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靶向 GPC3 的基于人 VH 的 CAR-T 细胞在肝细胞癌临床前模型中清除肿瘤

英文原题:Human VH-based chimeric antigen receptor T cells targeting glypican 3 eliminate tumors in preclinical models of HCC.

PubMed 2023/01/18(内容时间) Hepatol Commun Q1 · IF 6(JCR 2025)

研究概要

我们的发现表明,与靶向近膜表位相比,改变靶向 GPC3 远端表位的纳米抗体 CAR 的铰链区和跨膜结构域,可导致强健的 T 细胞信号传导,并诱导快速且持久地清除肝细胞癌(HCC)肿瘤。

中文摘要

背景与目的:嵌合抗原受体(CAR)T细胞治疗肝细胞癌(HCC)等实体瘤仍面临挑战。纳米抗体因体积小、表达水平高,正成为CAR T细胞的新型构建模块。研究显示,靠近细胞膜的表位是CAR T细胞的有吸引力靶点。然而,现有CAR结构并非针对纳米抗体或远离细胞膜的表位设计。研究方法与结果:研究者采用hYP7 Fv(靶向近膜表位)和HN3 VH纳米抗体(靶向远膜表位)作为GPC3靶向元件,评估不同结构和长度的铰链区及跨膜区对CAR T细胞功能的影响。研究构建了多种含CD8、CD28、IgG4和Fc结构域组合的CAR T细胞。结果显示,通过两项独立且具有协同作用的铰链区和跨膜区改造,可以提高HN3 CAR T细胞效果。表达HN3 CAR且含IgG4铰链区及CD28跨膜结构域的T细胞(HN3-IgG4H-CD28TM)细胞毒活性高,并在免疫缺陷小鼠中完全清除了HCC肿瘤。HN3-IgG4H-CD28TM CAR T细胞富集了具有细胞毒性的记忆型CD8⁺ T细胞,NFAT信号增强,HCC细胞中的连环蛋白水平降低。结论:研究结果表明,与靶向近膜表位相比,改变纳米抗体CAR的铰链区和跨膜区以靶向远离细胞膜的GPC3表位,可增强T细胞信号传导,并快速、持久地清除HCC肿瘤。

展开英文摘要原文

BACKGROUND AND AIMS: Efficacy of chimeric antigen receptor (CAR) T cells for treating solid tumors, including HCC, remains a challenge. Nanobodies are emerging building blocks of CAR T cells due to their small size and high expression. Membrane proximal sites have been shown as attractive epitopes of CAR T cells. However, current CAR formats are not tailored toward nanobodies or targeting membrane distal epitopes. APPROACH AND RESULTS: Using hYP7 Fv (membrane proximal) and HN3 VH nanobody (membrane distal) as GPC3 targeting elements, we sought to determine how hinges and transmembrane portions of varying structures and sizes affect CAR T-cell function. We generated multiple permutations of CAR T cells containing CD8, CD28, IgG4, and Fc domains. We show that engineered HN3 CAR T cells can be improved by 2 independent, synergistic changes in the hinge and transmembrane domains. The T cells expressing the HN3 CAR which contains the hinge region of IgG4 and the CD28 transmembrane domain (HN3-IgG4H-CD28TM) exhibited high cytotoxic activity and caused complete HCC tumor eradication in immunodeficient mice. HN3-IgG4H-CD28TM CAR T cells were enriched for cytotoxic-memory CD8+ T cells and NFAT signals, and reduced catenin levels in HCC cells. CONCLUSION: Our findings indicate that altering the hinge and transmembrane domains of a nanobody-based CAR targeting a distal GPC3 epitope, in contrast to a membrane proximal epitope, lead to robust T-cell signaling and induce swift and durable eradication of HCC tumors.

论文信息

作者
Kolluri A、Li D、Li N、Duan Z、Roberts LR、Ho M
单位
Antibody Therapy Section, Laboratory of Molecular Biology, Center for Cancer Research, National Cancer Institute, Bethesda, Maryland, USA.United States
文献类型
美国 NIH 资助研究 · 非美国政府资助研究 · 美国 NIH 院内研究
期刊
Hepatology communications2023 Feb 1
原文标识
PubMed 36691969 · DOI 10.1097/HC9.0000000000000022