaling molecule that seemingly affects all organ systems and biological processes in which it has been investigated. It has also been shown to have both proinflammatory and anti-inflammatory actions and proapoptotic and anti-apoptotic effects and has even been reported to induce a hypometabolic state (suspended animation) in a few vertebrates. The exuberance over potential clinical applications of natural and synthetic H(2)S-"donating" compounds is understandable and a number of these function-targeted drugs have been developed and show clinical promise. However, the concentration of H(2)S in tissues and blood, as well as the intrinsic factors that affect these levels, has not been resolved, and it is imperative to address these points to distinguish between the physiological, pharmacological, and toxicological effects of this molecule. This review will provide an overview of H(2)S metabolism, a summary of many of its reported "physiological" actions, and it will discuss the recent development of a number of H(2)S-donating drugs that show clinical potential. It will also examine some of the misconceptions of H(2)S chemistry that have appeared in the literature and attempt to realign the definition of "physiological" H(2)S concentrations upon which much of this exuberance has been established.
硫化氢(H₂S)已成为热门的新型信号分子,似乎影响了其研究过的所有器官系统和生物过程。它还具有促炎和抗炎作用、促凋亡和抗凋亡作用,甚至有报道称它会在一些脊椎动物中诱导低代谢状态(暂停活动)。对天然和合成 H₂S-“供体”化合物的潜在临床应用的热情是可以理解的,已经开发了许多针对这些功能的药物,并显示出临床前景。然而,组织和血液中 H₂S 的浓度以及影响这些水平的内在因素尚未得到解决,必须解决这些问题,以区分该分子的生理学、药理学和毒理学效应。本文将概述 H₂S 的代谢,总结其许多已报道的“生理”作用,并讨论一些具有临床潜力的 H₂S 供体药物的最新发展。它还将检查文献中出现的一些关于 H₂S 化学的误解,并尝试重新定义“生理”H₂S 浓度,这是建立这种热情的基础。