决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Lipid nanoparticle-based multi-scale systemic immune programming for cancer therapy.
目前,肿瘤免疫治疗的临床适用范围受到脱靶毒性、实体瘤中的物理屏障以及个性化细胞疗法复杂制造工艺的限制。
癌症免疫治疗的临床适用范围目前受到脱靶毒性、实体瘤中的物理屏障以及个性化细胞疗法复杂制造工艺的限制。本综述提出多尺度系统性免疫编程作为一种变革性方法,其中脂质纳米颗粒(LNPs)不仅作为递送载体,更作为可编程平台,在多个生物学尺度上指导免疫应答。在分子和细胞水平,LNP 设计与胞内递送调控 mRNA 稳定性、翻译和抗原呈递。在组织水平,瘤内 mRNA 递送重编程肿瘤微环境,以克服基质屏障和免疫抑制。在系统水平,LNPs 协调免疫应答,包括体内CAR-T 细胞工程化和疫苗驱动的免疫记忆。在机体水平,肝靶向 LNPs 恢复代谢调节因子、逆转恶病质并改善宿主抵抗力。在此框架基础上,我们提出一种双轨治疗范式,将肿瘤导向的免疫激活与宿主生理恢复相结合。总体而言,该方法使基于 LNP 的疗法将癌症视为一种系统性免疫代谢紊乱,而非局限性疾病。
The clinical reach of cancer immunotherapy is currently limited by off-target toxicity, physical barriers in solid tumors, and the complex manufacturing of personalized cell therapies. This review presents multi-scale systemic immune programming as a transformative approach, in which lipid nanoparticles (LNPs) function not merely as delivery vehicles but as programmable platforms that direct immune responses across biological scales. At the molecular and cellular levels, LNP design and intracellular delivery regulate mRNA stability, translation, and antigen presentation. At the tissue level, intratumoral mRNA delivery reprograms the tumor microenvironment to overcome stromal barriers and immunosuppression. At the systemic level, LNPs coordinate immune responses, including in vivo chimeric antigen receptor T cell (CAR-T) engineering and vaccine-driven immune memory. At the organismal level, liver-targeted LNPs restore metabolic regulators, reverse cachexia, and improve host resilience. Building on this framework, we propose a dual-track therapeutic paradigm that integrates tumor-directed immune activation with host physiological restoration. Together, this approach positions LNP-based therapies to treat cancer as a systemic immunometabolic disorder rather than a localized disease.
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