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:CD45-Directed CAR-T Cells with CD45 Knockout Efficiently Kill Myeloid Leukemia and Lymphoma Cells In Vitro Even after Extended Culture.
我们报道了高效且持久活性的CD45 ko /CAR-T细胞的高效制备。CD45敲除并未损害CAR-T细胞的体外功能,无论靶抗原如何。如果其活性能在体内得到证实,CD45 ko /CD45CAR-T细胞可能例如作为干细胞移植前预处理方案的组成部分而有用。
CAR-T细胞疗法已显示出令人瞩目的结果,现已成为B系恶性肿瘤标准治疗的一部分,而髓系疾病的治疗则因缺乏合适的靶点而受到限制。CD45表达于几乎所有类型的血细胞,包括髓系白血病细胞,但不表达于非造血组织,使其成为CAR导向治疗的潜在靶点。由于其在T细胞和NK细胞上的高表达,预计自相残杀会阻碍CD45CAR介导的治疗。由于CD45在效应细胞活化、信号转导和细胞毒性中具有重要作用,旨在防止T细胞和NK细胞中自相残杀的CD45敲除预计会导致相当程度的功能损害。
采用CRISPR/Cas9-RNPs和电穿孔技术在T和NK细胞系上建立CD45敲除,并将成功的方案转移至原代T细胞。开发了一种联合方案,能够实现CD45敲除以及用靶向CD45或CD19的第三代CAR进行逆转录病毒转导。使用增殖以及短期和长期细胞毒性试验研究了CD45 ko效应细胞、CD45 ko /CD45CAR-T和CD45 ko /CD19CAR-T细胞的功能。
正如预期的那样,将 CD45-CAR 引入 T 细胞会导致强烈的自相残杀,而通过 CD45 敲除可以避免这种情况。出乎意料的是,后者对体外 T 细胞和 NK 细胞增殖没有负面影响。此外,在短期和长期共培养试验中,CD45 ko /CD45CAR-T 细胞对表达 CD45 的 AML 和淋巴瘤细胞系显示出强大的细胞毒性。即使在培养四周后,CD45 ko /CD45CAR-T 细胞仍保持明显的细胞毒性。在进一步设置中,我们使用 CD19-CAR 确认了 CD45 ko 细胞功能的保守性。同样,CD45 ko /CD19CAR-T 细胞的增殖和细胞毒性在体外与其 CD45 阳性对应细胞相比没有差异。
BACKGROUND: CAR-T cell therapy has shown impressive results and is now part of standard-of-care treatment of B-lineage malignancies, whereas the treatment of myeloid diseases has been limited by the lack of suitable targets. CD45 is expressed on almost all types of blood cells including myeloid leukemia cells, but not on non-hematopoietic tissue, making it a potential target for CAR-directed therapy. Because of its high expression on T and NK cells, fratricide is expected to hinder CD45CAR-mediated therapy. Due to its important roles in effector cell activation, signal transduction and cytotoxicity, CD45 knockout aimed at preventing fratricide in T and NK cells has been expected to lead to considerable functional impairment. METHODS: CD45 knockout was established on T and NK cell lines using CRISPR/Cas9-RNPs and electroporation, and the successful protocol was transferred to primary T cells. A combined protocol was developed enabling CD45 knockout and retroviral transduction with a third-generation CAR targeting CD45 or CD19. The functionality of CD45 ko effector cells, CD45 ko /CD45CAR-T and CD45 ko /CD19CAR-T cells was studied using proliferation as well as short- and long-term cytotoxicity assays. RESULTS: As expected, the introduction of a CD45-CAR into T cells resulted in potent fratricide that can be avoided by CD45 knockout. Unexpectedly, the latter had no negative impact on T- and NK-cell proliferation in vitro. Moreover, CD45 ko /CD45CAR-T cells showed potent cytotoxicity against CD45-expressing AML and lymphoma cell lines in short-term and long-term co-culture assays. A pronounced cytotoxicity of CD45 ko /CD45CAR-T cells was maintained even after four weeks of culture. In a further setup, we confirmed the conserved functionality of CD45 ko cells using a CD19-CAR. Again, the proliferation and cytotoxicity of CD45 ko /CD19CAR-T cells showed no differences from those of their CD45-positive counterparts in vitro. CONCLUSIONS: We report the efficient production of highly and durably active CD45 ko /CAR-T cells. CD45 knockout did not impair the functionality of CAR-T cells in vitro, irrespective of the target antigen. If their activity can be confirmed in vivo, CD45 ko /CD45CAR-T cells might, for example, be useful as part of conditioning regimens prior to stem cell transplantation.
MEMBER ACCOUNT
登录成功会直接打开下一页。