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卡维地洛模拟过表达的PGC-1α以减轻氧化应激、线粒体功能障碍并预防阿霉素诱导的人诱导多能干细胞衍生心肌细胞毒性。

Carvedilol Phenocopies PGC-1α Overexpression to Alleviate Oxidative Stress, Mitochondrial Dysfunction and Prevent Doxorubicin-Induced Toxicity in Human iPSC-Derived Cardiomyocytes.

作者信息

Uche Nnamdi, Dai Qiang, Lai Shuping, Kolander Kurt, Thao Mai, Schibly Elizabeth, Sendaydiego Xavier, Zielonka Jacek, Benjamin Ivor J

机构信息

Cardiovascular Center, Department of Physiology, Medical College of Wisconsin, 8701 W Watertown Plank Road, Milwaukee, WI 53226, USA.

Cardiovascular Center, Division of Cardiovascular Medicine, Department of Medicine, Medical College of Wisconsin, 8701 W Watertown Plank Road, Milwaukee, WI 53226, USA.

出版信息

Antioxidants (Basel). 2023 Aug 9;12(8):1585. doi: 10.3390/antiox12081585.

Abstract

Doxorubicin (DOX), one of the most effective and widely used anticancer drugs, has the major limitation of cancer treatment-related cardiotoxicity (CTRTOX) in the clinic. Reactive oxygen species (ROS) generation and mitochondrial dysfunction are well-known consequences of DOX-induced injury to cardiomyocytes. This study aimed to explore the mitochondrial functional consequences and associated mechanisms of pretreatment with carvedilol, a ß-blocking agent known to exert protection against DOX toxicity. When disease modeling was performed using cultured rat cardiac muscle cells (H9c2 cells) and human iPSC-derived cardiomyocytes (iPSC-CMs), we found that prophylactic carvedilol mitigated not only the DOX-induced suppression of mitochondrial function but that the mitochondrial functional readout of carvedilol-pretreated cells mimicked the readout of cells overexpressing the major regulator of mitochondrial biogenesis, PGC-1α. Carvedilol pretreatment reduces mitochondrial oxidants, decreases cell death in both H9c2 cells and human iPSC-CM and maintains the cellular 'redox poise' as determined by sustained expression of the redox sensor Keap1 and prevention of DOX-induced Nrf2 nuclear translocation. These results indicate that, in addition to the already known ROS-scavenging effects, carvedilol has a hitherto unrecognized pro-reducing property against the oxidizing conditions induced by DOX treatment, the sequalae of DOX-induced mitochondrial dysfunction and compromised cell viability. The novel findings of our preclinical studies suggest future trial design of carvedilol prophylaxis, such as prescreening for redox state, might be an alternative strategy for preventing oxidative stress writ large in lieu of the current lack of clinical evidence for ROS-scavenging agents.

摘要

阿霉素(DOX)是最有效且应用最广泛的抗癌药物之一,在临床上存在与癌症治疗相关的心脏毒性(CTRTOX)这一主要局限性。活性氧(ROS)生成和线粒体功能障碍是DOX诱导心肌细胞损伤的众所周知的后果。本研究旨在探讨卡维地洛预处理对线粒体功能的影响及其相关机制,卡维地洛是一种已知可预防DOX毒性的β受体阻滞剂。当使用培养的大鼠心肌细胞(H9c2细胞)和人诱导多能干细胞衍生的心肌细胞(iPSC-CMs)进行疾病建模时,我们发现预防性使用卡维地洛不仅减轻了DOX诱导的线粒体功能抑制,而且卡维地洛预处理细胞的线粒体功能读数模拟了过表达线粒体生物发生主要调节因子PGC-1α的细胞的读数。卡维地洛预处理可减少线粒体氧化剂,降低H9c2细胞和人iPSC-CM中的细胞死亡,并通过氧化还原传感器Keap1的持续表达和预防DOX诱导的Nrf2核转位来维持细胞的“氧化还原平衡”。这些结果表明,除了已知的ROS清除作用外,卡维地洛对DOX治疗诱导的氧化条件、DOX诱导的线粒体功能障碍后遗症和细胞活力受损具有迄今未被认识的促还原特性。我们临床前研究的新发现表明,卡维地洛预防的未来试验设计,如氧化还原状态的预筛查,可能是一种替代策略,用于广泛预防氧化应激,以替代目前缺乏ROS清除剂的临床证据的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86b0/10451268/44a2f55684e1/antioxidants-12-01585-g001.jpg

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