首页> 外文OA文献 >Transient expansion of Mac1+Ly6-G+Ly6-C+ early myeloid cells with suppressor activity in spleens of murine radiation marrow chimeras: possible implications for the graft-versus-host and graft-versus-leukemia reactivity of donor lymphocyte infusions
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Transient expansion of Mac1+Ly6-G+Ly6-C+ early myeloid cells with suppressor activity in spleens of murine radiation marrow chimeras: possible implications for the graft-versus-host and graft-versus-leukemia reactivity of donor lymphocyte infusions

机译:小鼠放射骨髓嵌合体脾脏中具有抑制活性的Mac1 + Ly6-G + Ly6-C +早期骨髓细胞的瞬时扩增:对供体淋巴细胞输注的移植物抗宿主和移植物抗白血病反应性的可能影响

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摘要

A murine model of minor histocompatibility antigen (miHCag)-mismatched bone marrow transplantation (BMT) was used to study the development of immunoregulatory cells in the posttransplantation period and their possible involvement in the dissociated graft-versus-host (GVH) and graft-versus-leukemia (GVL) reactivity of posttransplantation donor lymphocyte infusions (DLIs). DLI, applied immediately after BMT, induced GVH disease (GVHD), but when DLI was delayed for 3 weeks, GVHD was avoided while a distinct GVL response was allowed to develop. A population of Mac1+Ly6-G+Ly6-C+ immature myeloid cells, found in small numbers in normal mice, strongly expanded in spleens of chimeras, reaching a maximum level at week 3 and returning to base level by week 12. Upon isolation, these cells exhibited interferon-gamma (IFN-gamma)-dependent, nitric oxide (NO)-mediated suppressor activity toward in vitro alloresponses, suggesting that, after in vivo DLI, they are activated by IFN-gamma to produce NO and suppress GVH reactivity. Because not only alloactivated T-cell proliferation but also leukemia cell growth was found susceptible to inhibition by exogenous NO, in vivo activation of these cells after DLI may explain the occurrence of a GVL effect despite suppression of GVHD. This suggested sequence of events was supported by the finding that the ex vivo antihost proliferative response of spleen cells, recovered shortly after in vivo DLI, was characterized by strong mRNA production of the monokines interleukin-1 (IL-1), IL-6, and tumor necrosis factor-alpha (TNF-alpha) and of inducible nitric oxide synthase (iNOS). Our data suggest that transiently expanding Mac1+Ly6-G+Ly6-C+ immature myeloid cells (probably as a result of extramedullary myelopoiesis) may play a role in controlling GVH while promoting GVL reactivity of DLI after allogeneic BMT.
机译:使用未成年人组织相容性抗原(miHCag)失配的骨髓移植(BMT)的小鼠模型研究移植后免疫调节细胞的发育及其可能参与的游离移植物抗宿主(GVH)和移植物抗宿主移植后供体淋巴细胞输注(DLI)的-白血病(GVL)反应性。在BMT之后立即应用DLI会引起GVH病(GVHD),但是当DLI延迟3周时,可以避免GVHD,而可以产生独特的GVL反应。在正常小鼠中少量发现的Mac1 + Ly6-G + Ly6-C +不成熟骨髓细胞群体在嵌合体脾脏中强烈扩增,在第3周达到最高水平,并在第12周恢复至基本水平。分离后,这些细胞表现出对干扰素-γ(IFN-γ)依赖性的一氧化氮(NO)介导的对体外变态反应的抑制活性,表明在体内DLI后,它们被IFN-γ激活以产生NO并抑制GVH反应性。因为不仅发现同种活化的T细胞增殖而且白血病细胞的生长均易受外源NO抑制,所以DLI后这些细胞的体内激活可能解释了尽管抑制了GVHD,但发生了GVL效应。这一发现提示了这一事件序列,这一发现是在体内DLI后不久恢复的脾细胞的体外抗宿主增殖反应,其特征在于单核白介素-1(IL-1),IL-6,和肿瘤坏死因子-α(TNF-alpha)和诱导型一氧化氮合酶(iNOS)。我们的数据表明,瞬时扩增Mac1 + Ly6-G + Ly6-C +未成熟的髓样细胞(可能是髓外骨髓生成的结果)可能在控制GVH的同时促进同种异体BMT后DLI的GVL反应性。

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