Ciccone Valerio, Genah Shirley, Morbidelli Lucia
Department of Life Sciences, University of Siena, Via A. Moro 2, 53100 Siena, Italy.
Antioxidants (Basel). 2021 Mar 19;10(3):486. doi: 10.3390/antiox10030486.
The vascular endothelium consists of a single layer of squamous endothelial cells (ECs) lining the inner surface of blood vessels. Nowadays, it is no longer considered as a simple barrier between the blood and vessel wall, but a central hub to control blood flow homeostasis and fulfill tissue metabolic demands by furnishing oxygen and nutrients. The endothelium regulates the proper functioning of vessels and microcirculation, in terms of tone control, blood fluidity, and fine tuning of inflammatory and redox reactions within the vessel wall and in surrounding tissues. This multiplicity of effects is due to the ability of ECs to produce, process, and release key modulators. Among these, gasotransmitters such as nitric oxide (NO) and hydrogen sulfide (HS) are very active molecules constitutively produced by endotheliocytes for the maintenance and control of vascular physiological functions, while their impairment is responsible for endothelial dysfunction and cardiovascular disorders such as hypertension, atherosclerosis, and impaired wound healing and vascularization due to diabetes, infections, and ischemia. Upregulation of HS producing enzymes and administration of HS donors can be considered as innovative therapeutic approaches to improve EC biology and function, to revert endothelial dysfunction or to prevent cardiovascular disease progression. This review will focus on the beneficial autocrine/paracrine properties of HS on ECs and the state of the art on HS potentiating drugs and tools.
血管内皮由单层鳞状内皮细胞(ECs)组成,排列在血管内表面。如今,它不再被视为血液与血管壁之间的简单屏障,而是通过提供氧气和营养物质来控制血流稳态并满足组织代谢需求的核心枢纽。内皮通过调节血管张力、血液流动性以及血管壁和周围组织内炎症和氧化还原反应的微调,来调节血管和微循环的正常功能。这种多种效应归因于内皮细胞产生、加工和释放关键调节因子的能力。其中,一氧化氮(NO)和硫化氢(HS)等气体信号分子是内皮细胞持续产生的非常活跃的分子,用于维持和控制血管生理功能,而它们的损伤会导致内皮功能障碍和心血管疾病,如高血压、动脉粥样硬化以及糖尿病、感染和缺血引起的伤口愈合和血管生成受损。上调HS生成酶和给予HS供体可被视为改善内皮细胞生物学和功能、逆转内皮功能障碍或预防心血管疾病进展的创新治疗方法。本综述将重点关注HS对内皮细胞有益的自分泌/旁分泌特性以及HS增强药物和工具的最新进展。