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CD300 分子对人树突状细胞功能的调节。

CD300 molecule regulation of human dendritic cell functions.

机构信息

ANZAC Research Institute, University of Sydney, Hospital Road, Concord, NSW 2139, Australia.

出版信息

Immunol Lett. 2013 Jan;149(1-2):93-100. doi: 10.1016/j.imlet.2012.10.005. Epub 2012 Oct 13.

Abstract

Dendritic cells (DC) are a heterogeneous population of leucocytes which play a key role in initiating and modulating immune responses. The human CD300 family consists of six immunoregulatory leucocyte membrane molecules that regulate cellular activity including differentiation, viability, cytokine and chemokine secretion, phagocytosis and chemotaxis. Recent work has identified polar lipids as probable ligands for these molecules in keeping with the known evolutionary conservation of this family. CD300 molecules are all expressed by DC; CD300b, d, e and f are restricted to different subpopulations of the myeloid DC lineage. They have been shown to regulate DC function both in vitro and in vivo. In addition DC are able to regulate their CD300 expression in an autocrine manner. The potential to form different CD300 heterodimers adds further complexity to their role in fine tuning DC function. Expression of CD300 molecules is altered in a number of diseases including many where DC are implicated in the pathogenesis. CD300 antibodies have been demonstrated to have significant therapeutic effect in animal models. The mechanisms underlying the immunoregulatory effects of the CD300 family are complex. Deciphering their physiology will allow effective targeting of these molecules as novel therapies in a wide variety of inflammatory diseases.

摘要

树突状细胞 (DC) 是一种异质性白细胞群体,在启动和调节免疫反应中发挥关键作用。人类 CD300 家族由六个免疫调节白细胞膜分子组成,这些分子调节细胞活性,包括分化、存活、细胞因子和趋化因子分泌、吞噬作用和趋化作用。最近的研究表明,极性脂质可能是这些分子的配体,这与该家族的已知进化保守性一致。CD300 分子均由 DC 表达;CD300b、d、e 和 f 则局限于髓样 DC 谱系的不同亚群。已证明它们可调节体外和体内的 DC 功能。此外,DC 还能够以自分泌的方式调节其 CD300 的表达。形成不同 CD300 异二聚体的潜力使它们在微调 DC 功能方面的作用更加复杂。许多疾病中 CD300 分子的表达发生改变,其中包括许多 DC 参与发病机制的疾病。已经证明 CD300 抗体在动物模型中具有显著的治疗效果。CD300 家族的免疫调节作用的机制很复杂。阐明它们的生理学将允许针对这些分子进行有效的靶向治疗,作为广泛的炎症性疾病的新型疗法。

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