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癌症之外的 CAR 工程化细胞治疗:重编程纤维化和免疫介导炎症

英文原题:CAR-Engineered Cell Therapies Beyond Cancer: Reprogramming Fibrosis and Immune-Mediated Inflammation.

PubMed 2026/08/30(内容时间) Adv Sci (Weinh) Q1 · IF 14.1(JCR 2025)

研究概要

嵌合抗原受体(CAR)工程化细胞疗法正从血液系统恶性肿瘤拓展至自身免疫性、炎症性和纤维化疾病,尽管各平台和适应证的证据成熟度差异显著。

中文摘要

嵌合抗原受体(CAR)工程化细胞疗法正从血液系统恶性肿瘤拓展至自身免疫性、炎症性和纤维化疾病,但不同平台和适应证的证据成熟度差异显著。病例报告、小型病例系列和早期临床试验的初步证据提示,靶向 CD19 或 BCMA 的 CAR-T 细胞可使部分难治性自身免疫病患者的 B 细胞或浆细胞深度清除,并获得持续缓解;然而,其相对疗效、持久性和长期安全性仍未充分明确。相比之下,CAR 疗法治疗器官纤维化的证据目前主要来自临床前研究。在动物模型中,短暂的体内 CAR-T 生成可减轻纤维化;CAR 巨噬细胞(CAR-M)则显示出靶向吞噬和重塑微环境的能力。尽管 CAR-NK 细胞有望用于异体和现货型生产,其在非肿瘤疾病中的证据目前仍局限于临床前研究和单例患者观察。本综述批判性比较 CAR-T、CAR-M 和 CAR-NK 平台,考察新兴的非传统免疫细胞及 iPSC 衍生产品,并评估可编程 CAR 工程和体内 CAR 工程策略。我们提出“可控的时空重编程”这一框架,将靶标特异性、组织分布、活性持续时间、可逆性、生产方式及疾病特异性安全要求联系起来。

展开英文摘要原文

Chimeric antigen receptor (CAR)-engineered cell therapies are being extended from hematological malignancies to autoimmune, inflammatory, and fibrotic diseases, although the maturity of evidence differs markedly among platforms and indications. Early clinical evidence from case reports, small case series, and early-phase trials suggests that CD19- or BCMA-directed CAR-T cells can induce deep B-cell or plasma-cell depletion and sustained remission in selected patients with refractory autoimmune diseases; however, their comparative efficacy, durability, and long-term safety remain incompletely defined. By contrast, CAR-based treatment of organ fibrosis remains predominantly preclinical. In animal models, transient in vivo CAR-T generation has attenuated fibrosis, whereas CAR-macrophage(CAR-M) approaches have demonstrated targeted phagocytosis and microenvironmental remodeling. Evidence for CAR-natural killer cells (CAR-NK) in non-oncological diseases is currently limited to preclinical studies and an individual-patient observation, despite their potential advantages for allogeneic and off-the-shelf manufacturing. This Review critically compares CAR-T, CAR-M, and CAR-NK platforms, examines emerging unconventional immune-cell and iPSC-derived products, and evaluates programmable and in vivo CAR-engineering strategies. We propose "controllable spatiotemporal reprogramming" as a framework linking target specificity, tissue distribution, activity duration, reversibility, manufacturing, and disease-specific safety requirements.

论文信息

作者
Xu PJ、Zhang ZJ、Jin J、Xu HY、Gu YX、Yang QQ、Zhou YL
单位
The Nanomedicine Research Laboratory, Hand Surgery Research Center, Research Central of Clinical Medicine, Affiliated Hospital of Nantong University, Medical School of Nantong University, Nantong, China.China
文献类型
综述
期刊
Advanced science (Weinheim, Baden-Wurttemberg, Germany)2026 Aug 30
原文标识
PubMed 42669593 · DOI 10.1002/advs.77503