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:Enhanced anti-tumor activity mediated by combination chimeric antigen receptor T cells targeting GD2 and GPC2 in high-risk neuroblastoma.
Enhanced anti-tumor activity mediated by combination chimeric antigen receptor T cells targeting GD2 and GPC2 in high-risk neuroblastoma.
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这些数据表明,联合靶向多个 TAAs 是克服实体瘤中异质性抗原表达并延长 CAR-T 细胞持久性以用于 HRNB 免疫治疗的有前景策略。
单靶点CAR-T 细胞治疗实体瘤的活性有限,原因包括T细胞持久性差、浸润不足、耗竭以及肿瘤相关抗原表达异质性;高危神经母细胞瘤也面临这些问题。本研究开发同时靶向GD2和GPC2的策略。研究者分别构建含选择性结构域的两种CAR,该结构域为源自人核自身抗原La/SS-B的10个氨基酸肽段,可由特异性单克隆抗体刺激。抗体刺激可选择性促进工程化T细胞增殖并增加终产品中的中央记忆T细胞;也增强短期细胞毒性。联合治疗通过释放TNF和IL-15延长体外抗肿瘤活性,并克服抗原表达异质性。在体内,多靶点策略效果尤为明显,可诱导caspase-3/PARP通路介导的凋亡并抑制促肿瘤细胞因子的释放。结果支持联合靶向多个肿瘤相关抗原,以改善实体瘤抗原异质性问题并延长CAR-T 细胞持久性。
We individually developed GD2-specific and GPC2-specific CARs containing a selective domain (sCAR) which was a peptide of 10 amino acids derived from human nuclear autoantigen La/SS-B. These constructs allowed us to generate two different HRNB antigen-specific CAR-T cells with enhanced biological activity through stimulating sCAR-engrafted T cells via a selective domain-specific monoclonal antibody (SmAb). Binding affinity and stimulation of GD2- and GPC2-specific sCARs by SmAb were measured, and transient and persistent anti-tumor cytotoxicity of GD2sCAR-T and GPC2sCAR-T cells were quantified in neuroblastoma cell lines expressing different TAA levels. The anti-tumor pharmaceutical effects and cellular mechanisms mediated by single or combinational sCAR-T cells were evaluated in vitro and in vivo.
GD2- and GPC2-specific sCARs had antigen-specific binding affinity similar to their parental counterparts and were recognized by SmAb. SmAb-mediated stimulation selectively activated sCAR-T proliferation and increased central memory T cells in the final products. SmAb-stimulated sCAR-T cells had enhanced transient cytolytic activity, and combination therapy extended long-term anti-tumor activity in vitro through TNF- and IL-15 release. Stimulated sCAR-T cells overcame heterogeneous antigen expression in HRNB, and the multi-TAA-targeting strategy was especially efficacious in vivo, inducing apoptosis through the caspase-3/PARP pathway and inhibiting the release of several tumor-promoting cytokines.
These data suggest that combined targeting of multiple TAAs is a promising strategy to overcome heterogenous antigen expression in solid tumors and extend CAR-T cell persistence for HRNB immunotherapy.
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