癌症免疫治疗学会(SITC)关于急性白血病免疫治疗的临床实践指南,2.0 版
Society for Immunotherapy of Cancer (SITC) clinical practice guideline on immunotherapy for the treatment of acute leukemia, version 2.0.
急性白血病是一种影响所有年龄段的血液系统恶性肿瘤。
英文原题:Beyond conventional adoptive T-cell therapy.
T细胞库的重建在多种免疫疾病的治疗中至关重要。
T 细胞库的重建在多种免疫疾病的治疗中至关重要。同样,接受异基因造血干细胞移植的血液系统恶性肿瘤患者会出现长期的 T 细胞缺陷,这增加了他们感染和复发的风险。针对 T 细胞缺陷的各种策略均基于过继性 T 细胞疗法。然而,与特异性、安全性、可扩展性和生产相关的挑战尚未被克服。基于人类 T 淋巴祖细胞的免疫疗法可能是一种有价值的补充方法,可提高当前 T 细胞缺陷治疗的有效性。我们开发了一种无饲养层培养系统,利用人类 DLL4-Fc 融合蛋白(Notch 配体)在 7 天内从 CD34 + 造血干细胞和祖细胞生成人类 T 淋巴祖细胞。该细胞产品称为 ProTcell,主要由表达 CD7、趋化因子受体蛋白(如 CCR9)和黏附分子(如 L-选择素)的细胞组成。注射到 NSG 小鼠体内后,ProTcell 可以在胸腺中分化并接受教育,生成简单的阳性 T 细胞。在此,我们总结了使用该方法的临床前和临床研究现状,重点介绍了其在免疫重建疗法中的潜在优势和当前局限性。
Reconstitution of the T-cell compartment is essential in the treatment of several immune disorders. Similarly, individuals with hematologic malignancies who are undergoing allogeneic hematopoietic stem cell transplantation experience prolonged T-cell deficiencies, which increase their risk of infections and relapses. Various strategies for addressing T-cell deficiencies are based on adoptive T-cell therapies. However, challenges related to specificity, safety, scalability, and manufacturing have yet to be overcome. Human T lymphoid progenitor-based immunotherapy might be a valuable, complementary approach for increasing the effectiveness of current treatments for T-cell deficiencies. We have developed a feeder-free culture system that leverages a human DLL4-Fc fusion protein (Notch ligand) to generate human T lymphoid progenitors from CD34 + hematopoietic stem and progenitor cells within 7 days. The cell product, called ProTcell, is composed mainly of cells expressing CD7, chemokine receptor proteins (eg, CCR9), and adhesion molecules (eg, L-selectin). After injection in NSG mice, ProTcell can differentiate and be educated in the thymus to generate simple positive T cells. Here, we summarize the current state of preclinical and clinical research using this approach, highlighting its potential advantages and current limitations for immune reconstitution therapies.
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