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:Engineering a HER2-CAR-NK Cell Secreting Soluble Programmed Cell Death Protein with Superior Antitumor Efficacy.
Engineering a HER2-CAR-NK Cell Secreting Soluble Programmed Cell Death Protein with Superior Antitumor Efficacy.
这些数据共同表明,HER2 特异性 sPD-1-CAR-NK 细胞可将 sPD-1 转运至 HER2 高表达的癌组织,进一步改善 HER-CAR-NK 细胞的疗效,且无明显副作用。
曲妥珠单抗治疗后复发患者亟需新的治疗策略。HER2特异性CAR-NK正在迅速用于实体瘤研究,并具有相较HER2 CAR-T的若干优势。PD-1胞外结构域来源的可溶性PD-1(sPD-1)可阻断PD-1/PD-L1相互作用并增强抗癌免疫。本研究构建共表达sPD-1的新型HER2 CAR-NK(sPD-1-CAR-NK),在体外及高HER2表达乳腺癌小鼠模型中评估其细胞毒性、免疫活化和sPD-1释放,并包括曲妥珠单抗耐药模型。sPD-1-CAR-NK可释放有活性的sPD-1,增强其对HER2和PD-L1高表达靶细胞的杀伤,同时增加穿孔素、颗粒酶B和IFN-γ分泌。体内其抗癌免疫疗效优于普通HER2 CAR-NK,且优于腹腔注射sPD-1;肿瘤组织NK和T细胞浸润及活化增加。除PD-1注射组外,各组体温、器官组织和体重无显著变化。结果提示该细胞可将sPD-1递送至HER2高表达肿瘤组织,在无明显副作用下提高CAR-NK疗效,有望用于包括曲妥珠单抗耐药患者在内的HER2阳性乳腺癌。
A new therapy strategy for relapsing patients who have received trastuzumab treatment urgently needs to be explored. HER2-specific chimeric antigen receptor (CAR)-expressing NK cells are being rapidly developed for solid tumor therapy, as they have many advantages over HER2-CAR-T cells. Endogenous soluble PD-1 (sPD-1) from the PD-1 extracellular domain blocks PD-1/PD-L1 interaction to promote cancer immunology. Herein, we engineered a new HER2-CAR-NK cell that co-expresses sPD-1 (designed as sPD-1-CAR-NK cells) and assessed its cytotoxic activities toward various cancer cells, activation of immunity and sPD-1 release in vitro and in mouse models bearing breast cancer cells with high HER2 expression, with or without trastuzumab resistance. We demonstrated that sPD-1-CAR-NK cells were able to release bioactive sPD-1, thereby enhancing the cytolytic activities of HER2-CAR-NK cells against HER2 and PD-L1 highly expressing target cells accompanied by increases in the secretion of perforin, granzyme B and IFN- . In vivo, sPD-1-CAR-NK cells had superior immunological anticancer efficacy compared to HER2-CAR-NK cells, and they had advantages over HER2-CAR-NK cells in the intraperitoneal injection of sPD-1. Moreover, the infiltration and activation of NK and T cells into tumor tissue were increased in mice with sPD-1-CAR-NK cells. There was no significant change in the body temperature, organ tissue and body weight in all groups except for the group with the PD-1 injection. Together, these data indicate that HER2-specific sPD-1-CAR-NK cells can transport sPD-1 into cancer tissues with high HER2 expression, further improving the efficacy of HER-CAR-NK cells without obvious side effects. sPD-1-CAR-NK is a promising cytotherapeutic agent for patients bearing HER2-positive breast cancer, including those with trastuzumab resistance.
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