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基于生物素结合单体链霉亲和素的第三代 CAR(CD28-4-1BB-CD3-ζ)工程化 T 细胞用于潜在肿瘤免疫治疗的高特异性

英文原题:High specificity of engineered T cells with third generation CAR (CD28-4-1BB-CD3-ζ) based on biotin-bound monomeric streptavidin for potential tumor immunotherapy.

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High specificity of engineered T cells with third generation CAR (CD28-4-1BB-CD3-ζ) based on biotin-bound monomeric streptavidin for potential tumor immunotherapy.

PubMed 2024/09/19(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

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研究概要

首先,在将 UniCAR-T 细胞用于临床之前,优化培养条件至关重要。

中文摘要

我们开发了第二代和第三代 UniCAR,其胞外结构域包含亲和力增强的单体链霉亲和素,并结合 CD28 和 4-1BB 胞内共刺激结构域。这些 UniCAR 结构依靠生物素化中介分子(如抗体)识别靶抗原。在共培养实验中,我们对第三代 UniCAR 构型与两种第二代 UniCAR 变体进行功能比较;两种第二代变体分别包含 CD28 或 4-1BB 共刺激结构域。

我们观察到培养基中的成分可抑制生物素化抗体与单体链霉亲和素 CAR 结合,可能影响其疗效。此外,接触抗 CD19 和抗 CD20 等特异性生物素化抗体后,第三代 UniCAR-T 细胞对癌细胞系表现出强效细胞溶解活性,显示出多靶向能力。重要的是,在评估工程化 UniCAR-T 细胞遇到靶细胞后的激活情况时,第三代 UniCAR-T 细胞的特异性显著高于第二代 CAR-T 细胞。讨论:临床应用 UniCAR-T 细胞前必须优化培养条件。此外,凭借较高特异性和多靶点抗肿瘤细胞毒性,我们认为第三代 UniCAR-T 细胞是临床前研究的优良候选。

展开英文摘要原文

INTRODUCTION: Immunotherapy has revolutionized cancer treatment, and Chimeric Antigen Receptor T cell therapy (CAR-T) is a groundbreaking approach. Traditional second-generation CAR-T therapies have achieved remarkable success in hematological malignancies, but there is still room for improvement, particularly in developing new targeting strategies. To address this limitation, engineering T cells with multi-target universal CARs (UniCARs) based on monomeric streptavidin has emerged as a versatile approach in the field of anti-tumor immunotherapy. However, no studies have been conducted on the importance of the intracellular signaling domains of such CARs and their impact on efficiency and specificity. METHOD: Here, we developed second-generation and third-generation UniCARs based on an extracellular domain comprising an affinity-enhanced monomeric streptavidin, in addition to CD28 and 4-1BB co-stimulatory intracellular domains. These UniCAR structures rely on a biotinylated intermediary, such as an antibody, for recognizing target antigens. In co-culture assays, we performed a functional comparison between the third-generation UniCAR construct and two second-generation UniCAR variants, each incorporating either the CD28 or 4-1BB as co-stimulatory domain. RESULTS: We observed that components in culture media could inhibit the binding of biotinylated antibodies to monomeric streptavidin-CARs, potentially compromising their efficacy. Furthermore, third-generation UniCAR-T cells showed robust cytolytic activity against cancer cell lines upon exposure to specific biotinylated antibodies like anti-CD19 and anti-CD20, underscoring their capability for multi-targeting. Importantly, when assessing engineered UniCAR-T cell activation upon encountering their target cells, third-generation UniCAR-T cells exhibited significantly enhanced specificity compared to second-generation CAR-T cells. DISCUSSION: First, optimizing culture conditions would be essential before deploying UniCAR-T cells clinically. Moreover, we propose that third-generation UniCAR-T cells are excellent candidates for preclinical research due to their high specificity and multi-target anti-tumor cytotoxicity.

论文信息

作者
Gallego-Valle J、Pérez-Fernández VA、Rosales-Magallares J、Gil-Manso S、Castellá M、Gonzalez-Navarro EA、Correa-Rocha R、Juan M
单位
Group of Advanced Immuno-Regulation (GIRA), Gregorio Marañon Health Research Institute Instituto de Investigación Sanitaria Gregorio Marañón (IiSGM), Hospital General Gregorio Marañon, Madrid, Spain.Spain
期刊
Frontiers in immunology2024
原文标识
PubMed 39364400 · DOI 10.3389/fimmu.2024.1448752