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TRPV1 的激活通过 AMPK 信号通路诱导自噬减轻小鼠心肌细胞的缺氧损伤。

TRPV1 activation mitigates hypoxic injury in mouse cardiomyocytes by inducing autophagy through the AMPK signaling pathway.

机构信息

State Key Laboratory of Trauma, Burns, and Combined Injury, Institute of Burn Research, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing, China.

Department of Dermatology, the 920th Hospital of Joint Logistics Support Force of PLA, Kunming, China.

出版信息

Am J Physiol Cell Physiol. 2020 May 1;318(5):C1018-C1029. doi: 10.1152/ajpcell.00161.2019. Epub 2020 Apr 15.

Abstract

Autophagy is a highly conserved self-protection mechanism that plays a crucial role in cardiovascular diseases. Cardiomyocyte hypoxic injury promotes oxidative stress and pathological alterations in the heart, although the interplay between these effects remains elusive. The transient receptor potential vanilloid 1 (TRPV1) ion channel is a nonselective cation channel that is activated in response to a variety of exogenous and endogenous physical and chemical stimuli. Here, we investigated the effects and mechanisms of action of TRPV1 on autophagy in hypoxic cardiomyocytes. In this study, primary cardiomyocytes isolated from C57 mice were subjected to hypoxic stress, and their expression of TRPV1 and adenosine 5'-monophosphate-activated protein kinase (AMPK) was regulated. The autophagy flux was assessed by Western blotting and immunofluorescence staining, and the cell viability was determined through Cell counting kit-8 assay and Lactate dehydrogenase assays. In addition, the calcium influx after the upregulation of TRPV1 expression in cardiomyocytes was examined. The results showed that the number of autophagosomes in cardiomyocytes was higher under hypoxic stress and that the blockade of autophagy flux aggravated hypoxic damage to cardiomyocytes. Moreover, the expression of TRPV1 was induced under hypoxic stress, and its upregulation by capsaicin improved the autophagy flux and protected cardiomyocytes from hypoxic damage, whereas the silencing of TRPV1 significantly attenuated autophagy. Our observations also revealed that AMPK signaling was activated and involved in TRPV1-induced autophagy in cardiomyocytes under hypoxic stress. Overall, this study demonstrates that TRPV1 activation mitigates hypoxic injury in cardiomyocytes by improving autophagy flux through the AMPK signaling pathway and highlights TRPV1 as a novel therapeutic target for the treatment of hypoxic cardiac disease.

摘要

自噬是一种高度保守的自我保护机制,在心血管疾病中起着至关重要的作用。心肌细胞缺氧损伤促进氧化应激和心脏的病理改变,尽管这些影响之间的相互作用仍不清楚。瞬时受体电位香草酸 1(TRPV1)离子通道是一种非选择性阳离子通道,可响应各种外源性和内源性物理和化学刺激而被激活。在这里,我们研究了 TRPV1 对缺氧心肌细胞自噬的作用及其机制。在这项研究中,将从小鼠心脏分离的原代心肌细胞置于缺氧应激条件下,并调节其 TRPV1 和腺苷 5'-单磷酸激活蛋白激酶(AMPK)的表达。通过 Western blot 和免疫荧光染色评估自噬流,通过细胞计数试剂盒-8 测定和乳酸脱氢酶测定评估细胞活力。此外,还检查了 TRPV1 表达上调后心肌细胞内钙流入的情况。结果表明,在缺氧应激下,心肌细胞中的自噬体数量增加,并且阻断自噬流会加重缺氧对心肌细胞的损伤。此外,TRPV1 的表达在缺氧应激下被诱导,辣椒素对其的上调改善了自噬流并保护心肌细胞免受缺氧损伤,而 TRPV1 的沉默则显著减弱了自噬。我们的观察结果还表明,在缺氧应激下,AMPK 信号通路被激活并参与 TRPV1 诱导的心肌细胞自噬。总之,这项研究表明,TRPV1 的激活通过 AMPK 信号通路改善自噬流,减轻心肌细胞的缺氧损伤,凸显了 TRPV1 作为治疗缺氧性心脏疾病的新治疗靶点的潜力。

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