决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:CRISPR-Cas9 knockout of DGKα/ζ improves the anti-tumor activities of TAG-72 CAR-T cells in ovarian cancer.
CRISPR-Cas9 knockout of DGKα/ζ improves the anti-tumor activities of TAG-72 CAR-T cells in ovarian cancer.
卵巢癌等实体瘤的高复发率和化疗耐药凸显了对新疗法的需求。
卵巢癌等实体瘤复发率高且易出现化疗耐药,亟需新疗法。嵌合抗原受体(CAR)T细胞虽显示潜力,但受肿瘤异质性和肿瘤微环境(TME)免疫抑制限制,因此需要新策略进一步增强疗效。T细胞疗法中,抑制检查点分子对于克服耗竭、提升抗肿瘤活性至关重要;同时,通过工程化使细胞靶向正常健康细胞不表达的标志物,可降低脱靶风险。本研究靶向在卵巢癌等腺癌中高表达的肿瘤相关糖蛋白72(TAG-72),构建TAG-72 CAR-T细胞,并使用CRISPR-Cas9敲除T细胞抑制性酶二酰甘油激酶(DGK)α和ζ。DGKα/ζ双敲除不影响CAR-T细胞活力或表型。此类细胞可在体外选择性杀伤表达TAG-72的癌细胞,并在体内清除已建立的肿瘤,效果持续至100天;未敲除的TAG-72 CAR-T对照细胞则约40天后出现肿瘤复发。这些发现提示,CRISPR介导的DGKα/ζ敲除有望增强CAR-T细胞对卵巢癌等实体瘤的疗效,为改善癌症治疗提供新途径。
High recurrence and chemoresistance in solid tumors, like ovarian cancer, stress the need for new therapies. Chimeric antigen receptor (CAR)-T cells show promise but face challenges due to tumor heterogeneity and immune suppression in the tumor microenvironment (TME). Thus, novel approaches are needed to further enhance the efficacy of CAR-T cell therapies. In T cell therapies, inhibiting checkpoint molecules is crucial for overcoming exhaustion and boosting anti-tumor activity. Additionally, prioritizing safety by engineering cells to target markers absent on normal healthy cells reduces off-target risks. We targeted tumor-associated glycoprotein 72 (TAG-72), an oncofetal antigen highly expressed in adenocarcinomas like ovarian cancer, by engineering TAG-72 CAR-T cells and used CRISPR-Cas9 to knock out the T cell-inhibitory enzymes diacylglycerol kinase (DGK) and . DGK / knockout (KO) did not impact CAR-T cell viability or phenotype. These cells selectively killed TAG-72-expressing cancer cells in vitro and ablated established tumors in vivo for up to 100 days, whereas non-deleted control TAG-72 CAR-T cells showed tumor relapse around 40 days. These findings highlight the potential of CRISPR-induced DGK / KO to enhance CAR-T cell efficacy against solid tumors such as ovarian cancer, offering a promising avenue for improved cancer therapies.
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