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Toll-Like Receptor 4 Mediated Oxidized Low-Density Lipoprotein-Induced Foam Cell Formation in Vascular Smooth Muscle Cells via Src and Sirt1/3 Pathway

机译:Toll样受体4通过SRC和SIRT1 / 3途径介导氧化氧化的低密度脂蛋白诱导的血管平滑肌细胞泡沫细胞形成

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Oxidized low-density lipoprotein (oxLDL) induced a foam-cell-like phenotype of the vascular smooth muscle cells (VSMCs), leading to the inflammatory responses incorporating Toll-like receptor- (Tlr-) mediated cellular alterations. However, the role of Tlr4 in foam cell formation and underlying molecular pathways has not been comprehensively elucidated. To further investigate the mechanism, VSMCs were incubated with different doses of oxLDL, and then, the lipid, reactive oxygen species (ROS) accumulation, Tlr family genes, and the foam cell phenotype were explored. We observed that oxLDL induced foam cell-like phenotype in VSMCs and led to lipid and ROS accumulation in a dose-dependent manner. Furthermore, in the Tlr family, Tlr4 demonstrated the strongest upregulation under oxLDL stimulation. Simultaneously, oxLDL induced activation of Src, higher expression of Nox2, and lower expression of Mnsod, Sirt1, and Sirt3. By interfering the TLR4 expression, the phenotype alteration, lipid accumulation in VSMCs, and Src kinase activation induced by oxLDL were abolished. After interfering Src activation, the oxLDL-induced lipid accumulation and foam cell phenotype in VSMCs were also alleviated. Furthermore, the ROS accumulation, upregulated Nox2 expression, downregulated Sirt1, Sirt3, and Mnsod expression in VSMCs under oxLDL stimulation were also relieved after the knockdown of Tlr4. Additionally, overexpression of Sirt1 and Sirt3 ameliorated the ROS accumulation and foam cell-like marker expression in VSMCs. These results demonstrated that beyond its familiar role in regulating inflammation response, Tlr4 is a critical regulator in oxLDL-induced foam cell formation in VSMCs via regulating Src kinase activation as well as Sirt1 and Sirt3 expression.
机译:氧化低密度脂蛋白(OXLDL)诱导血管平滑肌细胞(VSMC)的泡沫细胞状表型,导致掺入Toll样受体 - (TLR-)介导的细胞改变的炎症反应。然而,TLR4在泡沫细胞形成和下面的分子途径中的作用尚未得到全面地阐明。为了进一步研究该机制,探讨了与不同剂量的OXLDL一起孵育了VSMC,然后探讨了脂质,活性氧物质(ROS)积累,TLR家族基因和泡沫细胞表型。我们观察到oxldl诱导VSMC中的泡沫细胞状表型,并以剂量​​依赖性方式导致脂质和ROS积累。此外,在TLR系列中,TLR4在oxldl刺激下表现出最强的上调。同时,OXLDL诱导SRC的激活,NOx2的更高表达,以及M​​NSOD,SIRT1和SIRT3的低表达。通过干扰TLR4表达,废除了XMC中的表型改变,VSMC中的脂质积累和OXLDL诱导的SRC激酶活化。干扰SRC活化后,还缓解了oxldl诱导的脂质积累和泡沫细胞表型。此外,在TLR4的敲敲后,ROS累积,上调的NOx2表达,下调的SIRT1,SIRT3和VSMC中的MNSOD表达也释放。另外,SIRT1和SIRT3的过表达改善了VSMC中的ROS积聚和泡沫细胞样标记表达。这些结果表明,除了其在调节炎症反应方面的熟悉作用,TLR4是通过调节SRC激酶激活以及SIRT1和SIRT3表达的exldl诱导的oxldl诱导的泡沫细胞形成中的临界调节剂。

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