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:Targeting osteosarcoma with canine B7-H3 CAR T cells and impact of CXCR2 Co-expression on functional activity.
Targeting osteosarcoma with canine B7-H3 CAR T cells and impact of CXCR2 Co-expression on functional activity.
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利用大型动物自发性实体瘤模型(如患骨肉瘤(OS)的犬)有助于开发新的癌症免疫治疗方法,包括嵌合抗原受体(CAR)T细胞。
本研究旨在制备靶向B7-H3(CD276)的犬CAR-T 细胞。B7-H3在多种实体瘤(包括人和犬的OS)中过表达。研究评估这些细胞能否识别犬OS细胞系或异种移植模型中犬肿瘤表达的B7-H3。第二个目标是确定一种同时表达趋化因子受体和B7-H3 CAR的新型双CAR,能否增强犬CAR-T 细胞活性。
因此,研究检测了犬OS肿瘤中的B7-H3表达,评估犬B7-H3 CAR-T 细胞在体外的靶点结合,并在犬异种移植模型中比较B7-H3 CAR-T 与B7-H3-CXCR2双CAR-T 细胞的相对疗效。结果发现,多数犬OS肿瘤表达B7-H3,而正常犬组织中检测不到其表达。两种B7-H3 CAR-T 细胞在体外均可被激活并特异性杀伤OS靶细胞,但B7-H3-CXCR2 CAR-T 细胞产生的细胞因子显著更多。在犬OS异种移植模型中,B7-H3 CAR-T 细胞的抗肿瘤活性较弱;B7-H3-CXCR2 CAR-T 细胞则显著抑制肿瘤生长,并使多数受治小鼠的肿瘤完全消退。
因此,加入趋化因子受体可显著增强犬B7-H3 CAR-T 细胞的抗肿瘤活性。鉴于这类研究可对趋化因子受体的作用概念提供关键且贴近实际的验证,有必要在患原发性或转移性OS的犬中评估这一新型双CAR构建体。
The use of large animal spontaneous models of solid cancers, such as dogs with osteosarcoma (OS), can help develop new cancer immunotherapy approaches, including chimeric antigen receptor (CAR) T cells.
The goal of the present study was to generate canine CAR T cells targeting the B7-H3 (CD276) co-stimulatory molecule overexpressed by several solid cancers, including OS in both humans and dogs, and to assess their ability to recognize B7-H3 expressed by canine OS cell lines or by canine tumors in xenograft models. A second objective was to determine whether a novel dual CAR that expressed a chemokine receptor together with the B7-H3 CAR improved the activity of the canine CAR T cells.
Therefore, in the studies reported here we examined B7-H3 expression by canine OS tumors, evaluated target engagement by canine B7-H3 CAR T cells in vitro, and compared the relative effectiveness of B7-H3 CAR T cells versus B7-H3-CXCR2 dual CAR T cells in canine xenograft models.
We found that most canine OS tumors expressed B7-H3; whereas, levels were undetectable on normal dog tissues. Both B7-H3 CAR T cells demonstrated activation and OS-specific target killing in vitro, but there was significantly greater cytokine production by B7-H3-CXCR2 CAR T cells. In canine OS xenograft models, little anti-tumor activity was generated by B7-H3 CAR T cells; whereas, B7-H3-CXCR2 CAR T cells significantly inhibited tumor growth, inducing complete tumor elimination in most treated mice.
These findings indicated therefore that addition of a chemokine receptor could significantly improve the anti-tumor activity of canine B7-H3 CAR T cells, and that evaluation of this new dual CAR construct in dogs with primary or metastatic OS is warranted since such studies could provide a critical and realistic validation of the chemokine receptor concept.
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