Cheng Zhongjian, Kishore Raj
Center for Translational Medicine, Lewis Katz School of Medicine, Temple University, 3500 Broad Street, Philadelphia, PA, 19140, USA.
Redox Biol. 2020 Oct;37:101704. doi: 10.1016/j.redox.2020.101704. Epub 2020 Aug 29.
Diabetes is one of the most prevalent metabolic disorders and is estimated to affect 400 million of 4.4% of population worldwide in the next 20 year. In diabetes, risk to develop vascular diseases is two-to four-fold increased. Ischemic tissue injury, such as refractory wounds and critical ischemic limb (CLI) are major ischemic vascular complications in diabetic patients where oxygen supplement is insufficient due to impaired angiogenesis/neovascularization. In spite of intensive studies, the underlying mechanisms of diabetes-impaired ischemic tissue injury remain incompletely understood. Hydrogen sulfide (HS) has been considered as a third gasotransmitter regulating angiogenesis under physiological and ischemic conditions. Here, the underlying mechanisms of insufficient HS-impaired angiogenesis and ischemic tissue repair in diabetes are discussed. We will primarily focuses on the signaling pathways of HS in controlling endothelial function/biology, angiogenesis and ischemic tissue repair in diabetic animal models. We summarized that HS plays an important role in maintaining endothelial function/biology and angiogenic property in diabetes. We demonstrated that exogenous HS may be a theraputic agent for endothelial dysfunction and impaired ischemic tissue repair in diabetes.
糖尿病是最常见的代谢紊乱疾病之一,预计在未来20年内全球将有4亿人受其影响,占全球人口的4.4%。在糖尿病患者中,发生血管疾病的风险会增加两到四倍。缺血性组织损伤,如难治性伤口和严重肢体缺血(CLI),是糖尿病患者主要的缺血性血管并发症,由于血管生成/新生血管形成受损,这些患者的氧气供应不足。尽管进行了深入研究,但糖尿病导致缺血性组织损伤的潜在机制仍未完全了解。硫化氢(HS)被认为是在生理和缺血条件下调节血管生成的第三种气体信号分子。在此,我们讨论了糖尿病中HS不足导致血管生成受损和缺血组织修复的潜在机制。我们将主要关注糖尿病动物模型中HS在控制内皮功能/生物学、血管生成和缺血组织修复方面的信号通路。我们总结认为,HS在维持糖尿病患者的内皮功能/生物学和血管生成特性方面发挥着重要作用。我们证明,外源性HS可能是治疗糖尿病患者内皮功能障碍和缺血组织修复受损的一种药物。