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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Beyond autologous ex vivo CAR-expressing cell therapies: Toward allogeneic and nucleated cell-free delivery systems of CAR.
Beyond autologous ex vivo CAR-expressing cell therapies: Toward allogeneic and nucleated cell-free delivery systems of CAR.
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ex vivo 嵌合抗原受体(CAR)-T 细胞疗法的成功已经改变了血液系统恶性肿瘤的治疗,但仍受限于个体化生产的复杂性和成本。新兴的 in situ 和 in vivo CAR 工程平台旨在通过在患者体内直接编程免疫细胞来克服这些障碍。靶向脂质纳米颗粒、合成 DNA 纳米载体以及病毒和非病毒递送系统已证明能够在无需 ex vivo 操作的情况下生成功能性 CAR-T 细胞,从而实现可扩展、按需的免疫治疗。与此同时,异体“现货型”细胞疗法的进展提供了供者来源产品,可大规模生产、冷冻保存并快速交付。其他细胞类型也正在被探索作为 in vivo CAR 递送的载体。利用异体细胞作为 CAR 构建体载体的混合方法,可能将现货型产品的可扩展性与 in vivo 工程的速度和灵活性结合起来。尽管前景可观,挑战仍然存在,包括细胞特异性靶向、转基因持久性的控制、免疫原性以及监管方面的考量。
总之,这些创新标志着基于 CAR 的细胞免疫疗法的生成和部署正在发生范式转变。
The success of ex vivo chimeric antigen receptor (CAR)-T cell therapies has transformed the treatment of hematologic malignancies but remains limited by individualized manufacturing complexity and cost. Emerging in situ and in vivo CAR engineering platforms aim to overcome these barriers by programming patient immune cells directly within the body. Targeted lipid nanoparticles, synthetic DNA nanocarriers, and viral and non-viral delivery systems have demonstrated the ability to generate functional CAR-T cells without ex vivo manipulation, enabling scalable, on-demand immunotherapy.
In parallel, advances in allogeneic "off-the-shelf" cellular therapies provide donor-derived products that can be manufactured at scale, cryopreserved, and delivered rapidly. Additional cell types are also being explored as vehicles for in vivo CAR delivery.
Hybrid approaches that leverage allogeneic cells as carriers for CAR constructs may combine the scalability of off-the-shelf products with the speed and flexibility of in vivo engineering. Despite this promise, challenges remain, including cell-specific targeting, control of transgene persistence, immunogenicity, and regulatory considerations.
Together, these innovations signal a paradigm shift in the generation and deployment of CAR-based cellular immunotherapies.
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