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PAFR in adipose tissue macrophages is associated with anti-inflammatory phenotype and metabolic homoeostasis

机译:脂肪组织巨噬细胞中的PAFR与抗炎表型和代谢稳态有关

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摘要

Metabolic dysfunction is associated with adipose tissue inflammation and macrophage infiltration. PAFR (platelet-activating factor receptor) is expressed in several cell types and binds to PAF (platelet-activating factor) and oxidized phospholipids. Engagement of PAFR in macrophages drives them towards the anti-inflammatory phenotype. In the present study, we investigated whether genetic deficiency of PAFR affects the phenotype of ATMs (adipose tissue macrophages) and its effect on glucose and insulin metabolism. PARFKO (PAFR-knockout) and WT (wild-type) mice were fed on an SD (standard diet) or an HFD (high-fat diet). Glucose and insulin tolerance tests were performed by blood monitoring. ATMs were evaluated by FACS for phenotypic markers. Gene and protein expression was investigated by real-time reverse transcription-quantitative PCR and Western blotting respectively. Results showed that the epididymal adipose tissue of PAFRKO mice had increased gene expression of Ccr7, Nos2, Il6 and Il12, associated with pro-inflammatory mediators, and reduced expression of the anti-inflammatory Il10. Moreover, the adipose tissue of PAFRKO mice presented more pro-inflammatory macrophages, characterized by an increased frequency of F4/80(+)CD11c(+) cells. Blood monocytes of PAFRKO mice also exhibited a pro-inflammatory phenotype (increased frequency of Ly6C(+) cells) and PAFR ligands were detected in the serum of both PAFRKO and WT mice. Regarding metabolic parameters, compared with WT, PAFRKO mice had: (i) higher weight gain and serum glucose concentration levels; (ii) decreased insulin-stimulated glucose disappearance; (iii) insulin resistance in the liver; (iv) increased expression of Ldlr in the liver. In mice fed on an HFD, some of these changes were potentiated, particularly in the liver. Thus it seems that endogenous ligands of PAFR are responsible for maintaining the anti-inflammatory profile of blood monocytes and ATMs under physiological conditions. In the absence of PAFR signalling, monocytes and macrophages acquire a pro-inflammatory phenotype, resulting in adipose tissue inflammation and metabolic dysfunction.
机译:代谢功能障碍与脂肪组织炎症和巨噬细胞浸润有关。 PAFR(血小板活化因子受体)在几种细胞类型中表达,并与PAF(血小板活化因子)和氧化磷脂结合。 PAFR在巨噬细胞中的参与使它们趋向于抗炎表型。在本研究中,我们调查了PAFR的遗传缺陷是否会影响ATM(脂肪组织巨噬细胞)的表型及其对葡萄糖和胰岛素代谢的影响。用SD(标准饮食)或HFD(高脂饮食)喂养PARFKO(PAFR基因敲除)和WT(野生型)小鼠。通过血液监测进行葡萄糖和胰岛素耐受性测试。通过FACS评估ATM的表型标记。分别通过实时逆转录-定量PCR和蛋白质印迹研究基因和蛋白质表达。结果表明,PAFRKO小鼠的附睾脂肪组织具有Ccr7,Nos2,Il6和Il12的基因表达增加,与促炎介质有关,而抗炎的Il10的表达减少。此外,PAFRKO小鼠的脂肪组织表现出更多的促炎性巨噬细胞,其特征是F4 / 80(+)CD11c(+)细胞的频率增加。 PAFRKO小鼠的血液单核细胞也表现出促炎表型(Ly6C(+)细胞的频率增加),并且在PAFRKO和WT小鼠的血清中均检测到PAFR配体。关于代谢参数,与野生型相比,PAFRKO小鼠具有:(i)体重增加和血清葡萄糖浓度更高; (ii)减少胰岛素刺激的葡萄糖消失; (iii)肝脏中的胰岛素抵抗; (iv)Ldlr在肝脏中的表达增加。在接受HFD喂养的小鼠中,其中一些变化得到了加强,尤其是在肝脏中。因此,似乎PAFR的内源性配体负责在生理条件下维持血液单核细胞和ATM的抗炎特性。在没有PAFR信号传导的情况下,单核细胞和巨噬细胞会获得促炎表型,从而导致脂肪组织发炎和代谢功能异常。

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