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Monocyte differentiation and macrophage priming are regulated differentially by pentraxins and their ligands

机译:单核细胞的分化和巨噬细胞的启动受戊糖毒素及其配体的调节

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摘要

BackgroundCirculating bone marrow-derived monocytes can leave the blood, enter a tissue, and differentiate into M1 inflammatory, M2a remodeling/fibrotic, or M2c/Mreg resolving/immune-regulatory macrophages. Macrophages can also convert from one of the above types to another. Pentraxins are secreted proteins that bind to, and promote efficient clearance of, microbial pathogens and cellular debris during infection, inflammation, and tissue damage. The pentraxins C-reactive protein (CRP), serum amyloid P (SAP), and pentraxin-3 (PTX3) can also bind a variety of endogenous ligands. As monocytes and macrophages are exposed to differing concentrations of pentraxins and their ligands during infection, inflammation, and tissue damage, we assessed what effect pentraxins and their ligands have on these cells.
机译:背景循环的源自骨髓的单核细胞可以离开血液,进入组织,并分化为M1炎症性,M2a重塑/纤维化或M2c / Mreg分解/免疫调节巨噬细胞。巨噬细胞也可以从上述一种类型转换为另一种类型。 Pentraxins是一种分泌蛋白,可在感染,炎症和组织损伤过程中与微生物病原体和细胞碎片结合并促进其有效清除。五价毒素C反应蛋白(CRP),血清淀粉样蛋白P(SAP)和五价毒素3(PTX3)也可以结合多种内源性配体。由于单核细胞和巨噬细胞在感染,炎症和组织损伤期间暴露于不同浓度的五味素及其配体,因此我们评估了五味素及其配体对这些细胞有什么作用。

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