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:Study on the in vitro and in vivo killing effects of PD-1 antibody-secreting c-Met-targeted CAR-T cells on esophageal cancer cell line ECA109.
c-Met/PD-1 CAR-T 细胞被成功构建,并表现出对 ECA109 食管癌细胞的显著体外和体内杀伤作用。
背景:本研究旨在评估分泌PD-1抗体的c-Met靶向CAR-T细胞对食管癌细胞系ECA109的体外及体内杀伤作用。方法:研究者利用TCGA和GTEx数据库分析食管癌组织中c-Met和PD-L1的表达;通过免疫组化检测临床食管癌及癌旁正常组织中二者的表达,并以流式细胞术验证ECA109细胞中的表达。研究者从健康志愿者获取并活化T细胞,利用慢病毒制备c-Met/PD-1 CAR-T细胞。通过流式细胞术检测其阳性率、亚型、抗体分泌和抗凋亡作用。实验组为c-Met/PD-1 CAR-T细胞,以c-Met CAR-T和CD19 CAR-T为对照,并设置活化T细胞空白对照。利用细胞活力检测(CCK-8)、酶联免疫吸附试验(ELISA)和乳酸脱氢酶释放试验(LDH),评估CAR-T细胞与ECA109细胞共培养后的增殖、细胞因子分泌和杀伤能力。体内实验通过将ECA109细胞皮下注射至裸鼠建立荷瘤模型,原位注射CAR-T细胞,并测量体重及肿瘤体积变化;对处死小鼠的心、肝、脾、肺和肾组织进行苏木精-伊红(HE)染色。结果:食管癌组织中c-Met和PD-L1高表达,而癌旁正常组织中表达低或不表达。ECA109细胞表面表达c-Met和PD-L1。成功制备的c-Met/PD-1 CAR-T细胞可分泌PD-1抗体,阻断CAR-T细胞表面的PD-1。在c-Met抗原刺激下,c-Met/PD-1 CAR-T细胞增殖、细胞因子释放及杀伤能力均更强。体内实验显示,c-Met/PD-1 CAR-T细胞可显著抑制裸鼠肿瘤,且未见明显脱靶效应。结论:研究成功构建c-Met/PD-1 CAR-T细胞,并证实其对ECA109食管癌细胞具有显著的体内外杀伤作用。
BACKGROUND: This study was designed to investigate the in vitro and in vivo killing effects of PD-1 antibody-secreting c-Met-targeted CAR-T cells on esophageal cancer cell line ECA109. METHODS: We employed the TCGA and GTEx databases to analyze the expression levels of c-Met and PD-L1 in esophageal cancer tissues. Immunohistochemistry was employed to detect the expression of c-Met and PD-L1 in clinical esophageal cancer tissues and adjacent normal tissues. Flow cytometry was employed to verify the expression of c-Met and PD-L1 in ECA109 cells. T cells from healthy volunteers were extracted and activated, and c-Met/PD-1 CAR-T cells were prepared utilizing lentivirus. Flow cytometry was employed to detect the positive rate, subtype, antibody secretion, and anti-apoptotic effects of c-Met/PD-1 CAR-T cells. The experimental group consisted of c-Met/PD-1 CAR-T cells, with c-Met CAR-T and CD19 CAR-T as control groups, and Active T cells as the blank control group. The proliferation, cytokine secretion, and killing ability of CAR-T cells co-cultured with ECA109 cells were assessed utilizing cell viability assays (CCK-8), enzyme-linked immunosorbent assays (ELISA), and lactate dehydrogenase release assays (LDH). In vivo experiments were conducted by subcutaneously injecting ECA109 cells into nude mice to establish tumor-bearing models. CAR-T cells were administered via in situ injection, and changes in body weight and tumor volume were measured. Hematoxylin and eosin (HE) staining was performed on heart, liver, spleen, lung, and kidney tissues from sacrificed mice. RESULTS: c-Met and PD-L1 were highly expressed in esophageal cancer tissues but were low or not expressed in adjacent normal tissues. ECA109 cells expressed c-Met and PD-L1 on their surface. Successfully prepared c-Met/PD-1 CAR-T cells secreted PD-1 antibodies that blocked PD-1 on the surface of CAR-T cells. Under stimulation by c-Met antigens, c-Met/PD-1 CAR-T cells exhibited stronger proliferation, cytokine release, and killing ability. In vivo experiments demonstrated significant tumor inhibition in nude mice treated with c-Met/PD-1 CAR-T cells without evident off-target effects. CONCLUSION: The c-Met/PD-1 CAR-T cells were successfully constructed and demonstrated significant in vitro and in vivo killing effects on ECA109 esophageal cancer cells.
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