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The Chemerin/ChemR23 System Does Not Affect the Pro-Inflammatory Response of Mouse and Human Macrophages Ex Vivo

机译:Chemerin / ChemR23系统不影响小鼠和人类巨噬细胞的促炎反应

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摘要

Macrophages constitute a major component of innate immunity and play an essential role in defense mechanisms against external aggressions and in inflammatory responses. Chemerin, a chemoattractant protein, is generated in inflammatory conditions, and recruits cells expressing the G protein-coupled receptor ChemR23, including macrophages. Chemerin was initially expected to behave as a pro-inflammatory agent. However, recent data described more complex activities that are either pro- or anti-inflammatory, according to the disease model investigated. In the present study, peritoneal macrophages were generated from WT or ChemR23−/− mice, stimulated with lipopolyssaccharide in combination or not with IFN-γ and the production of pro- (TNF-α, IL-1β and IL-6) and anti-inflammatory (IL-10) cytokines was evaluated using qRT-PCR and ELISA. Human macrophages generated from peripheral blood monocytes were also tested in parallel. Peritoneal macrophages from WT mice, recruited by thioglycolate or polyacrylamide beads, functionally expressed ChemR23, as assessed by flow cytometry, binding and chemotaxis assays. However, chemerin had no effect on the strong upregulation of cytokine release by these cells upon stimulation by LPS or LPS/IFN-γ, whatever the concentration tested. Similar data were obtained with human macrophages. In conclusion, our results rule out the direct anti-inflammatory effect of chemerin on macrophages ex vivo, described previously in the literature, despite the expression of a functional ChemR23 receptor in these cells.
机译:巨噬细胞是先天免疫的主要组成部分,在抵抗外部攻击的防御机制和炎症反应中起着至关重要的作用。 Chemerin是一种化学吸引蛋白,在炎症条件下产生,并募集表达G蛋白偶联受体ChemR23的细胞,包括巨噬细胞。起初,Chemerin被认为具有促炎作用。然而,根据所研究的疾病模型,最近的数据描述了更复杂的活动,即促炎性或抗炎性。在本研究中,腹膜巨噬细胞是从WT或ChemR23 -/-小鼠产生的,用脂多糖刺激或不与IFN-γ联合刺激腹膜巨噬细胞产生前-(TNF-α,IL-1β IL-6)和抗炎(IL-10)细胞因子使用qRT-PCR和ELISA进行评估。还并行测试了由外周血单核细胞产生的人巨噬细胞。通过巯基乙酸盐或聚丙烯酰胺珠募集的野生型小鼠腹膜巨噬细胞功能性表达ChemR23,通过流式细胞术,结合和趋化性分析进行评估。然而,无论测试浓度如何,凯莫瑞对LPS或LPS /IFN-γ刺激后这些细胞强烈释放的细胞因子释放没有影响。用人类巨噬细胞获得了相似的数据。总之,尽管在这些细胞中表达了功能性ChemR23受体,但我们的结果排除了凯莫瑞对离体巨噬细胞的直接抗炎作用,如先前在文献中所述。

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