| Literature DB >> 32329099 |
Lin Xia1, Chang Sun2, Hanzhao Zhu1, Mengen Zhai1, Liyun Zhang1, Liqing Jiang1, Peng Hou1, Junfeng Li1, Kaifeng Li3, Zhenhua Liu1, Buying Li1, Xiaowu Wang1, Wei Yi1, Hongliang Liang1, Zhenxiao Jin1, Jian Yang1, Dinghua Yi1, Jincheng Liu1, Shiqiang Yu1, Weixun Duan1.
Abstract
Melatonin functions as an endogenous protective molecule in multiple vascular diseases, whereas its effects on thoracic aortic aneurysm and dissection (TAAD) and underlying mechanisms have not been reported. In this study, TAAD mouse model was successfully induced by β-aminopropionitrile fumarate (BAPN). We found that melatonin treatment remarkably prevented the deterioration of TAAD, evidenced by decreased incidence, ameliorated aneurysmal dilation and vascular stiffness, improved aortic morphology, and inhibited elastin degradation, macrophage infiltration, and matrix metalloproteinase expression. Moreover, melatonin blunted oxidative stress damage and vascular smooth muscle cell (VSMC) loss. Notably, BAPN induced a decrease in SIRT1 expression and activity of mouse aorta, whereas melatonin treatment reversed it. Further mechanistic study demonstrated that blocking SIRT1 signaling partially inhibited these beneficial effects of melatonin on TAAD. Additionally, the melatonin receptor was involved in this phenomenon. Our study is the first to report that melatonin exerts therapeutic effects against TAAD by reducing oxidative stress and VSMC loss via activation of SIRT1 signaling in a receptor-dependent manner, thus suggesting a novel therapeutic strategy for TAAD.Entities:
Keywords: melatonin; melatonin receptor; oxidative stress; sirtuin-1; thoracic aortic aneurysm and dissection; vascular smooth muscle cell
Year: 2020 PMID: 32329099 DOI: 10.1111/jpi.12661
Source DB: PubMed Journal: J Pineal Res ISSN: 0742-3098 Impact factor: 13.007