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亲脂性胞壁酰三肽MTP-PE对人单核细胞中γ干扰素诱导的主要组织相容性复合体(MHC)和CD14抗原变化的调节作用

Modulation of interferon-gamma-induced major histocompatibility (MHC) and CD14 antigen changes by lipophilic muramyltripeptide MTP-PE in human monocytes.

作者信息

Landmann R, Wesp M, Dukor P

机构信息

Department of Research, University Hospital, Basel, Switzerland.

出版信息

Cell Immunol. 1988 Nov;117(1):45-55. doi: 10.1016/0008-8749(88)90075-5.

Abstract

The lipophilic muramylpeptide derivative muramyltripeptide-phosphatidylethanolamine (MTP-PE, 0.05 to 5 micrograms/ml) and human recombinant interferon-gamma (rIFN-gamma, 1 to 100 U/ml) were applied singly or in combination to fresh human mononuclear blood leucocytes in vitro. After 15 to 72 hr incubation, culture- and drug-induced changes in beta 2-microglobulin (MHC class I associated), HLA-DR (MHC class II), and Leu-M3 (CD14) antigen expression were investigated by flow cytometry; changes in monocyte morphology (forward light scatter and side scatter) were assessed by scatter analysis. It was found that (1) rIFN-gamma caused a simultaneous down-regulation of the CD14 antigen and an up-regulation of MHC class I and class II molecules on the surface of cultured monocytes; (2) MTP-PE, which by itself failed to influence the expression of these antigens, synergized with rIFN-gamma in increasing MHC antigens and reducing CD14; (3) at high concentrations rIFN-gamma reduced monocyte viability to a small but significant extent and this effect was further potentiated by MTP-PE; and (4) untreated monocytes in culture showed an apparently MTP-PE-insensitive increase in size, density, and beta 2-microglobulin, HLA-DR, and CD14 antigen expression. The influence of MTP-PE on rIFN-gamma-induced surface marker changes may contribute to its immunoadjuvant activity in vivo.

摘要

将亲脂性胞壁酰肽衍生物胞壁酰三肽 - 磷脂酰乙醇胺(MTP - PE,0.05至5微克/毫升)和人重组干扰素 - γ(rIFN - γ,1至100单位/毫升)单独或联合应用于新鲜的人单核血白细胞进行体外实验。孵育15至72小时后,通过流式细胞术研究培养和药物诱导的β2 - 微球蛋白(与MHC I类相关)、HLA - DR(MHC II类)和Leu - M3(CD14)抗原表达的变化;通过散射分析评估单核细胞形态(前向光散射和侧向散射)的变化。结果发现:(1)rIFN - γ导致培养的单核细胞表面CD14抗原同时下调,MHC I类和II类分子上调;(2)MTP - PE本身未能影响这些抗原的表达,但与rIFN - γ协同作用可增加MHC抗原并降低CD14;(3)高浓度时,rIFN - γ会在一定程度上降低单核细胞活力,且MTP - PE会进一步增强这种作用;(4)培养中未处理的单核细胞显示出大小、密度以及β2 - 微球蛋白、HLA - DR和CD14抗原表达明显增加,且对MTP - PE不敏感。MTP - PE对rIFN - γ诱导的表面标志物变化的影响可能有助于其在体内的免疫佐剂活性。

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