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高糖诱导的心肌细胞损伤涉及内皮素 ET-1/ET/ET 受体和 mTOR 通路的相互作用。

High Glucose-Induced Cardiomyocyte Damage Involves Interplay between Endothelin ET-1/ET/ET Receptor and mTOR Pathway.

机构信息

Department of Pharmacology, Faculty of Pharmacy, Mahidol University, Bangkok 10400, Thailand.

Molecular Biology and Biochemistry, Gottfried Schatz Research Center, Medical University of Graz, 8010 Graz, Austria.

出版信息

Int J Mol Sci. 2022 Nov 10;23(22):13816. doi: 10.3390/ijms232213816.

Abstract

Patients with type two diabetes mellitus (T2DM) are at increased risk for cardiovascular diseases. Impairments of endothelin-1 (ET-1) signaling and mTOR pathway have been implicated in diabetic cardiomyopathies. However, the molecular interplay between the ET-1 and mTOR pathway under high glucose (HG) conditions in H9c2 cardiomyoblasts has not been investigated. We employed MTT assay, qPCR, western blotting, fluorescence assays, and confocal microscopy to assess the oxidative stress and mitochondrial damage under hyperglycemic conditions in H9c2 cells. Our results showed that HG-induced cellular stress leads to a significant decline in cell survival and an impairment in the activation of ET-R/ET-R and the mTOR main components, Raptor and Rictor. These changes induced by HG were accompanied by a reactive oxygen species (ROS) level increase and mitochondrial membrane potential (MMP) loss. In addition, the fragmentation of mitochondria and a decrease in mitochondrial size were observed. However, the inhibition of either ET-R alone by ambrisentan or ET-R/ET-R by bosentan or the partial blockage of the mTOR function by silencing Raptor or Rictor counteracted those adverse effects on the cellular function. Altogether, our findings prove that ET-1 signaling under HG conditions leads to a significant mitochondrial dysfunction involving contributions from the mTOR pathway.

摘要

2 型糖尿病(T2DM)患者患心血管疾病的风险增加。内皮素-1(ET-1)信号和 mTOR 通路的损伤与糖尿病心肌病有关。然而,在高葡萄糖(HG)条件下,H9c2 心肌细胞中 ET-1 和 mTOR 通路之间的分子相互作用尚未被研究。我们采用 MTT 测定法、qPCR、western blot、荧光测定法和共聚焦显微镜来评估 H9c2 细胞在高血糖条件下的氧化应激和线粒体损伤。我们的结果表明,HG 诱导的细胞应激导致细胞存活率显著下降,ET-R/ET-R 和 mTOR 主要成分 Raptor 和 Rictor 的激活受损。HG 诱导的这些变化伴随着活性氧(ROS)水平的增加和线粒体膜电位(MMP)的丧失。此外,还观察到线粒体碎片化和线粒体大小减小。然而,单独用安立生坦抑制 ET-R,或用波生坦抑制 ET-R/ET-R,或用沉默 Raptor 或 Rictor 部分阻断 mTOR 功能,均可拮抗这些对细胞功能的不利影响。总之,我们的研究结果证明,HG 条件下的 ET-1 信号会导致明显的线粒体功能障碍,涉及 mTOR 通路的贡献。

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