Wang Sijia, Wang Yi, Wang Shuang
Ultrasound in Cardiac Electrophysiology and Biomechanics Key Laboratory of Sichuan Province, Sichuan Provincial People's Hospital, School of Medicine, University of Electronic Science and Technology of China, Chengdu, China.
Department of Geriatrics, The People's Hospital of Changshou, Chongqing, China.
Front Cardiovasc Med. 2024 Jan 26;11:1236966. doi: 10.3389/fcvm.2024.1236966. eCollection 2024.
Cancer treatment might cause heart failure and deteriorate the patients' quality of life. Despite the wide use of conventional echocardiography, it often fails to detect cardiotoxicity until advanced cardiac dysfunction at potentially irreversible stages. Advanced techniques, such as three-dimensional imaging and strain analysis in stress echocardiography, have shown promise in identifying cardiotoxicity at subclinical stages, even when traditional measures remain within normal ranges. These novel techniques have been shown to identify cardiac impairment in 30%-50% of the patients undergoing potentially cardiotoxic chemotherapy, which allows for early intervention and enhanced patient management. Although professional societies are advocating for the inclusion of these techniques into routine monitoring protocols, more research is needed to optimize and standardize their use across various centers and chemotherapeutic agents. This review explores the role of stress echocardiography in the early detection and monitoring of chemotherapy-induced cardiotoxicity. It delves into current knowledge and emerging research, aiming to provide a comprehensive understanding and to highlight areas worthy of further investigation.
癌症治疗可能会导致心力衰竭,并使患者的生活质量恶化。尽管传统超声心动图被广泛使用,但它往往直到潜在不可逆阶段出现晚期心脏功能障碍时才能够检测到心脏毒性。先进技术,如三维成像和负荷超声心动图中的应变分析,在识别亚临床阶段的心脏毒性方面显示出了前景,即使传统指标仍在正常范围内。这些新技术已被证明能在30%-50%接受潜在心脏毒性化疗的患者中识别出心脏损伤,这使得能够进行早期干预并加强患者管理。尽管专业学会主张将这些技术纳入常规监测方案,但仍需要更多研究来优化并规范它们在各个中心和化疗药物中的使用。本综述探讨了负荷超声心动图在化疗诱导的心脏毒性早期检测和监测中的作用。它深入研究了当前的知识和新出现的研究,旨在提供全面的理解并突出值得进一步研究的领域。