Mechanistic insights into carvedilol's potential protection against doxorubicin-induced cardiotoxicity

IF 4.3 3区 医学 Q1 PHARMACOLOGY & PHARMACY European Journal of Pharmaceutical Sciences Pub Date : 2024-07-09 DOI:10.1016/j.ejps.2024.106849
Elsayed A. Elmorsy , Sameh Saber , Rabab S. Hamad , Mustafa Ahmed Abdel-Reheim , Attalla F. El-kott , Mohammed A. AlShehri , Kareem Morsy , Sally Negm , Mahmoud E. Youssef
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Abstract

Doxorubicin (DOX) is an anthracycline chemotherapy drug widely employed in the treatment of various cancers, known for its potent antineoplastic properties but often associated with dose-dependent cardiotoxicity, limiting its clinical use. This review explores the complex molecular details that determine the heart-protective effectiveness of carvedilol in relation to cardiotoxicity caused by DOX. The harmful effects of DOX on heart cells could include oxidative stress, DNA damage, iron imbalance, disruption of autophagy, calcium imbalance, apoptosis, dysregulation of topoisomerase 2-beta, arrhythmogenicity, and inflammatory responses. This review carefully reveals how carvedilol serves as a strong protective mechanism, strategically reducing each aspect of cardiac damage caused by DOX. Carvedilol's antioxidant capabilities involve neutralizing free radicals and adjusting crucial antioxidant enzymes. It skillfully manages iron balance, controls autophagy, and restores the calcium balance essential for cellular stability. Moreover, the anti-apoptotic effects of carvedilol are outlined through the adjustment of Bcl-2 family proteins and activation of the Akt signaling pathway. The medication also controls topoisomerase 2-beta and reduces the renin-angiotensin-aldosterone system, together offering a thorough defense against cardiotoxicity induced by DOX. These findings not only provide detailed understanding into the molecular mechanisms that coordinate heart protection by carvedilol but also offer considerable potential for the creation of targeted treatment strategies intended to relieve cardiotoxicity caused by chemotherapy.

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卡维地洛对多柔比星诱发的心脏毒性潜在保护作用的机理认识
多柔比星(DOX)是一种广泛用于治疗各种癌症的蒽环类化疗药物,以其强大的抗肿瘤特性而闻名,但往往伴有剂量依赖性心脏毒性,限制了其临床应用。本综述探讨了决定卡维地洛对 DOX 引起的心脏毒性的心脏保护作用的复杂分子细节。DOX 对心脏细胞的有害影响可能包括氧化应激、DNA 损伤、铁失衡、自噬破坏、钙失衡、细胞凋亡、拓扑异构酶 2-beta 失调、致心律失常和炎症反应。本综述仔细揭示了卡维地洛如何作为一种强有力的保护机制,战略性地减少 DOX 对心脏造成的各方面损伤。卡维地洛的抗氧化能力包括中和自由基和调整重要的抗氧化酶。它还能巧妙地管理铁平衡、控制自噬和恢复细胞稳定所必需的钙平衡。此外,卡维地洛的抗凋亡作用是通过调整 Bcl-2 家族蛋白和激活 Akt 信号通路来实现的。卡维地洛还能控制拓扑异构酶2-β,减少肾素-血管紧张素-醛固酮系统,从而彻底抵御DOX诱导的心脏毒性。这些发现不仅让人们详细了解了协调卡维地洛保护心脏的分子机制,还为制定旨在缓解化疗引起的心脏毒性的靶向治疗策略提供了巨大的潜力。
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来源期刊
CiteScore
9.60
自引率
2.20%
发文量
248
审稿时长
50 days
期刊介绍: The journal publishes research articles, review articles and scientific commentaries on all aspects of the pharmaceutical sciences with emphasis on conceptual novelty and scientific quality. The Editors welcome articles in this multidisciplinary field, with a focus on topics relevant for drug discovery and development. More specifically, the Journal publishes reports on medicinal chemistry, pharmacology, drug absorption and metabolism, pharmacokinetics and pharmacodynamics, pharmaceutical and biomedical analysis, drug delivery (including gene delivery), drug targeting, pharmaceutical technology, pharmaceutical biotechnology and clinical drug evaluation. The journal will typically not give priority to manuscripts focusing primarily on organic synthesis, natural products, adaptation of analytical approaches, or discussions pertaining to drug policy making. Scientific commentaries and review articles are generally by invitation only or by consent of the Editors. Proceedings of scientific meetings may be published as special issues or supplements to the Journal.
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