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癌症中使用小分子化合物靶向非凋亡性调节性细胞死亡(RCD)的治疗策略。

Therapeutic strategies of targeting non-apoptotic regulated cell death (RCD) with small-molecule compounds in cancer.

作者信息

Jin Xin, Jin Wenke, Tong Linlin, Zhao Jia, Zhang Lan, Lin Na

机构信息

Department of Ultrasound, Department of Medical Oncology and Department of Hematology, the First Hospital of China Medical University, China Medical University, Shenyang 110001, China.

Sichuan Engineering Research Center for Biomimetic Synthesis of Natural Drugs, School of Life Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.

出版信息

Acta Pharm Sin B. 2024 Jul;14(7):2815-2853. doi: 10.1016/j.apsb.2024.04.020. Epub 2024 Apr 24.

Abstract

Regulated cell death (RCD) is a controlled form of cell death orchestrated by one or more cascading signaling pathways, making it amenable to pharmacological intervention. RCD subroutines can be categorized as apoptotic or non-apoptotic and play essential roles in maintaining homeostasis, facilitating development, and modulating immunity. Accumulating evidence has recently revealed that RCD evasion is frequently the primary cause of tumor survival. Several non-apoptotic RCD subroutines have garnered attention as promising cancer therapies due to their ability to induce tumor regression and prevent relapse, comparable to apoptosis. Moreover, they offer potential solutions for overcoming the acquired resistance of tumors toward apoptotic drugs. With an increasing understanding of the underlying mechanisms governing these non-apoptotic RCD subroutines, a growing number of small-molecule compounds targeting single or multiple pathways have been discovered, providing novel strategies for current cancer therapy. In this review, we comprehensively summarized the current regulatory mechanisms of the emerging non-apoptotic RCD subroutines, mainly including autophagy-dependent cell death, ferroptosis, cuproptosis, disulfidptosis, necroptosis, pyroptosis, alkaliptosis, oxeiptosis, parthanatos, mitochondrial permeability transition (MPT)-driven necrosis, entotic cell death, NETotic cell death, lysosome-dependent cell death, and immunogenic cell death (ICD). Furthermore, we focused on discussing the pharmacological regulatory mechanisms of related small-molecule compounds. In brief, these insightful findings may provide valuable guidance for investigating individual or collaborative targeting approaches towards different RCD subroutines, ultimately driving the discovery of novel small-molecule compounds that target RCD and significantly enhance future cancer therapeutics.

摘要

程序性细胞死亡(RCD)是一种由一条或多条级联信号通路精心编排的可控细胞死亡形式,因此适合进行药物干预。RCD子程序可分为凋亡性或非凋亡性,在维持体内平衡、促进发育和调节免疫方面发挥着重要作用。最近越来越多的证据表明,RCD逃避往往是肿瘤存活的主要原因。几种非凋亡性RCD子程序因其能够诱导肿瘤消退和预防复发而受到关注,有望成为癌症治疗方法,这与凋亡作用相当。此外,它们为克服肿瘤对凋亡药物的获得性耐药提供了潜在的解决方案。随着对这些非凋亡性RCD子程序潜在机制的理解不断加深,越来越多靶向单一或多个通路的小分子化合物被发现,为当前的癌症治疗提供了新策略。在本综述中,我们全面总结了新兴的非凋亡性RCD子程序的当前调控机制,主要包括自噬依赖性细胞死亡、铁死亡、铜死亡、二硫死亡、坏死性凋亡、焦亡、碱死亡、氧死亡、副凋亡、线粒体通透性转换(MPT)驱动的坏死、内吞性细胞死亡、NETosis细胞死亡、溶酶体依赖性细胞死亡和免疫原性细胞死亡(ICD)。此外,我们重点讨论了相关小分子化合物的药理调控机制。简而言之,这些有见地的发现可能为研究针对不同RCD子程序的单独或联合靶向方法提供有价值的指导,最终推动发现靶向RCD的新型小分子化合物,并显著增强未来的癌症治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e55/11252466/d3d6496948b0/ga1.jpg

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