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快速 CAR 筛选和 circRNA 驱动的 CAR-NK 细胞用于持久抗脱落免疫治疗

英文原题:Rapid CAR screening and circRNA-driven CAR-NK cells for persistent shed-resistant immunotherapy.

PubMed 2026/04/10(内容时间) Signal Transduct Target Ther Q1 · IF 81.2(JCR 2025)

研究概要

针对实体瘤的嵌合抗原受体(CAR)免疫疗法面临两大障碍:脱落抗原的“诱饵效应”会隔离CAR,以及免疫效应细胞在免疫抑制性肿瘤微环境中持久性有限。

中文摘要

针对实体瘤的嵌合抗原受体(CAR)免疫治疗面临两大障碍:脱落抗原对 CAR 的“诱饵效应”以及免疫效应细胞在免疫抑制性肿瘤微环境中持久性有限。在此,我们提出一种机制性策略,通过将生理相关的筛选平台与环状 RNA(circRNA)工程相结合来克服这些障碍。与传统使用永生化细胞系的筛选不同,我们直接在人原代自然杀伤(NK)细胞中进行快速功能性筛选,鉴定出一种新型 scFv——CLMS10。结构建模显示,CLMS10 靶向一个靠近膜端的表位,该表位与蛋白水解切割位点重叠,从而逃避可溶性间皮素(solMSLN)的抑制。此外,我们证明,circRNA 介导的 CAR 表达在与白细胞介素-21(IL-21)共递送时,可赋予足够的稳定性以抵御癌症相关成纤维细胞(CAF)诱导的持续抗原脱落,从而减少 CAR 下调。在体内转移性胰腺癌模型中,经 IL-21 增强的 circCAR-MS10-NK 细胞表现出与慢病毒工程化 CAR-NK 细胞相当的效力,同时具有更优的可制造性。总体而言,本研究通过表位特异性功能选择与增强 RNA 稳定性的策略性整合,为生成抗脱落型 CAR 治疗药物建立了范式。

展开英文摘要原文

Chimeric antigen receptor (CAR)-based immunotherapies against solid tumors face two major hurdles, the "decoy effect" of shedding antigens that sequester CARs, and the limited persistence of immune effectors within the immunosuppressive tumor microenvironment. Here, we present a mechanistic approach to overcome these barriers by integrating a physiologically relevant screening platform with circular RNA (circRNA) engineering. Unlike conventional screens using immortalized cell lines, we performed rapid functional screening directly in human primary natural killer (NK) cells to identify a novel scFv, CLMS10. Structural modeling revealed that CLMS10 targets a membrane-proximal epitope that overlaps the proteolytic cleavage site, thereby evading inhibition by soluble mesothelin (solMSLN). Furthermore, we demonstrated that circRNA-mediated CAR expression, when codelivered with interleukin-21 (IL-21), confers sufficient stability to withstand the continuous antigen shedding induced by cancer-associated fibroblasts (CAFs), resulting in reduced CAR downregulation. In an in vivo metastatic pancreatic cancer model, IL-21-augmented circCAR-MS10-NK cells exhibited potency comparable to that of lentivirally engineered CAR-NK cells while offering superior manufacturability. Overall, this study establishes a paradigm for generating shed-resistant CAR therapeutics through the strategic integration of epitope-specific functional selection and enhanced RNA stability.

论文信息

作者
Chung JY、Hong J、Yee SM、Lim HW、Lee D、Yoon S、Lee SH、Jung Y
第一作者单位
Medicinal Materials Research Center, Biomedical Research Division, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.South Korea
通讯作者单位
Medicinal Materials Research Center, Biomedical Research Division, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea. mihue@kist.re.kr.South Korea
期刊
Signal transduction and targeted therapy2026 Apr 10
原文标识
PubMed 41963304 · DOI 10.1038/s41392-026-02623-6