CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Colorectal cancer stem cells crosstalk in tumor immune microenvironment and targeted therapeutic strategies.
Colorectal cancer stem cells crosstalk in tumor immune microenvironment and targeted therapeutic strategies.
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结直肠癌(CRC)因治疗耐药、转移和复发而仍是严峻的临床挑战。这些过程的核心是结直肠癌干细胞(CCSCs),这是一个具有自我更新能力、可塑性和异质性的动态亚群。本综述综合了关于CCSCs如何通过与肿瘤免疫微环境(TIME)的复杂双向串扰来协调肿瘤进展的最新进展。
我们首先阐明CCSCs的细胞起源、其显著的瘤内异质性以及由其驱动的显著表型可塑性——由遗传、表观遗传和代谢重编程驱动——这些共同构成治疗失败的根源。
我们讨论的重要部分致力于解构CCSCs所利用的免疫抑制微环境。我们详述了免疫逃逸和耐受的机制,强调CCSCs如何调节先天性和适应性免疫细胞——包括NK细胞、Tregs、树突状细胞、巨噬细胞、中性粒细胞和髓源性抑制细胞——以营造支持干性并抑制细胞毒性攻击的环境。这种相互作用形成恶性循环,持续促进肿瘤存活和进展。
最后,我们批判性评估了同时靶向CCSC特异性脆弱性和对抗免疫抑制的新兴治疗策略。我们探讨了传统化疗的局限性以及靶向治疗(如Wnt抑制剂)、免疫治疗(如CAR-T、双特异性抗体)和旨在重塑TIME并根除CCSC储库的联合方案的潜力。通过整合单细胞组学和空间生物学的见解,本综述为克服治疗耐药性提供了全面的框架,并为CRC提出了新的精准医学方法。
Colorectal cancer (CRC) remains a formidable clinical challenge due to therapy resistance, metastasis, and relapse. Central to these processes are colorectal cancer stem cells (CCSCs), a dynamic subpopulation endowed with self-renewal capacity, plasticity, and heterogeneity. This review synthesizes recent advancements in understanding how CCSCs orchestrate tumor progression through intricate bidirectional crosstalk with the tumor immune microenvironment (TIME).
We begin by elucidating the cellular origins of CCSCs, their profound intratumoral heterogeneity, and their remarkable phenotypic plasticity-driven by genetic, epigenetic, and metabolic reprogramming-which collectively serve as the root cause of therapeutic failure. A significant portion of our discussion is dedicated to deconstructing the immunosuppressive niche co-opted by CCSCs.
We detail mechanisms of immune evasion and tolerance, highlighting how CCSCs modulate innate and adaptive immune cells-including NK cells, Tregs, dendritic cells, macrophages, neutrophils, and myeloid-derived suppressor cells-to foster an environment that supports stemness and suppresses cytotoxic attack. This reciprocal interaction forms a vicious cycle that perpetuates tumor survival and progression.
Finally, we critically evaluate emerging therapeutic strategies that concurrently target CCSC-specific vulnerabilities and counteract immunosuppression.
We explore the limitations of conventional chemotherapy and the promise of targeted therapies (e. g. , Wnt inhibitors), immunotherapies (e. g. , CAR-T, bispecific antibodies), and combination regimens designed to remodel the TIME and eradicate the CCSC reservoir. By integrating insights from single-cell omics and spatial biology, this review provides a comprehensive framework for overcoming therapy resistance and proposes novel precision medicine approaches for CRC.
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