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条件控制通用 CAR T 细胞的可裂解关闭开关衔接子。

Conditional Control of Universal CAR T Cells by Cleavable OFF-Switch Adaptors.

机构信息

UPMC Hillman Cancer Center, University of Pittsburgh, Pittsburgh, Pennsylvania 15232, United States.

Division of Surgical Oncology, Department of Surgery, University of Pittsburgh, Pittsburgh, Pennsylvania 15232, United States.

出版信息

ACS Synth Biol. 2023 Oct 20;12(10):2996-3007. doi: 10.1021/acssynbio.3c00320. Epub 2023 Oct 4.

Abstract

As living drugs, engineered T cell therapies are revolutionizing disease treatment with their unique functional capabilities. However, they suffer from limitations of potentially unpredictable behavior, toxicities, and nontraditional pharmacokinetics. Engineering conditional control mechanisms responsive to tractable stimuli such as small molecules or light is thus highly desirable. We and others previously developed "universal" chimeric antigen receptors (CARs) that interact with coadministered antibody adaptors to direct target cell killing and T cell activation. Universal CARs are of high therapeutic interest due to their ability to simultaneously target multiple antigens on the same disease or different diseases by combining with adaptors to different antigens. Here, we further enhance the programmability and potential safety of universal CAR T cells by engineering OFF-switch adaptors that can conditionally control CAR activity, including T cell activation, target cell lysis, and transgene expression, in response to a small molecule or light stimulus. Moreover, in adaptor combination assays, OFF-switch adaptors were capable of orthogonal conditional targeting of multiple antigens simultaneously, following Boolean logic. OFF-switch adaptors represent a robust new approach for the precision targeting of universal CAR T cells with potential for enhanced safety.

摘要

作为活的药物,工程 T 细胞疗法以其独特的功能特性正在彻底改变疾病的治疗方法。然而,它们存在潜在不可预测的行为、毒性和非传统药代动力学的局限性。因此,非常需要能够响应可处理的刺激(如小分子或光)的工程化条件控制机制。我们和其他人之前开发了“通用”嵌合抗原受体 (CAR),它们与共给药的抗体适配器相互作用,以指导靶细胞杀伤和 T 细胞激活。通用 CAR 具有很高的治疗兴趣,因为它们能够通过与不同抗原的适配器结合,同时靶向同一疾病或不同疾病上的多个抗原。在这里,我们通过工程化 OFF 开关适配器进一步增强了通用 CAR T 细胞的可编程性和潜在安全性,该适配器可以响应小分子或光刺激,条件性控制 CAR 活性,包括 T 细胞激活、靶细胞裂解和转基因表达。此外,在适配器组合测定中,OFF 开关适配器能够按照布尔逻辑同时对多个抗原进行正交条件性靶向。OFF 开关适配器代表了一种用于通用 CAR T 细胞精确靶向的强大新方法,具有增强安全性的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02c0/10594876/851696b607ad/sb3c00320_0001.jpg

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