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:Human 3D Ovarian Cancer Models Reveal Malignant Cell-Intrinsic and -Extrinsic Factors That Influence CAR T-cell Activity.
嵌合抗原受体(CAR)T 细胞的体外临床前检测大多在单层细胞培养中进行。
嵌合抗原受体(CAR)T 细胞的体外临床前测试大多在单层细胞培养中进行,但需要采用其他策略以考虑肿瘤微环境的复杂性及其影响。本文在复杂程度逐渐增加的人源三维(3D)体外细胞模型中,描述恶性细胞和成纤维细胞对 CAR T 细胞活性的调节。在将黏蛋白 1(MUC1)和 TnMUC1 CAR T 细胞与人高级别浆液性卵巢癌细胞球体结合的模型中,恶性细胞内在的 CAR T 杀伤耐药与 TNF 相关的死亡受体信号缺陷有关。向细胞球体加入原代人成纤维细胞后,出乎意料地增强了 CAR T 细胞对耐药恶性细胞的杀伤能力,因为成纤维细胞产生的 CCL2 激活了 CCR2/4 阳性 CAR T 细胞。然而,在胶原凝胶中培养恶性细胞和成纤维细胞,会促使形成致密细胞外基质,并以 TGF-β 依赖方式阻碍 CAR T 细胞活性。研究人员开发了一种血管化微流控装置,使 CAR T 细胞能够以更符合生理状况的方式沿血管流动并穿透凝胶,以 TNF 依赖方式杀伤恶性细胞。复杂的 3D 人源细胞模型可有效筛选多种细胞毒性人免疫细胞构建体,同时评估涉及细胞间及细胞-基质相互作用的耐药机制,从而加速实体瘤细胞毒性免疫疗法的临床前研究。意义:复杂程度不断提高的三维体外模型揭示了实体瘤 CAR T 细胞耐药机制,有望加快改良 CAR T 细胞构建体的开发。
In vitro preclinical testing of chimeric antigen receptor (CAR) T cells is mostly carried out in monolayer cell cultures. However, alternative strategies are needed to take into account the complexity and the effects of the tumor microenvironment. Here, we describe the modulation of CAR T-cell activity by malignant cells and fibroblasts in human three-dimensional (3D) in vitro cell models of increasing complexity. In models combining mucin-1 (MUC1) and TnMUC1 CAR T cells with human high-grade serous ovarian cancer cell spheroids, malignant cell-intrinsic resistance to CAR T-cell killing was due to defective death receptor signaling involving TNF . Adding primary human fibroblasts to spheroids unexpectedly increased the ability of CAR T cells to kill resistant malignant cells as CCL2 produced by fibroblasts activated CCR2/4+ CAR T cells. However, culturing malignant cells and fibroblasts in collagen gels engendered production of a dense extracellular matrix that impeded CAR T-cell activity in a TGF -dependent manner. A vascularized microfluidic device was developed that allowed CAR T cells to flow through the vessels and penetrate the gels in a more physiological way, killing malignant cells in a TNF -dependent manner. Complex 3D human cell models may provide an efficient way of screening multiple cytotoxic human immune cell constructs while also enabling evaluation of mechanisms of resistance involving cell-cell and cell-matrix interactions, thus accelerating preclinical research on cytotoxic immune cell therapies in solid tumors. Significance: Three-dimensional in vitro models of increasing complexity uncover mechanisms of resistance to CAR T cells in solid tumors, which could help accelerate development of improved CAR T-cell constructs.
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