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:Imaging CAR-NK cells targeted to HER2 ovarian cancer with human sodium-iodide symporter-based positron emission tomography.
我们的研究展示了 HER2 靶向 CAR-NK 细胞在侵袭性卵巢癌模型中的治疗潜力,并强调了利用人源 PET 报告基因成像在患者体内无创监测这些细胞的可行性。
嵌合抗原受体(CAR)细胞疗法利用 CAR 将免疫细胞重定向至表达特定抗原(如人表皮生长因子受体 2〔HER2〕)的癌细胞。CAR-T 疗法虽有潜力,但患者应答率不一,部分患者会发生不良反应。非侵入性分子影像可通过追踪输注后细胞帮助预测结局。CAR-T 通常为自体产品,因此生产复杂且成本高。替代方法是开发现货型异基因 CAR 自然杀伤(CAR-NK)细胞。本研究构建了共表达正电子发射断层显像(PET)报告基因——人钠/碘同向转运体(NIS)的 HER2 靶向 CAR-NK 细胞,并在 HER2 卵巢癌小鼠模型中评估其疗效和 PET 成像能力。 研究对 NK-92 细胞进行基因修饰,使其表达 HER2 靶向 CAR、生物发光成像报告基因 Antares 和 NIS;HER2 阳性卵巢癌细胞则工程化表达生物发光报告基因萤火虫荧光素酶(Fluc)。共培养实验显示,CAR-NK 细胞较未经改造 NK 细胞具有显著增强的细胞毒性。体内实验中,接受 CAR-NK 的荷瘤小鼠肿瘤负荷降低、生存期延长。纵向生物发光成像显示 CAR-NK 信号随时间稳定。使用 NIS 靶向示踪剂 18F-四氟硼酸盐([18F]TFB)的 PET 成像显示,表达 NIS 的 CAR-NK 治疗小鼠 PET 信号显著增强。总体而言,本研究展示 HER2 靶向 CAR-NK 治疗侵袭性卵巢癌模型的潜力,并证实可利用人源 PET 报告基因在患者体内无创监测这些细胞。
Chimeric antigen receptor (CAR) cell therapies utilize CARs to redirect immune cells towards cancer cells expressing specific antigens like human epidermal growth factor receptor 2 (HER2). Despite their potential, CAR T cell therapies exhibit variable response rates and adverse effects in some patients. Non-invasive molecular imaging can aid in predicting patient outcomes by tracking infused cells post-administration. CAR-T cells are typically autologous, increasing manufacturing complexity and costs. An alternative approach involves developing CAR natural killer (CAR-NK) cells as an off-the-shelf allogeneic product. In this study, we engineered HER2-targeted CAR-NK cells co-expressing the positron emission tomography (PET) reporter gene human sodium-iodide symporter (NIS) and assessed their therapeutic efficacy and PET imaging capability in a HER2 ovarian cancer mouse model.NK-92 cells were genetically modified to express a HER2-targeted CAR, the bioluminescence imaging reporter Antares, and NIS. HER2-expressing ovarian cancer cells were engineered to express the bioluminescence reporter Firefly luciferase (Fluc). Co-culture experiments demonstrated significantly enhanced cytotoxicity of CAR-NK cells compared to naive NK cells. In vivo studies involving mice with Fluc-expressing tumors revealed that those treated with CAR-NK cells exhibited reduced tumor burden and prolonged survival compared to controls. Longitudinal bioluminescence imaging demonstrated stable signals from CAR-NK cells over time. PET imaging using the NIS-targeted tracer 18F-tetrafluoroborate ([ 18 F]TFB) showed significantly higher PET signals in mice treated with NIS-expressing CAR-NK cells.Overall, our study showcases the therapeutic potential of HER2-targeted CAR-NK cells in an aggressive ovarian cancer model and underscores the feasibility of using human-derived PET reporter gene imaging to monitor these cells non-invasively in patients.
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