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:Comparative Study of the Effect of Radiation Delivered by Lutetium-177 or Actinium-225 on Anti-GD2 Chimeric Antigen Receptor T Cell Viability and Functions.
在对anti-GD2 CAR T细胞分别用177 Lu或225 Ac递送的不同剂量辐射照射后,通过流式细胞术测定了它们对表达GD2的人CHLA-20神经母细胞瘤和黑色素瘤M21细胞的活力和细胞毒活性。
嵌合抗原受体(CAR)T 细胞对实体瘤的效果相对不佳。低剂量辐射可通过靶向放射性核素治疗(TRT)递送至多个转移部位,并能引发免疫刺激效应。然而,TRT 从未在临床环境中与 CAR T 细胞联合用于实体瘤。本研究探讨了由镥-177(177 Lu)和锕-225(225 Ac)递送的辐射对 CAR T 细胞体外活力和效应功能的影响,以评估此类治疗组合的可行性。在用 177 Lu 或 225 Ac 递送的不同剂量辐射照射抗 GD2 CAR T 细胞后,通过流式细胞术测定其活力以及对表达 GD2 的人 CHLA-20 神经母细胞瘤和黑色素瘤 M21 细胞的细胞毒性活性。在受照射的抗 GD2 CAR T 细胞上测量了耗竭标志物 PD-1、活化标志物 CD69 和活化受体 NKG2D 的表达。177 Lu 和 225 Ac 均对抗 GD2 CAR T 细胞表现出剂量依赖性毒性。然而,无论测试剂量和放射性核素类型如何,辐射均增强了这些 CAR T 细胞对 CHLA-20 和 M21 的细胞毒性活性。照射后,CAR T 细胞上 PD-1、CD69 和 NKG2D 的表达未见显著变化。鉴于在相同剂量下 CAR T 细胞活力较低,且无论放射性核素类型如何细胞毒性活性均增强,在评估这些疗法在体内针对实体瘤的潜在协同作用时,基于 177 Lu 的 TRT 可能优于基于 225 Ac 的 TRT。
Chimeric antigen receptor (CAR) T cells have been relatively ineffective against solid tumors. Low-dose radiation which can be delivered to multiple sites of metastases by targeted radionuclide therapy (TRT) can elicit immunostimulatory effects. However, TRT has never been combined with CAR T cells against solid tumors in a clinical setting. This study investigated the effects of radiation delivered by Lutetium-177 ( 177 Lu) and Actinium-225 ( 225 Ac) on the viability and effector function of CAR T cells in vitro to evaluate the feasibility of such therapeutic combinations. After the irradiation of anti-GD2 CAR T cells with various doses of radiation delivered by 177 Lu or 225 Ac, their viability and cytotoxic activity against GD2-expressing human CHLA-20 neuroblastoma and melanoma M21 cells were determined by flow cytometry. The expression of the exhaustion marker PD-1, activation marker CD69 and the activating receptor NKG2D was measured on the irradiated anti-GD2 CAR T cells. Both 177 Lu and 225 Ac displayed a dose-dependent toxicity on anti-GD2 CAR T cells. However, radiation enhanced the cytotoxic activity of these CAR T cells against CHLA-20 and M21 irrespective of the dose tested and the type of radionuclide. No significant changes in the expression of PD-1, CD69 and NKG2D was noted on the CAR T cells following irradiation. Given a lower CAR T cell viability at equal doses and an enhancement of cytotoxic activity irrespective of the radionuclide type, 177 Lu-based TRT may be preferred over 225 Ac-based TRT when evaluating a potential synergism between these therapies in vivo against solid tumors.
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