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 the activated microenvironment with endosialin (CD248)-directed CAR-T cells ablates perivascular cells to impair tumor growth and metastasis.
Targeting the activated microenvironment with endosialin (CD248)-directed CAR-T cells ablates perivascular cells to impair tumor growth and metastasis.
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这些数据突出表明 endosialin 是 CAR-T 细胞治疗的一种可行抗原,并且靶向与肿瘤血管系统密切相关的基质细胞可避免 CAR-T 细胞不得不穿越恶劣的免疫抑制性肿瘤微环境。此外,E3K CAR-T 细胞能够识别并靶向小鼠和人 endosialin+ 细胞,这使人源化且优化的 E3K CAR 成为有前途的候选者,可适用于广泛实体瘤类型的临床开发。
用嵌合抗原受体 (CAR)-T 细胞靶向实体瘤受到缺乏合适的肿瘤特异性抗原以及免疫抑制性、促结缔组织增生的肿瘤微环境的限制,后者阻碍 CAR-T 细胞浸润、活性和持久性。我们假设,靶向 endosialin (CD248) 受体——该受体由肿瘤相关周细胞和血管周围癌相关成纤维细胞强表达——将规避这些挑战,并为 CAR-T 细胞治疗提供一个令人兴奋的抗原,因为靶细胞与肿瘤血管系统紧密相邻,endosialin 在正常组织中表达有限,且在 endosialin 敲除小鼠中未观察到表型。
我们从三种免疫健全小鼠品系 BALB/c、FVB/N 和 C57BL/6 中制备了靶向 endosialin 的 E3K CAR-T 细胞。评估了 E3K CAR-T 细胞的组成(CD4+/CD8+ 比例)、体外针对 endosialin+ 和 endosialin- 细胞的活性,以及在同基因肿瘤模型中的体内扩增和活性,还有在未荷瘤健康小鼠和创伤小鼠以及荷瘤 endosialin 敲除小鼠中的体内扩增和活性。
E3K CAR-T 细胞在体外对小鼠和人 endosialin+ 细胞均有活性,但对 endosialin- 细胞无活性。过继转移的 E3K CAR-T 细胞在 endosialin 敲除小鼠、未荷瘤的 endosialin 野生型小鼠或伤口愈合模型中均未表现出活性,表明不存在脱靶活性和在靶/脱瘤活性。相比之下,将 E3K CAR-T 细胞过继转移至携带同基因型乳腺癌或肺癌细胞系的 BALB/c、FVB/N 或 C57BL/6 小鼠后,耗竭了肿瘤基质中的靶细胞,导致肿瘤坏死增加、肿瘤生长减少以及转移灶生长显著受损。
Targeting of solid cancers with chimeric antigen receptor (CAR)-T cells is limited by the lack of suitable tumor-specific antigens and the immunosuppressive, desmoplastic tumor microenvironment that impedes CAR-T cell infiltration, activity and persistence. We hypothesized that targeting the endosialin (CD248) receptor, strongly expressed by tumor-associated pericytes and perivascular cancer-associated fibroblasts, would circumvent these challenges and offer an exciting antigen for CAR-T cell therapy due to the close proximity of target cells to the tumor vasculature, the limited endosialin expression in normal tissues and the lack of phenotype observed in endosialin knockout mice.
We generated endosialin-directed E3K CAR-T cells from three immunocompetent mouse strains, BALB/c, FVB/N and C57BL/6. E3K CAR-T cell composition (CD4 + /CD8 + ratio), activity in vitro against endosialin + and endosialin - cells, and expansion and activity in vivo in syngeneic tumor models as well as in tumor-naive healthy and wounded mice and tumor-bearing endosialin knockout mice was assessed.
E3K CAR-T cells were active in vitro against both mouse and human endosialin + , but not endosialin - , cells. Adoptively transferred E3K CAR-T cells exhibited no activity in endosialin knockout mice, tumor-naive endosialin wildtype mice or in wound healing models, demonstrating an absence of off-target and on-target/off-tumor activity. By contrast, adoptive transfer of E3K CAR-T cells into BALB/c, FVB/N or C57BL/6 mice bearing syngeneic breast or lung cancer lines depleted target cells in the tumor stroma resulting in increased tumor necrosis, reduced tumor growth and a substantial impairment in metastatic outgrowth.
Together these data highlight endosialin as a viable antigen for CAR-T cell therapy and that targeting stromal cells closely associated with the tumor vasculature avoids CAR-T cells having to navigate the harsh immunosuppressive tumor microenvironment. Further, the ability of E3K CAR-T cells to recognize and target both mouse and human endosialin + cells makes a humanized and optimized E3K CAR a promising candidate for clinical development applicable to a broad range of solid tumor types.
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