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糖缀合物及其内源性受体是否参与单核巨噬细胞融合形成多核巨细胞?对肉芽肿性异物反应中出现的单核巨噬细胞和多核巨细胞内源性糖结合蛋白(凝集素)进行组织化学和电子显微镜测定。

Are glycoconjugates and their endogenous receptors involved in the fusion of mononuclear macrophages resulting in multinucleate giant cells? Histochemical and electron microscopic determination of endogenous sugar-binding proteins (lectins) in mononuclear macrophages and multinucleate giant cells appearing in granulomatous foreign body reaction.

作者信息

Bardosi A, Dimitri T, Gabius H J

机构信息

Department of Neuropathology, University of Göttingen, F.R.G.

出版信息

J Submicrosc Cytol Pathol. 1989 Apr;21(2):229-38.

PMID:2546662
Abstract

Protein-carbohydrate recognition has been found to play an important role in phagocytosis. Labelled (neo)glycoproteins were employed to comparatively analyze the histochemical pattern and ultrastructural localization of endogenous carbohydrate-binding proteins (lectins) of mononuclear macrophages and multinucleate giant cells involved in the granulomatous foreign body reaction. Sugar receptors having an affinity to simple alpha- and beta-galactoside-structures, to alpha-mannose residues, to N-acetylglucosamine, to N-acetylgalactosamine and to glucuronic acid, respectively, were detected in both cell types. However, alpha-fucoside- and beta-xyloside-specific receptors were present only in the mononuclear macrophages. Pronounced differences were seen with labelled, suitably modified glycoproteins, exposing different complex sugar parts with common beta-galactoside-termini. Among the population of multinucleate giant cells, a positive histochemical reaction was observed with mannose-6-phosphate-, galactose-6-phosphate- and glucuronic acid-(BSA-biotin), respectively, only in giant cells in which fusing mononuclear cells were recognizable. This transient expression indicates changes within the profile of endogenous sugar receptors in the stages from fusion to establishment of giant cells. Aside from the diffuse intracytoplasmic distribution of carbohydrate-binding proteins, a prominent accumulation of various types of glycosylated ferritin, used as a marker for electron microscopic evaluation, was ultrastructurally found in membranous subcellular structures and vesicles. This study is a basis for further investigation of the potential involvement of various sugar receptors in the process of macrophage fusion, resulting in multinucleate giant cells of foreign body type, and the process of phagocytosis.

摘要

已发现蛋白质 - 碳水化合物识别在吞噬作用中起重要作用。使用标记的(新)糖蛋白来比较分析参与肉芽肿性异物反应的单核巨噬细胞和多核巨细胞内源性碳水化合物结合蛋白(凝集素)的组织化学模式和超微结构定位。在两种细胞类型中均检测到分别对简单的α - 和β - 半乳糖苷结构、α - 甘露糖残基、N - 乙酰葡糖胺、N - 乙酰半乳糖胺和葡糖醛酸具有亲和力的糖受体。然而,α - 岩藻糖苷和β - 木糖苷特异性受体仅存在于单核巨噬细胞中。对于带有标记的、经过适当修饰的糖蛋白,其暴露具有共同β - 半乳糖苷末端的不同复合糖部分,观察到明显差异。在多核巨细胞群体中,仅在可识别融合单核细胞的巨细胞中分别观察到对甘露糖 - 6 - 磷酸、半乳糖 - 6 - 磷酸和葡糖醛酸 - (牛血清白蛋白 - 生物素)的阳性组织化学反应。这种短暂表达表明从融合到巨细胞形成阶段内源性糖受体谱的变化。除了碳水化合物结合蛋白在胞质内的弥漫分布外,在亚细胞膜结构和囊泡中超微结构地发现了用作电子显微镜评估标记的各种类型糖基化铁蛋白的显著积累。本研究为进一步研究各种糖受体在巨噬细胞融合过程(导致异物型多核巨细胞形成)和吞噬过程中的潜在作用奠定了基础。

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