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:Potent and durable control of mesothelin-expressing tumors by a novel T cell-secreted bi-specific engager.
新型 LABC-13F08 scFv 对 MSLN 的结合模式在典型的抗 MSLN 抗体中未见。通过 T 细胞分泌型 engager 实现有效靶向,将成为治疗 MSLN + 肿瘤的一种具有临床差异化的方法。
糖基磷脂酰肌醇锚定的细胞表面蛋白间皮素(MSLN)在许多恶性肿瘤中表达升高,并且是抗体导向治疗策略中一个已确立的临床阶段靶点。其中,通过经工程改造的抗 MSLN 嵌合抗原受体(CAR-T)利用自体患者 T 细胞是一种引起相当大兴趣的方法。尽管通常显示能够安全靶向肿瘤 MSLN,但 CAR-T 试验未能取得使用相同技术在血液系统恶性肿瘤中获得的令人瞩目的治愈或缓解指标。因此,需要改进的抗 MSLN 分子和/或更优化的方式来利用免疫效应细胞。
我们进行了 ELISA、无标记动力学结合实验、FACS、Western blotting 和瞬时重组 MSLN 表达,以表征一种新型具有 CAR 活性的人 scFv 克隆 LABC-13F08 的识别特性。为了研究 T 细胞重定向,我们使用转导的原代 T 细胞和 MSLN + 靶细胞系进行了动态 IncuCyte 共培养杀伤实验,并评估了活化标志物和效应细胞因子的水平。使用转导的人原代 T 细胞和异种移植了卵巢、间皮瘤和胰腺 MSLN + 肿瘤细胞系的免疫缺陷 NSG 小鼠,在体内评估了 LABC-13F08 以双特异性衔接器(BiTE)形式制备后的抗肿瘤潜力。
LABC-13F08 scFv 极为独特,与现有的(临床前)抗 MSLN 抗体片段截然不同,其驱动 MSLN 识别绝对依赖于二价阳离子。作为一种单价 BiTE,LABC-13F08 在体外表现出强效的活性。此外,经工程化改造以组成性分泌 13F08 BiTE 的原代人 T 细胞,在体内卵巢癌和间皮瘤异种移植模型中表现出强效抗肿瘤活性,并在一个具挑战性的胰腺癌模型中显示出令人鼓舞的单药控制水平。由工程化 T 细胞分泌的 LABC-13F08 BiTE(BiTE-T)既能招募未工程化的旁观者 T 细胞,也能诱导激活依赖性的、不依赖 MSLN 的旁观者杀伤,作用于缺乏同源抗原的细胞。为解决安全性问题,13F08 BiTE-T 细胞可通过分子“关闭”开关被迅速靶向清除。
BACKGROUND: The glycosylphosphatidylinositol-anchored cell surface protein mesothelin (MSLN) shows elevated expression in many malignancies and is an established clinical-stage target for antibody-directed therapeutic strategies. Of these, the harnessing of autologous patient T cells via engineered anti-MSLN chimeric antigen receptors (CAR-T) is an approach garnering considerable interest. Although generally shown to target tumor MSLN safely, CAR-T trials have failed to deliver the impressive curative or response metrics achieved for hematological malignancies using the same technology. A need exists, therefore, for improved anti-MSLN molecules and/or more optimal ways to leverage immune effector cells. METHODS: We performed ELISA, label-free kinetic binding assays, FACS, Western blotting, and transient recombinant MSLN expression to characterize the recognition properties of a novel CAR-active human scFv clone, LABC-13F08. To investigate T cell redirection, we conducted kinetic IncuCyte co-culture killing assays using transduced primary T cells and MSLN + target cell lines and assessed levels of activation markers and effector cytokines. The antitumor potential of LABC-13F08 formatted as a bispecific engager (BiTE) was evaluated in vivo using transduced human primary T cells and immunocompromised NSG mice xenografted with ovarian, mesothelioma, and pancreatic MSLN + tumor cell lines. RESULTS: The LABC-13F08 scFv is highly unusual and distinct from existing (pre)clinical anti-MSLN antibody fragments, exhibiting an absolute requirement for divalent cations to drive MSLN recognition. As a monovalent BiTE, LABC-13F08 demonstrates robust in vitro potency. Additionally, primary human T cells engineered for constitutive secretion of the 13F08 BiTE exhibit strong antitumor activity toward in vivo ovarian and mesothelioma xenograft models and show encouraging levels of monotherapy control in a challenging pancreatic model. LABC-13F08 BiTE secreted from engineered T cells (BiTE-T) can both recruit non-engineered bystander T cells and also induce activation-dependent MSLN-independent bystander killing of cells lacking cognate antigen. To address safety concerns, 13F08 BiTE-T cells can be rapidly targeted for clearance via a molecular "off" switch. CONCLUSIONS: The novel LABC-13F08 scFv exhibits a mode of binding to MSLN which is not observed in typical anti-MSLN antibodies. Efficacious targeting by a T cell secreted engager would represent a clinically differentiated approach for the treatment of MSLN + tumors.
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