CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
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.
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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首先,在将 UniCAR-T 细胞用于临床之前,优化培养条件至关重要。
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。
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.
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