CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Engineering T cells to suppress acute GVHD and leukemia relapse after allogeneic hematopoietic stem cell transplantation.
Engineering T cells to suppress acute GVHD and leukemia relapse after allogeneic hematopoietic stem cell transplantation.
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急性移植物抗宿主病(aGVHD)限制了异基因造血干细胞移植(allo-HSCT)的治疗获益,并且需要免疫抑制预防措施,而这会损害抗肿瘤和抗病原体免疫。OX40是一种共刺激受体,在aGVHD患者循环T细胞上上调,并在驱动同种反应性T细胞扩增中发挥核心作用。
在此,我们显示,在恒河猴模型中,浸润GVHD靶器官的T细胞上OX40也上调,这支持了以下假设:靶向清除OX40+ T细胞将减轻GVHD发病机制。
因此,我们构建了一种OX40特异性细胞毒性受体,当其表达于人T细胞上时,能够选择性清除OX40+ T细胞。由于OX40在活化后主要在CD4+ T细胞上上调,工程化OX40特异性T细胞对活化CD4+ T细胞介导了强效细胞毒性,并在混合淋巴细胞反应模型中抑制了同种反应性T细胞扩增。靶向OX40并未抑制针对Epstein-Barr病毒、巨细胞病毒和腺病毒抗原的特异性记忆T细胞的抗病毒活性。全身给予靶向OX40的T细胞使小鼠完全免受人外周血单个核细胞介导的致死性异种GVHD。
此外,在单一T细胞产品中将靶向OX40与白血病特异性嵌合抗原受体相结合,在移植后残留疾病的小鼠异种移植模型中提供了对白血病和aGVHD的同时保护。这些结果强调了OX40+ T细胞在介导aGVHD发病机制中的核心作用,并支持一种源自干细胞供者的双功能工程化T细胞产品的可行性,以在allo-HSCT后同时抑制疾病复发和aGVHD。
Acute graft-versus-host disease (aGVHD) limits the therapeutic benefit of allogeneic hematopoietic stem cell transplantation (allo-HSCT) and requires immunosuppressive prophylaxis that compromises antitumor and antipathogen immunity. OX40 is a costimulatory receptor upregulated on circulating T cells in aGVHD and plays a central role in driving the expansion of alloreactive T cells.
Here, we show that OX40 is also upregulated on T cells infiltrating GVHD target organs in a rhesus macaque model, supporting the hypothesis that targeted ablation of OX40+ T cells will mitigate GVHD pathogenesis.
We thus created an OX40-specific cytotoxic receptor that, when expressed on human T cells, enables selective elimination of OX40+ T cells. Because OX40 is primarily upregulated on CD4+ T cells upon activation, engineered OX40-specific T cells mediated potent cytotoxicity against activated CD4+ T cells and suppressed alloreactive T-cell expansion in a mixed lymphocyte reaction model.
OX40 targeting did not inhibit antiviral activity of memory T cells specific to Epstein-Barr virus, cytomegalovirus, and adenoviral antigens. Systemic administration of OX40-targeting T cells fully protected mice from fatal xenogeneic GVHD mediated by human peripheral blood mononuclear cells.
Furthermore, combining OX40 targeting with a leukemia-specific chimeric antigen receptor in a single T cell product provides simultaneous protection against leukemia and aGVHD in a mouse xenograft model of residual disease posttransplant. These results underscore the central role of OX40+ T cells in mediating aGVHD pathogenesis and support the feasibility of a bifunctional engineered T-cell product derived from the stem cell donor to suppress both disease relapse and aGVHD following allo-HSCT.
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