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在猴骨髓富含麦胚凝集素阳性造血祖细胞的部分中天然抑制活性的富集。

Enrichment of natural suppressor activity in a wheat germ agglutinin positive hematopoietic progenitor-enriched fraction of monkey bone marrow.

作者信息

Sugiura K, Ikehara S, Gengozian N, Inaba M, Sardiña E E, Ogata H, Seong S M, Good R A

机构信息

Department of Pediatrics, All Children's Hospital, University of South Florida, St Petersburg 33701.

出版信息

Blood. 1990 Mar 1;75(5):1125-31.

PMID:1968350
Abstract

Natural suppressor (NS) activity, the capacity of unprimed cells to suppress immunologic responses, is present in mouse, rabbit, and human bone marrow (BM). In this study we characterize NS activity in bone marrow cells of the rhesus monkey. Greatest NS activity was found in low-density cells (1.0600 to 1.0655 g/mL) obtained by density centrifugation on a discontinuous Percoll gradient. NS activity was further enriched when cells were separated by affinity for wheat germ agglutinin (WGA). Cells with high affinity to WGA demonstrated potent NS activity, whereas cells with low affinity to WGA had no NS activity. A significant relationship between NS activity and hematopoietic activity was demonstrated using in vitro assays of colony formation (CFU-GM and CFU-MIX). NS activity was not affected by treatment with monoclonal antibodies (MoAbs) to human Fc gamma receptors (Leu, 11a,b,c) or treatment with MoAbs to monkey natural killer cells. These findings extend our prior observations by showing that cells with NS activity, which apparently have WGA receptors, are present not only in murine BM but also in monkey bone marrow, and suggest that such cells may be involved in immunoregulation by primitive cells of BM.

摘要

天然抑制细胞(NS)活性,即未致敏细胞抑制免疫反应的能力,存在于小鼠、兔子和人类的骨髓(BM)中。在本研究中,我们对恒河猴骨髓细胞中的NS活性进行了表征。通过在不连续的Percoll梯度上进行密度离心获得的低密度细胞(1.0600至1.0655 g/mL)中发现了最强的NS活性。当根据对麦胚凝集素(WGA)的亲和力对细胞进行分离时,NS活性进一步富集。对WGA具有高亲和力的细胞表现出强大的NS活性,而对WGA具有低亲和力的细胞则没有NS活性。使用集落形成的体外测定法(CFU-GM和CFU-MIX)证明了NS活性与造血活性之间存在显著关系。用针对人Fcγ受体的单克隆抗体(MoAbs)(Leu,11a、b、c)处理或用针对猴自然杀伤细胞的MoAbs处理,均不影响NS活性。这些发现扩展了我们之前的观察结果,表明具有NS活性且显然具有WGA受体的细胞不仅存在于小鼠骨髓中,也存在于猴骨髓中,并提示此类细胞可能参与骨髓原始细胞的免疫调节。

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