工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
我们的方法将酶/前药治疗和免疫治疗整合到一个单一的细菌递送系统中,通过提供合理设计的空间控制化学免疫治疗框架,克服了传统疗法的关键局限性。
英文原题:CAR-M Therapy: From Concept to Clinical Translation in Solid Tumors.
尽管嵌合抗原受体(CAR)-T 细胞疗法在血液系统恶性肿瘤中显示出显著疗效,但其在实体瘤中的疗效仍受限于敌对的肿瘤微环境(TME)和抗原异质性。
嵌合抗原受体(CAR)T细胞疗法治疗血液系统恶性肿瘤效果显著,但在实体瘤中的疗效仍受恶劣肿瘤微环境(TME)及抗原异质性限制。近期,CAR巨噬细胞(CAR-M)疗法成为一种范式转变式策略,利用巨噬细胞深度浸润肿瘤的先天能力及其逆转免疫抑制的可塑性。与T细胞不同,CAR-M不仅介导直接吞噬,还可启动表位扩展,有效连接先天与适应性免疫。本综述批判性考察CAR-M疗法从生物学依据到临床应用的演进。我们分析CAR构建体工程的发展,并提出应采用巨噬细胞特异性信号结构域(如FcRγ、Megf10),而非传统T细胞设计。我们重点讨论临床转化的主要瓶颈,包括不扩增的原代巨噬细胞制造难题,以及新近转向诱导多能干细胞(iPSC)来源平台的趋势。此外,我们评估当前临床试验格局,并讨论下一代策略,如通过脂质纳米颗粒(LNP)进行体内编程以及采用合成逻辑门控提高安全性。最终,克服制造限制并优化递送系统,将是推动CAR-M由小众疗法发展为实体瘤标准治疗方式的关键。
While chimeric antigen receptor (CAR)-T-cell therapies have shown significant effectiveness in hematological malignancies, their efficacy in solid tumors remains limited by the hostile tumor microenvironment (TME) and antigen heterogeneity. Recently, CAR-Macrophage (CAR-M) therapy has emerged as a paradigm-shifting approach, leveraging the innate capability of macrophages to deeply infiltrate tumors and their plasticity to reverse immunosuppression. Unlike T cells, CAR-Ms not only mediate direct phagocytosis but also initiate epitope spreading, effectively bridging innate and adaptive immunity. This review critically examines the trajectory of CAR-M therapy from biological rationale to clinical reality. We dissect the engineering evolution of CAR constructs, arguing for macrophage-specific signaling domains (e.g., FcR , Megf10) over traditional T-cell designs. Crucially, we address the major bottlenecks in clinical translation, including the manufacturing challenges of non-expanding primary macrophages and the emerging shift toward induced pluripotent stem cell (iPSC)-derived platforms. Furthermore, we evaluate current clinical trial landscapes and discuss next-generation strategies such as in vivo programming via lipid nanoparticles (LNPs) and synthetic logic-gating to enhance safety. Ultimately, overcoming manufacturing constraints and optimizing delivery systems will be pivotal for CAR-M to evolve from a niche therapy into a standard-of-care modality for solid tumors.
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