肿瘤细胞治疗研究
英文原题:Thrombopoietin-based CAR-T cells demonstrate in vitro and in vivo cytotoxicity to MPL positive acute myelogenous leukemia and hematopoietic stem cells.
Thrombopoietin-based CAR-T cells demonstrate in vitro and in vivo cytotoxicity to MPL positive acute myelogenous leukemia and hematopoietic stem cells.
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利用单链可变片段(scFv)靶向CD19阳性血液系统恶性肿瘤的CAR-T 细胞疗法已取得显著成功,但将CAR-T 细胞疗法拓展至其他肿瘤类型仍需新策略。
本研究以配体结合结构域替代scFv设计CAR-T 细胞,使其靶向具有干细胞样特征的白血病细胞。研究采用血小板生成素(TPO)——骨髓增殖性白血病病毒癌基因同源物受体(MPL)的天然配体——作为抗原结合结构域,识别造血干细胞(HSC)及红系和巨核细胞系急性髓系白血病(AML)中的MPL。研究者在体外使用MPL表达水平不同的AML细胞系检测TPO-CAR-T 细胞的特异性。TPO-CAR-T 细胞可被MPL阳性白血病细胞系特异性激活,并对其产生细胞毒作用。尽管TPO-CAR-T 细胞未能延长体内生存期,却成功清除了白血病细胞中的MPL阳性亚群。与预期一致,在AML异种移植模型中,TPO-CAR也会对表达MPL的骨髓细胞区室产生细胞毒作用。研究结果显示,TPO-CAR-T 细胞通过靶向杀伤MPL阳性细胞,对干细胞样白血病具有临床前治疗潜力,并可能为后续采用减低强度预处理方案进行HSC移植提供支持。
While targeting CD19+ hematologic malignancies with CAR T cell therapy using single chain variable fragments (scFv) has been highly successful, novel strategies for applying CAR T cell therapy with other tumor types are necessary. In the current study, CAR T cells were designed using a ligand binding domain instead of an scFv to target stem-like leukemia cells. Thrombopoietin (TPO), the natural ligand to the myeloproliferative leukemia protein (MPL) receptor, was used as the antigen binding domain to engage MPL expressed on hematopoietic stem cells (HSC) and erythropoietic and megakaryocytic acute myeloid leukemias (AML).
TPO-CAR T cells were tested in vitro against AML cell lines with varied MPL expression to test specificity. TPO-CAR T cells were specifically activating and cytotoxic against MPL+ leukemia cell lines. Though the TPO-CAR T cells did not extend survival in vivo, it successfully cleared the MPL+ fraction of leukemia cells.
As expected, we also show the TPO-CAR is cytotoxic against MPL expressing bone marrow compartment in AML xenograft models. The data collected demonstrate preclinical potential of TPO-CAR T cells for stem-like leukemia through assessment of targeted killing of MPL+ cells and may facilitate subsequent HSC transplant under reduced intensity conditioning regimens.
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