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射频消融:机制与临床应用

Radiofrequency ablation: mechanisms and clinical applications.

作者信息

Wu Jianhua, Zhou Zhiyuan, Huang Yuanwen, Deng Xinyue, Zheng Siting, He Shangwen, Huang Genjie, Hu Binghui, Shi Min, Liao Wangjun, Huang Na

机构信息

Department of Oncology, Nanfang Hospital Southern Medical University Guangzhou Guangdong China.

Department of Respiratory and Critical Care Medicine Chronic Airways Diseases Laboratory, Nanfang Hospital, Southern Medical University Guangzhou Guangdong China.

出版信息

MedComm (2020). 2024 Oct 2;5(10):e746. doi: 10.1002/mco2.746. eCollection 2024 Oct.

Abstract

Radiofrequency ablation (RFA), a form of thermal ablation, employs localized heat to induce protein denaturation in tissue cells, resulting in cell death. It has emerged as a viable treatment option for patients who are ineligible for surgery in various diseases, particularly liver cancer and other tumor-related conditions. In addition to directly eliminating tumor cells, RFA also induces alterations in the infiltrating cells within the tumor microenvironment (TME), which can significantly impact treatment outcomes. Moreover, incomplete RFA (iRFA) may lead to tumor recurrence and metastasis. The current challenge is to enhance the efficacy of RFA by elucidating its underlying mechanisms. This review discusses the clinical applications of RFA in treating various diseases and the mechanisms that contribute to the survival and invasion of tumor cells following iRFA, including the roles of heat shock proteins, hypoxia, and autophagy. Additionally, we analyze‌ the changes occurring in infiltrating cells within the TME after iRFA. Finally, we provide a comprehensive summary of clinical trials involving RFA in conjunction with other treatment modalities in the field of cancer therapy, aiming to offer novel insights and references for improving the effectiveness of RFA.

摘要

射频消融(RFA)是一种热消融形式,利用局部加热诱导组织细胞中的蛋白质变性,从而导致细胞死亡。对于各种疾病中不适合手术的患者,尤其是肝癌和其他肿瘤相关病症患者,它已成为一种可行的治疗选择。除了直接消除肿瘤细胞外,RFA还会诱导肿瘤微环境(TME)中浸润细胞的改变,这可能会显著影响治疗效果。此外,不完全射频消融(iRFA)可能导致肿瘤复发和转移。当前的挑战是通过阐明其潜在机制来提高RFA的疗效。本文综述讨论了RFA在治疗各种疾病中的临床应用以及iRFA后导致肿瘤细胞存活和侵袭的机制,包括热休克蛋白、缺氧和自噬的作用。此外,我们分析了iRFA后TME中浸润细胞发生的变化。最后,我们全面总结了癌症治疗领域中涉及RFA与其他治疗方式联合应用的临床试验,旨在为提高RFA的有效性提供新的见解和参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/540e/11445673/4779612723a4/MCO2-5-e746-g003.jpg

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