不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Targeting cell-surface VISTA expression on allospecific naïve T cells promotes tolerance.
Targeting cell-surface VISTA expression on allospecific naïve T cells promotes tolerance.
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异基因造血干细胞移植(allo-HSCT)的成功可能受到移植物抗宿主病(GVHD)的限制。T细胞活化是GVHD进展的关键因素。共刺激信号可被共抑制信号所抵消,例如检查点分子VISTA(含V结构域免疫球蛋白的T细胞活化抑制因子)/程序性死亡-1同源物,其可抑制活化并维持供者T细胞静息状态。单剂抗VISTA单克隆抗体(mAb)在多种模型中可预防急性GVHD致死。初始供者T细胞表达中等水平的VISTA,在allo-HSCT受者中,VISTA水平随T细胞受体信号传导而短暂升高,导致对抗VISTA mAb介导的清除敏感性增强,而转移至同基因受者的供者T细胞则不然。抗VISTA mAb供者T细胞清除与雷帕霉素兼容,但与围移植期他克莫司GVHD预防不兼容。仅靶向宿主细胞或供者CD8+ T细胞上的VISTA对GVHD致死无保护作用。相反,抗VISTA mAb介导的异基因反应性供者T细胞删除依赖于靶向第三种(非T)细胞类型。
进一步的机制研究表明,供者T细胞在体内同时暴露于抗VISTA mAb时可被清除,而在过继性T细胞转移前体外预孵育则不能,其通过Fc受体(FcR)介导的吞噬作用实现。在淋巴瘤攻击模型中,当抗人VISTA mAb仅靶向供者CD4+ T细胞时,移植物抗淋巴瘤(GVL)效应完全保留;当输注未分离的供者T细胞时,GVL效应延迟但大部分保留。在异种GVHD模型中,抗人VISTA mAb减少了供体T细胞扩增、VISTA T细胞表达水平和受体致死率。
总之,这些数据支持一种新的临床转化路径,其中急性GVHD致死率可以被减轻,而不会抵消GVL效应。
The success of allogeneic hematopoietic stem cell transplantation (allo-HSCT) can be limited by graft-versus-host disease (GVHD). T-cell activation is a key factor in GVHD progression. Costimulatory signals can be counterbalanced by coinhibitory signals such as the checkpoint molecule VISTA (V-domain immunoglobulin-containing suppressor of T-cell activation)/programmed death-1 homolog that restrains activation and maintains donor T-cell quiescence. A single dose of anti-VISTA monoclonal antibody (mAb) prevents acute GVHD lethality in multiple models.
Naïve donor T cells express moderate VISTA levels, which transiently increase in allo-HSCT recipients in association with T-cell receptor signaling, leading to heightened susceptibility to anti-VISTA mAb-mediated depletion, in contrast to donor T cells transferred to syngeneic recipients.
Anti-VISTA mAb donor T-cell depletion was compatible with rapamycin but incompatible with peritransplant tacrolimus GVHD prophylaxis. Targeting VISTA exclusively on host cells or donor CD8+ T cells was not protective against GVHD lethality. Instead, anti-VISTA mAb-mediated deletion of alloreactive donor T cells depended on targeting a third (non-T) cell type.
Further mechanistic studies indicated that donor T cells concurrently exposed to anti-VISTA mAb in vivo but not preincubated in vitro before adoptive T-cell transfer were eliminated via Fc receptor (FcR)-mediated phagocytosis.
In a lymphoma challenge model, a graft-versus-lymphoma (GVL) effect was fully retained when anti-human VISTA mAb exclusively targeted donor CD4+ T cells, and was delayed but mostly retained when unseparated donor T cells were infused. In a xenogeneic GVHD model, anti-human VISTA mAb reduced donor T-cell expansion, VISTA T-cell expression levels, and recipient lethality.
Together, these data support a novel clinical translational pathway in which acute GVHD lethality can be mitigated without negating the GVL effect.
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