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在同种异体骨髓移植急性排斥反应期间,NK1+细胞分化为细胞毒性T细胞的证据。

Evidence for differentiation of NK1+ cells into cytotoxic T cells during acute rejection of allogeneic bone marrow grafts.

作者信息

Dennert G, Knobloch C, Sugawara S, Yankelevich B

机构信息

University of Southern California, Kenneth Norris Jr. Comprehensive Cancer Center, Los Angeles 90033.

出版信息

Immunogenetics. 1990;31(3):161-8. doi: 10.1007/BF00211551.

Abstract

The ability of lethally irradiated C57BL/6 mice to acutely reject H-2d bone marrow is due to a lymphocyte population that is NK1+, ASGM1+, CD4-, CD8-, CD3+. Transfer of spleen cells from C57BL/6 mice expressing these antigens into nonresponder 129 mice adoptively transfers the ability to reject H-2d marrow grafts. The specificity of this rejection maps to the H-2D major histocompatibility complex (MHC) region. Transplantation of high doses of H-2d marrow into C57BL/6 overrides the acute rejection mechanism leading to graft survival. During growth of the graft, a cytolytic activity develops that is due to ASGM1+, CD8+ cytolytic T lymphocytes (CTLs) with H-2Ld specificity. The possibility that the ASGM1+, CD8+ CTLs are descendents of the CD3+, NK1+, ASGM1+, CD8- cells responsible for acute rejection is investigated by adoptive cell transfer experiments. We show that beige mice that lack NK1+ cells as well as the ability to acutely reject H-2d marrow fail to generate specific CTLs after transplantation with a high dose of H-2d marrow. Transfer of highly purified NK1+ cells from B6.PL-Ly-2a/Ly-3a (Lyt-2.1) into beige mice together with H-2d marrow leads to generation of Lyt-2.1 CTLs from donor NK1+ cells. These results show that specific CTLs are generated from NK1+ cells during acute marrow graft rejection.

摘要

受到致死剂量照射的C57BL/6小鼠对H-2d骨髓产生急性排斥反应的能力,归因于一群淋巴细胞,这群细胞NK1+、ASGM1+、CD4-、CD8-、CD3+。将表达这些抗原的C57BL/6小鼠的脾细胞转移到无反应的129小鼠中,可过继转移排斥H-2d骨髓移植物的能力。这种排斥反应的特异性定位于H-2D主要组织相容性复合体(MHC)区域。将高剂量的H-2d骨髓移植到C57BL/6小鼠中可克服导致移植物存活的急性排斥机制。在移植物生长过程中,会产生一种细胞溶解活性,这是由于具有H-2Ld特异性的ASGM1+、CD8+细胞溶解T淋巴细胞(CTL)所致。通过过继细胞转移实验研究了ASGM1+、CD8+ CTL是否是负责急性排斥反应的CD3+、NK1+、ASGM1+、CD8-细胞的后代。我们发现,缺乏NK1+细胞且无法对H-2d骨髓产生急性排斥反应的米色小鼠,在移植高剂量H-2d骨髓后无法产生特异性CTL。将来自B6.PL-Ly-2a/Ly-3a(Lyt-2.1)的高度纯化的NK1+细胞与H-2d骨髓一起转移到米色小鼠中,可导致供体NK1+细胞产生Lyt-2.1 CTL。这些结果表明,在急性骨髓移植排斥反应期间,特异性CTL由NK1+细胞产生。

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