CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Recent progress of PROTACs in cancer immunotherapy.
Recent progress of PROTACs in cancer immunotherapy.
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癌症治疗的近期范式转变——从手术切除、化疗或放疗转向免疫治疗——表明疾病治疗理念已从外源性、非特异性清除转向对致病因素进行内源性、精准调控。作为一项新兴技术,蛋白水解靶向嵌合体(PROTAC)在治疗多种蛋白驱动疾病方面展现出巨大潜力,其在癌症免疫治疗中的应用研究也迅速扩展。与单克隆抗体或小分子抑制剂依赖靶点占位的作用模式相比,PROTAC最突出的特点是事件驱动:可高效催化降解绝大多数能够被配体特异性结合的目标蛋白(POI)。这种催化性降解是PROTAC的核心机制,受到科学界广泛关注,并推动其应用于多种癌症免疫治疗。从根本上说,PROTAC是清除POI,而非仅仅抑制它,从而彻底消除其功能。这一机制为调节复杂免疫网络奠定了坚实基础。为跟进这一快速发展的动态领域,本综述简要概述PROTAC作用机制,重点阐述其在降解免疫检查点、调控免疫细胞功能蛋白及重塑肿瘤抑制性微环境方面的最新进展。
最后,本文介绍PROTAC在制备治疗性癌症疫苗及减弱嵌合抗原受体(CAR)T细胞细胞毒性方面的潜在应用,旨在为开发用于更有效癌症免疫治疗的新型PROTAC分子提供科学依据和新思路。
The recent paradigm shift in cancer therapy-from surgical resection, chemotherapy or radiotherapy toward immunotherapy-indicates that our approach to disease treatment has evolved from exogenous, nonspecific eradication to endogenous, precise modulation of pathogenic factors. As an emerging technology, proteolysis-targeting chimera (PROTAC) has demonstrated considerable potential for treating various protein-driven diseases, and research exploring its application in cancer immunotherapy is rapidly expanding. Compared with the occupancy-driven mode of monoclonal antibodies or small-molecule inhibitors, the most prominent feature of PROTAC lies in its event-driven mode, which efficiently catalyzes the degradation of the vast majority of proteins of interest (POI) that can be specifically bound by ligands.
This catalytic degradation property constitutes the core mechanism that has garnered significant interest in PROTAC from the scientific community and facilitated its application in various cancer immunotherapies. Fundamentally, PROTAC eliminates, rather than merely inhibits the POI, thereby completely abolishing its function.
This mechanism provides a solid foundation for its application in modulating complex immune networks. To keep pace with the rapid development in this fast-growing and dynamic field, this review briefly summarizes the mechanism of PROTAC and then focuses on elaborating its latest progress in degrading immune checkpoints, modulating functional proteins in immune cells, and reshaping the tumor-suppressive microenvironment.
Finally, we elucidate its potential applications in the preparation of therapeutic cancer vaccines and in mitigating chimeric antigen receptor (CAR)-T cell cytotoxicity.
We aim to provide scientific evidence and new insights to guide the development of novel PROTAC molecules for application in more effective cancer immunotherapies.
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