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:Hypoxia-regulated secretion of IL-12 enhances antitumor activity and safety of CD19 CAR-T cells in the treatment of DLBCL.
我们的结果提示,携带缺氧调控 IL-12 的武装型 CD19 CAR(CAR19/hIL12ODD)可能是治疗 DLBCL 的一种有前景且更安全的方法。
靶向 CD19 的嵌合抗原受体修饰 T(CD19 CAR-T)细胞疗法已被证实是治疗 B 细胞恶性肿瘤最有前景的策略之一,但对弥漫性大 B 细胞淋巴瘤(DLBCL)的疗效有限,部分原因是肿瘤异质性和不利的肿瘤微环境。人白细胞介素-12(IL-12)是一种强效抗肿瘤细胞因子,在 DLBCL 临床前研究中显示出良好效果;然而,全身给药可能导致致死性毒性,阻碍其临床应用。本研究开发了一种表达低氧调控 IL-12 的装甲型 CD19 CAR(CAR19/hIL12ODD)。该载体将 IL-12 与 HIF1α 的氧依赖性降解结构域(ODD)融合,使 IL-12 分泌限于肿瘤部位的低氧微环境。在体外,CAR19/hIL12ODD-T 细胞仅在低氧条件下分泌有生物活性的 IL-12,并伴随增殖增强、IFN-γ 大量分泌、CD4⁺ 细胞比例增加以及中央记忆 T 细胞表型增强。在体内,将 CAR19/hIL12ODD-T 细胞过继转移至一种新型免疫缺陷型叙利亚仓鼠模型,显著促进已形成的大型 DLBCL 异种移植瘤消退。值得注意的是,这种靶向、受控的 IL-12 治疗在该模型中未造成毒性。综上,低氧控制 IL-12 的装甲型 CD19 CAR(CAR19/hIL12ODD)可能是治疗 DLBCL 更安全且有前景的方法。
CD19-targeted chimeric antigen receptor-modified T (CD19 CAR-T) cell therapy has been demonstrated as one of the most promising therapeutic strategies for treating B cell malignancies. However, it has shown limited treatment efficacy for diffuse large B cell lymphoma (DLBCL). This is, in part, due to the tumor heterogeneity and the hostile tumor microenvironment. Human interleukin-12 (IL-12), as a potent antitumor cytokine, has delivered encouraging outcomes in preclinical studies of DLBCL. However, potentially lethal toxicity associated with systemic administration precludes its clinical application. Here, an armed CD19 CAR expressing hypoxia-regulated IL-12 was developed (CAR19/hIL12ODD). In this vector, IL-12 secretion was restricted to hypoxic microenvironments within the tumor site by fusion of IL-12 with the oxygen degradation domain (ODD) of HIF1 . In vitro , CAR19/hIL12ODD-T cells could only secrete bioactive IL-12 under hypoxic conditions, accompanied by enhanced proliferation, robust IFN- secretion, increased abundance of CD4+, and central memory T cell phenotype. In vivo , adoptive transfer of CAR19/hIL12ODD-T cells significantly enhanced regression of large, established DLBCL xenografts in a novel immunodeficient Syrian hamster model. Notably, this targeted and controlled IL-12 treatment was without toxicity in this model. Taken together, our results suggest that armed CD19 CARs with hypoxia-controlled IL-12 (CAR19/hIL12ODD) might be a promising and safer approach for treating DLBCL.
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