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在 HLA 匹配的异基因外周血造血干细胞移植中,使用 CD3+/CD19- 耗尽的移植物可导致早期 NK 细胞细胞毒性反应,并降低 NKG2A 的抑制活性。

CD3+/CD19+-depleted grafts in HLA-matched allogeneic peripheral blood stem cell transplantation lead to early NK cell cytolytic responses and reduced inhibitory activity of NKG2A.

机构信息

Department of Laboratory Medicine, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.

出版信息

Leukemia. 2010 Mar;24(3):583-91. doi: 10.1038/leu.2009.269. Epub 2009 Dec 24.

Abstract

Natural killer (NK) cells have an important function in the anti-tumor response early after stem cell transplantation (SCT). As part of a prospective randomized phase III study, directly comparing the use of CD3(+)/CD19(+)-depleted peripheral blood stem cell (PBSC) harvests with CD34(+)-selected PBSC harvests in allogeneic human leukocyte antigen-matched SCT, we here show that the use of CD3(+)/CD19(+)-depleted PBSC grafts leads to early NK cell repopulation and reconstitution of the CD56(dim) and CD56(bright) NK cell subsets, with concomitant high cytolytic capacity. In the CD34 group, this process took significantly longer. Moreover, in the CD3/19 group after reconstitution, a higher percentage of killer immunoglobulin-like receptor-positive NK cells was found. Although similar percentages of CD94-positive NK cells were found in both groups, in the CD34 group, almost all expressed the inhibitory CD94:NKG2A complex, whereas in the CD3/19 group, the inhibitory CD94:NKG2A and the activating CD94:NKG2C complex were equally distributed. This preferential development of NKG2C-expressing NK cells in the CD3/19 group was paralleled by a loss of NKG2A-mediated inhibition of NK cell degranulation. These results show that the use of CD3(+)/CD19(+)-depleted grafts facilitates strong NK cell cytolytic responses directly after SCT, and the rapid emergence of an NK cell receptor phenotype that is more prone to activation.

摘要

自然杀伤 (NK) 细胞在干细胞移植 (SCT) 后早期的抗肿瘤反应中具有重要功能。作为一项前瞻性随机 III 期研究的一部分,我们直接比较了使用 CD3(+)/CD19(+)- depleted 外周血干细胞 (PBSC) 采集与 CD34(+)-selected PBSC 采集在同种异体人类白细胞抗原匹配 SCT 中的应用,结果表明使用 CD3(+)/CD19(+)- depleted PBSC 移植物可导致 NK 细胞早期再群体化和 CD56(dim)和 CD56(bright) NK 细胞亚群的重建,同时具有高细胞毒性。在 CD34 组中,这个过程明显需要更长的时间。此外,在 CD3/19 组重建后,发现具有更高比例的杀伤免疫球蛋白样受体阳性 NK 细胞。虽然在两组中都发现了相似比例的 CD94 阳性 NK 细胞,但在 CD34 组中,几乎所有的 NK 细胞都表达抑制性 CD94:NKG2A 复合物,而在 CD3/19 组中,抑制性 CD94:NKG2A 和激活性 CD94:NKG2C 复合物的表达是均等的。CD3/19 组中 NK 细胞表达 NKG2C 的优势发育与 NK 细胞脱颗粒的 NKG2A 介导抑制的丧失相平行。这些结果表明,使用 CD3(+)/CD19(+)- depleted 移植物可促进 SCT 后直接产生强大的 NK 细胞细胞毒性反应,并迅速出现更易被激活的 NK 细胞受体表型。

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