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γ干扰素改变小鼠滋养层细胞的吞噬活性。

Interferon-gamma alters the phagocytic activity of the mouse trophoblast.

作者信息

Albieri Andréa, Hoshida Mara S, Gagioti Sonia M, Leanza Eduardo C, Abrahamsohn Ises, Croy Anne, Ashkar Ali A, Bevilacqua Estela

机构信息

Department of Cell and Developmental Biology, Institute of Biomedical Sciences, University of São Paulo 05508-900 São Paulo, Brazil.

出版信息

Reprod Biol Endocrinol. 2005 Aug 10;3:34. doi: 10.1186/1477-7827-3-34.

Abstract

Interferon-gamma (IFN-gamma) mediates diverse functions in bone marrow-derived phagocytes, including phagocytosis and microbe destruction. This cytokine has also been detected at implantation sites under both physiological and pathological conditions in many different species. At these particular sites, the outermost embryonic cell layer in close contact with the maternal tissues, the trophoblast exhibits intense phagocytic activity. To determine whether IFN-gamma affects phagocytosis of mouse-trophoblast cells, ectoplacental cone-derived trophoblast was cultured and evaluated for erythrophagocytosis. Phagocytic activity was monitored ultrastructurally and expressed as percentage of phagocytic trophoblast in total trophoblast cells. Conditioned medium from concanavalin-A-stimulated spleen cells significantly enhanced trophoblast phagocytosis. This effect was blocked by pre-incubation with an anti-IFN-gamma neutralizing antibody. Introduction of mouse recombinant IFN-gamma (mrIFN-gamma) to cultures did not increase cell death, but augmented the percentage of phagocytic cells in a dose-dependent manner. Ectoplacental cones from mice deficient for IFN-gamma receptor alpha-chain showed a significant decrease of the phagocytosis, even under mrIFN-gamma stimulation, suggesting that IFN-gamma-induced phagocytosis are receptor-mediated. Reverse transcriptase-PCR analyses confirmed the presence of mRNA for IFN-gamma receptor alpha and beta-chains in trophoblast cells and detected a significant increase in the mRNA levels of IFN-gamma receptor beta-chain, mainly, when cultured cells were exposed to IFN-gamma. Immunohistochemistry and Western blot analyses also revealed protein expression of the IFN-gamma receptor alpha-chain. These results suggest that IFN-gamma may participate in the phagocytic activation of the mouse trophoblast, albeit the exact mechanism was not hereby elucidated. Protective and/or nutritional fetal benefit may result from this physiological response. In addition, our data also shed some light on the understanding of trophoblast tolerance to inflammatory/immune cytokines during normal gestation.

摘要

干扰素-γ(IFN-γ)在骨髓来源的吞噬细胞中发挥多种功能,包括吞噬作用和微生物破坏。在许多不同物种的生理和病理条件下,在植入部位也检测到了这种细胞因子。在这些特定部位,与母体组织紧密接触的最外层胚胎细胞层,即滋养层,表现出强烈的吞噬活性。为了确定IFN-γ是否影响小鼠滋养层细胞的吞噬作用,培养了来自外胎盘锥的滋养层细胞,并对其红细胞吞噬作用进行了评估。通过超微结构监测吞噬活性,并以吞噬滋养层细胞在总滋养层细胞中的百分比表示。伴刀豆球蛋白A刺激的脾细胞条件培养基显著增强了滋养层细胞的吞噬作用。用抗IFN-γ中和抗体预孵育可阻断这种作用。将小鼠重组IFN-γ(mrIFN-γ)引入培养物中不会增加细胞死亡,但会以剂量依赖的方式增加吞噬细胞的百分比。缺乏IFN-γ受体α链的小鼠的外胎盘锥即使在mrIFN-γ刺激下也显示吞噬作用显著降低,这表明IFN-γ诱导的吞噬作用是受体介导的。逆转录酶-PCR分析证实滋养层细胞中存在IFN-γ受体α链和β链的mRNA,并检测到IFN-γ受体β链的mRNA水平显著增加,主要是当培养细胞暴露于IFN-γ时。免疫组织化学和蛋白质印迹分析也揭示了IFN-γ受体α链的蛋白表达。这些结果表明,IFN-γ可能参与小鼠滋养层细胞的吞噬激活,尽管确切机制尚未在此阐明。这种生理反应可能对胎儿产生保护和/或营养益处。此外,我们的数据也为理解正常妊娠期间滋养层细胞对炎症/免疫细胞因子的耐受性提供了一些线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ed8/1215515/ac02aa03974e/1477-7827-3-34-1.jpg

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