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首页> 外文期刊>Life sciences >Stimulation of non-neuronal muscarinic receptors enhances chemerin/ChemR23 system in dysfunctional endothelial cells
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Stimulation of non-neuronal muscarinic receptors enhances chemerin/ChemR23 system in dysfunctional endothelial cells

机译:刺激功能异常的内皮细胞中非神经毒蕈碱受体可增强chemerin / ChemR23系统

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摘要

Aims Endothelial cells play a pivotal role in vascular intimal inflammation during cardiovascular diseases. The chemerin/ChemR23 system in endothelial cells is one of physiological mechanisms that regulate inflammatory responses. Our previous studies indicated that stimulation of non-neuronal muscarinic receptor (NNMR) improved endothelial dysfunction. However, the relationship between the chemerin/ChemR23 signaling axis and NNMR in endothelial cell is poorly understood. Here, we first investigated whether the modulation of chemerin/ChemR23 signaling axis is involved in NNMR-mediated endothelial protection. Main methods Cultured rat aortic endothelial cells (RAECs) were used. The ChemR23 protein expression and chemerin secretion were measured using Western blot analysis. The gene expression level of ChemR23 was examined with reverse transcriptase PCR (RT-PCR). The production of nitric oxide (NO) was determined by a nitrate reductase assay kit. Key findings A sharp decline of chemerin secretion and ChemR23 protein/gene expression was observed in RAECs after exposed to homocysteine at concentration of 0.5 mmol/L. Arecoline (10 μmol/L) pretreatment increased ChemR23 protein expression as well as mRNA expression, and enhanced the secretion of chemerin. Arecoline could also reverse the decreased ChemR23 mRNA expression induced by uric acid, high glucose, or oxidized low-density lipoprotein. Furthermore, the modulation of arecoline on chemerin/ChemR23 signaling axis was absolutely abolished in the presence of the nonselective muscarinic receptors antagonist atropine 1 μmol/L. Additionally, arecoline improved endothelial dysfunction by increasing the reduced NO production induced by uric acid, which was blocked by anti-ChemR23 antibody. Significance The chemerin/ChemR23 signaling axis participates in NNMR-mediated protection against endothelial dysfunction in cardiovascular system.
机译:目的内皮细胞在心血管疾病期间在血管内膜炎症中起关键作用。内皮细胞中的凯莫瑞/ ChemR23系统是调节炎症反应的生理机制之一。我们以前的研究表明,非神经毒蕈碱受体(NNMR)的刺激改善了内皮功能障碍。但是,凯莫瑞/ ChemR23信号转导轴与内皮细胞中NNMR之间的关系知之甚少。在这里,我们首先调查了chemerin / ChemR23信号轴的调制是否参与了NNMR介导的内皮保护。主要方法使用培养的大鼠主动脉内皮细胞(RAEC)。使用蛋白质印迹分析测量ChemR23蛋白表达和凯莫瑞分泌。 ChemR23的基因表达水平用逆转录PCR(RT-PCR)进行了检查。一氧化氮(NO)的产生通过硝酸还原酶测定试剂盒确定。关键发现在暴露于0.5 mmol / L同型半胱氨酸的RAEC中,观察到的chemerin分泌和ChemR23蛋白/基因表达急剧下降。槟榔碱(10μmol/ L)预处理可增加ChemR23蛋白表达和mRNA表达,并增强凯莫瑞的分泌。槟榔碱还可以逆转尿酸,高葡萄糖或氧化的低密度脂蛋白诱导的ChemR23 mRNA表达下降。此外,在存在非选择性毒蕈碱受体拮抗剂阿托品1μmol/ L的情况下,完全消除了槟榔碱对chemerin / ChemR23信号轴的调节。另外,槟榔碱通过增加由尿酸诱导的减少的NO产生来改善内皮功能障碍,所述尿酸诱导的NO产生被抗ChemR23抗体阻断。意义chemerin / ChemR23信号轴参与NNMR介导的针对心血管系统内皮功能障碍的保护作用。

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