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:FGFR4-Targeted Chimeric Antigen Receptors Combined with Anti-Myeloid Polypharmacy Effectively Treat Orthotopic Rhabdomyosarcoma.
FGFR4-Targeted Chimeric Antigen Receptors Combined with Anti-Myeloid Polypharmacy Effectively Treat Orthotopic Rhabdomyosarcoma.
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横纹肌肉瘤(RMS)是儿童最常见的软组织癌。数十年来,治疗结局未见改善,复发、难治或转移性疾病尤其如此。由于缺乏新疗法且肿瘤突变负荷低,嵌合抗原受体(CAR)T细胞疗法可能是治疗RMS的有希望方法。既往研究发现,成纤维细胞生长因子受体4(FGFR4,CD334)在RMS中特异性上调,因此可能成为CAR-T 靶点。研究者使用RH30原位(肌内)肿瘤NSG小鼠模型,测试FGFR4靶向CAR治疗RMS的可行性。首先发现,开始T细胞治疗时,RMS肿瘤会形成富含胶原、充满免疫抑制性髓系细胞的基质,而单纯肿瘤异种移植模型中未见这种基质反应。通过噬菌体展示筛选单链可变片段结合物时,FGFR4靶向CAR未见疗效,直至改进筛选方法以识别FGFR4近膜结构域结合物。优化CAR后,研究者设计药理策略抑制T细胞诱导肿瘤基质中的髓系成分,以增强CAR-T 活性。对小鼠联合使用针对CSF1R、IDO1、iNOS、TGFβ、PD-L1、MIF及髓系异常分化的多种抗髓系药物后,FGFR4 CAR-T 细胞成功清除原位RMS肿瘤。这表明,即使RMS肿瘤靶点拷贝数极低,只要逆转免疫抑制性微环境,CAR-T 细胞仍可靶向治疗。
Rhabdomyosarcoma (RMS) is the most common soft tissue cancer in children. Treatment outcomes, particularly for relapsed/refractory or metastatic disease, have not improved in decades. The current lack of novel therapies and low tumor mutational burden suggest that chimeric antigen receptor (CAR) T-cell therapy could be a promising approach to treating RMS. Previous work identified FGF receptor 4 (FGFR4, CD334) as being specifically upregulated in RMS, making it a candidate target for CAR T cells.
We tested the feasibility of an FGFR4-targeted CAR for treating RMS using an NSG mouse with RH30 orthotopic (intramuscular) tumors. The first barrier we noted was that RMS tumors produce a collagen-rich stroma, replete with immunosuppressive myeloid cells, when T-cell therapy is initiated. This stromal response is not seen in tumor-only xenografts. When scFV-based binders were selected from phage display, CARs targeting FGFR4 were not effective until our screening approach was refined to identify binders to the membrane-proximal domain of FGFR4.
Having improved the CAR, we devised a pharmacologic strategy to augment CAR T-cell activity by inhibiting the myeloid component of the T-cell-induced tumor stroma. The combined treatment of mice with anti-myeloid polypharmacy (targeting CSF1R, IDO1, iNOS, TGFbeta, PDL1, MIF, and myeloid misdifferentiation) allowed FGFR4 CAR T cells to successfully clear orthotopic RMS tumors, demonstrating that RMS tumors, even with very low copy-number targets, can be targeted by CAR T cells upon reversal of an immunosuppressive microenvironment.
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