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Differential endocytotic characteristics of a novel human B/DC cell line HBM-Noda: effective macropinocytic and phagocytic function rather than scavenging function

机译:新型人B / DC细胞系HBM-Noda的差异性内吞特性:有效的大胞游和吞噬功能,而不是清除功能

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摘要

In order to characterize a novel human B cell-lineage dendritic cell line (B/DC line) as an antigen-presenting cell (APC), we compared three types of endocytosis (micropinocytosis via a clathrin-coated pit, macropinocytosis via membrane ruffling, and phagocytosis) among myeloid-related, macrophage (Mφ) cell lines and a B/DC line. In the present examination, we used a unique human dendritic cell (DC) line, HBM-Noda (Noda). Flow cytometric and immunocytochemical analyses revealed that Noda not only expresses some DC markers, but also it expresses some B-cell associated markers. Noda shows strong capacities to stimulate allogenic T cells, to produce immunoglobulin G (IgG), and to perform immunoglobulin gene rearrangment. These data strongly suggest that Noda is a B-cell lineage DC line. The endocytic differences among these cell lines were as follows. (1) The level of micropinocytosis of Noda was significantly less than that of conventional human Mφ cell lines, and the formation of a clathrin-coated pit was not observed in Noda. (2) The level of macropinocytosis of Noda was also smaller than that of conventional Mφ cells indicating that the active membrane ruffling of Noda induces rapid recycling. (3) Phagocytosis of opsonized sheep red blood cells (SRBC) was performed more efficiently in Noda than in other Mφ cell lines. Collectively, these data suggest that in human bone marrow cells, we can identify a unique DC subtype, B/DC line, which develops through a lymphoid DC-differentiation pathway, and DC in this lineage plays an important role in the host immune response because of its effective uptake of a variety of size of antigens by using the skilful membrane ruffling and surface receptors
机译:为了将新型人B细胞谱系树突状细胞系(B / DC系)表征为抗原呈递细胞(APC),我们比较了三种类型的内吞作用(通过网格蛋白包被的微胞吞作用,通过膜起皱的巨噬细胞作用,和吞噬作用)在髓样相关的巨噬细胞(Mφ)和B / DC系中。在本次检查中,我们使用了独特的人类树突状细胞(DC)系HBM-Noda(Noda)。流式细胞仪和免疫细胞化学分析表明,野田不仅表达一些DC标记,而且还表达一些B细胞相关的标记。 Noda具有刺激同种异体T细胞,产生免疫球蛋白G(IgG)以及进行免疫球蛋白基因重排的强大能力。这些数据强烈表明野田是B细胞谱系DC线。这些细胞系之间的内吞差异如下。 (1)Noda的微胞饮作用水平显着低于常规人Mφ细胞系,并且在Noda中未观察到形成网格蛋白涂层的凹坑的形成。 (2)Noda的巨胞饮水平也小于常规的Mφ细胞,这表明Noda的活性膜起皱作用可以快速回收。 (3)在Noda中,调理绵羊红细胞(SRBC)的吞噬作用比其他Mφ细胞系更有效。总体而言,这些数据表明,在人类骨髓细胞中,我们可以鉴定出通过淋巴样DC分化途径发育的独特DC亚型B / DC系,并且该系中的DC在宿主免疫反应中起重要作用,因为熟练的膜起皱和表面受体可有效吸收各种大小的抗原

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