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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Multivalent adaptor proteins specifically target NK cells carrying a universal chimeric antigen receptor to ErbB2 (HER2)-expressing cancers.
Multivalent adaptor proteins specifically target NK cells carrying a universal chimeric antigen receptor to ErbB2 (HER2)-expressing cancers.
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嵌合抗原受体(CAR)工程化免疫效应细胞构成了一种有前景的过继性癌症免疫治疗方法。然而,on-target/off-tumor毒性和因抗原丢失导致的免疫逃逸是相当大的挑战。这些挑战可能通过适配体CAR来克服,适配体CAR由双特异性分子选择性触发,这些双特异性分子将CAR与肿瘤相关表面抗原交联。
在此,我们生成了携带第一代或第二代通用CAR(UniCAR)的NK细胞,并通过所谓的靶模块(TMs)将其重定向至肿瘤细胞,这些靶模块含有用于靶细胞结合的ErbB2(HER2)特异性抗体结构域以及被UniCAR识别的E5B9肽。为了研究蛋白质设计对活性的差异性影响,我们开发了同源二聚体TMs,每个单体含有一个、两个或三个E5B9肽,结合结构域要么直接连接,要么通过IgG4 Fc结构域分隔。适配体分子在Expi293F细胞中表达为分泌蛋白,从培养上清液中纯化,并通过流式细胞术确认了其与UniCAR和ErbB2的双特异性结合。在细胞杀伤实验中,所有测试的TMs均将NK细胞细胞毒性选择性重定向至ErbB2阳性肿瘤细胞。
然而,我们发现特异性细胞杀伤的程度因TM设计和CAR组成而存在显著差异,携带两个或三个E5B9表位的适配体蛋白与表达第一代UniCAR的NK细胞联合时更为有效,而第二代UniCAR在含有一个E5B9序列的TMs存在时活性更高。这些结果可能对进一步开发用于癌症免疫治疗的优化UniCAR和靶模块组合具有重要意义。
Chimeric antigen receptor (CAR)-engineered immune effector cells constitute a promising approach for adoptive cancer immunotherapy. Nevertheless, on-target/off-tumor toxicity and immune escape due to antigen loss represent considerable challenges. These may be overcome by adaptor CARs that are selectively triggered by bispecific molecules that crosslink the CAR with a tumor-associated surface antigen.
Here, we generated NK cells carrying a first- or second-generation universal CAR (UniCAR) and redirected them to tumor cells with so-called target modules (TMs) which harbor an ErbB2 (HER2)-specific antibody domain for target cell binding and the E5B9 peptide recognized by the UniCAR. To investigate differential effects of the protein design on activity, we developed homodimeric TMs with one, two or three E5B9 peptides per monomer, and binding domains either directly linked or separated by an IgG4 Fc domain. The adaptor molecules were expressed as secreted proteins in Expi293F cells, purified from culture supernatants and their bispecific binding to UniCAR and ErbB2 was confirmed by flow cytometry.
In cell killing experiments, all tested TMs redirected NK cell cytotoxicity selectively to ErbB2-positive tumor cells. Nevertheless, we found considerable differences in the extent of specific cell killing depending on TM design and CAR composition, with adaptor proteins carrying two or three E5B9 epitopes being more effective when combined with NK cells expressing the first-generation UniCAR, while the second-generation UniCAR was more active in the presence of TMs with one E5B9 sequence.
These results may have important implications for the further development of optimized UniCAR and target module combinations for cancer immunotherapy.
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