化疗的心脏毒性:多omic视角。

IF 6.8 Q1 TOXICOLOGY
Yan Ma, Mandy O J Grootaert, Raj N Sewduth
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引用次数: 0

摘要

化疗引起的心脏毒性是心脏肿瘤学的一个关键问题,因为癌症治疗经常导致严重的心血管并发症。大约10%的癌症患者死于心血管疾病,肺癌患者经常出现心律失常、心力衰竭、心包填塞和心脏转移。抗癌治疗的心脏毒性作用在细胞和组织水平上都表现出来,引起心肌细胞变形,导致收缩性问题和纤维化。反复放疗和化疗会增加瓣膜、心包或心肌疾病的风险。多组学分析显示,针对特定途径和特定蛋白质修饰,如泛素化和磷酸化,可以提供潜在的治疗替代目前的治疗方法,包括血管紧张素转换酶(ACE)抑制剂和β受体阻滞剂,它们可以减轻症状,但不能防止心肌细胞死亡,强调需要更有效的治疗方法来管理癌症幸存者的心血管缺陷。本文综述了化疗药物的外源特性及其对心血管健康的影响,旨在寻找新的生物标志物和治疗靶点来减轻心脏毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cardiotoxicity of Chemotherapy: A Multi-OMIC Perspective.

Chemotherapy-induced cardiotoxicity is a critical issue in cardio-oncology, as cancer treatments often lead to severe cardiovascular complications. Approximately 10% of cancer patients succumb to cardiovascular problems, with lung cancer patients frequently experiencing arrhythmias, cardiac failure, tamponade, and cardiac metastasis. The cardiotoxic effects of anti-cancer treatments manifest at both cellular and tissue levels, causing deformation of cardiomyocytes, leading to contractility issues and fibrosis. Repeated irradiation and chemotherapy increase the risk of valvular, pericardial, or myocardial diseases. Multi-OMICs analyses reveal that targeting specific pathways as well as specific protein modifications, such as ubiquitination and phosphorylation, could offer potential therapeutic alternatives to current treatments, including Angiotensin converting enzymes (ACE) inhibitors and beta-blockers that mitigate symptoms but do not prevent cardiomyocyte death, highlighting the need for more effective therapies to manage cardiovascular defects in cancer survivors. This review explores the xenobiotic nature of chemotherapy agents and their impact on cardiovascular health, aiming to identify novel biomarkers and therapeutic targets to mitigate cardiotoxicity.

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来源期刊
CiteScore
5.30
自引率
1.70%
发文量
21
审稿时长
10 weeks
期刊介绍: The Journal of Xenobiotics publishes original studies concerning the beneficial (pharmacology) and detrimental effects (toxicology) of xenobiotics in all organisms. A xenobiotic (“stranger to life”) is defined as a chemical that is not usually found at significant concentrations or expected to reside for long periods in organisms. In addition to man-made chemicals, natural products could also be of interest if they have potent biological properties, special medicinal properties or that a given organism is at risk of exposure in the environment. Topics dealing with abiotic- and biotic-based transformations in various media (xenobiochemistry) and environmental toxicology are also of interest. Areas of interests include the identification of key physical and chemical properties of molecules that predict biological effects and persistence in the environment; the molecular mode of action of xenobiotics; biochemical and physiological interactions leading to change in organism health; pathophysiological interactions of natural and synthetic chemicals; development of biochemical indicators including new “-omics” approaches to identify biomarkers of exposure or effects for xenobiotics.
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