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肝移植后肝细胞癌复发的 CAR T 细胞工程化改造

英文原题:Engineering CAR T Cells for Hepatocellular Carcinoma Recurrence after Liver Transplantation.

PubMed 2026/07/05(内容时间) bioRxiv

研究概要

双编辑GPC3 CAR T细胞能够抵抗基于他克莫司的免疫抑制,同时限制同种异体反应性,支持其用于肝移植后复发性HCC。在模块化细胞工程框架中进行序贯、高活力选择,使得能够适应替代性肿瘤靶点和下一代CAR T细胞设计。

研究思路结论见上方概要

肝移植可改善肝细胞癌(HCC)的预后,但肿瘤复发患者的治疗选择仍局限于酪氨酸激酶抑制剂。靶向GPC3的CAR T细胞提供了一种针对肿瘤的免疫治疗策略,但其疗效可能受到移植后免疫抑制的限制。我们开发了一种CAR T细胞平台,将CRISPR/Cas9介导的FKBP1A敲除以赋予对FKBP12依赖性免疫抑制剂(包括他克莫司、依维莫司和西罗莫司)的抗性,与TRAC敲除以消除内源性T细胞受体表达并降低同种异体反应性相结合。

人T细胞通过靶向FKBP1A和TRAC的Cas9核糖核蛋白复合物进行编辑,扩增,并用抗GPC3 CAR构建体转导。在体外评估了细胞因子产生和细胞毒性。在Hep G2异种移植模型中评估了他克莫司治疗下的抗肿瘤活性,并在移植物抗宿主病模型中评估了异种反应性。使用mTOR抑制剂选择结合基于CD3的MACS去除富集了FKBP1A/TRAC双敲除T细胞。来自肝移植受者的PBMCs用于评估移植后早期临床转化的可行性。

他克莫司抑制了野生型 CAR T 细胞功能,但未抑制 FKBP1A / TRAC 双敲除 CAR T 细胞,后者保留了细胞因子产生、细胞毒性和体内抗肿瘤活性。环孢素 A 仍具有抑制作用,使其可作为药理学控制策略使用。TRAC 破坏降低了异种反应性。基于 CD3 的 MACS 去除和 mTOR 抑制实现了功能性双敲除效率大于 98%,且未损害细胞活力。从移植后 30 天的患者 PBMC 样本中成功生成了功能性 FKBP1A/TRAC 敲除 CAR T 细胞。

展开英文摘要原文

BACKGROUND & AIMS: Liver transplantation improves outcomes in hepatocellular carcinoma (HCC), yet treatment options for patients with tumor recurrence remain limited to tyrosine kinase inhibitors. Glypican-3 (GPC3)-targeted CAR T cells offer a tumor-directed immune-based therapeutic strategy, but their efficacy may be limited by post-transplant immunosuppression. We developed a CAR T cell platform combining CRISPR/Cas9-mediated FKBP1A disruption to confer resistance to FKBP12-dependent immunosuppressive agents, including tacrolimus, everolimus, and sirolimus, with TRAC knockout to eliminate endogenous T cell receptor expression and reduce alloreactivity. METHODS: Human T cells were edited using Cas9 ribonucleoprotein complexes targeting FKBP1A and TRAC , expanded, and transduced with an anti-GPC3 CAR construct. Cytokine production and cytotoxicity were assessed in vitro . Antitumor activity under tacrolimus treatment was evaluated in a Hep G2 xenograft model, and xenoreactivity was assessed in a graft-versus-host disease model. FKBP1A/TRAC double-knockout T cells were enriched using mTOR inhibitor selection combined with CD3-based MACS depletion. PBMCs from liver transplant recipients were used to evaluate feasibility for clinical translation during the early post-transplant period. RESULTS: Tacrolimus suppressed wild-type CAR T cell function but not FKBP1A / TRAC double-knockout CAR T cells, which retained cytokine production, cytotoxicity, and in vivo antitumor activity. Cyclosporine A remained suppressive, enabling its potential use as a pharmacologic control strategy. TRAC disruption reduced xenoreactivity. CD3-based MACS depletion and mTOR inhibition achieved functional double-knockout efficiencies greater than 98%, without compromising cell viability. Functional FKBP1A/TRAC knockout CAR T cells were generated from patient PBMC samples 30 days post-transplant. CONCLUSIONS: Dual-edited GPC3 CAR T cells resist tacrolimus-based immunosuppression while limiting alloreactivity, supporting their use for recurrent HCC after liver transplantation. Sequential, high-viability selection in a modular cellular engineering framework enables adaptation to alternative tumor targets and next-generation CAR T cell designs.

论文信息

作者
Kocheise L、Bacil G、Bhimalli P、Benmebarek MR、Li D、Huang P、Ma C、Muralidaran V
单位
Gastrointestinal Malignancies Section, Thoracic and GI Malignancies Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.United States
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2026 Jul 5
原文标识
PubMed 42427600 · DOI 10.64898/2026.06.30.735569