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Endothelial cell activation is attenuated by everolimus via transcriptional and post-transcriptional regulatory mechanisms after drug-eluting coronary stenting

机译:药物洗脱冠状动脉支架后,依维莫司通过转录和转录后调控机制减弱内皮细胞的激活

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摘要

We previously found higher level of endothelial cell (EC) activation in patients who suffered from in-stent restenosis after bare-metal stenting compared to subjects who underwent drug-eluting stenting (DES) showing no complications. Here we investigated the potential transcriptional and post-transcriptional regulatory mechanisms by which everolimus attenuated EC activation after DES. We studied the effect of everolimus on E-selectin (SELE) and VCAM1 mRNA levels when human coronary artery (HCAECs) and human umbilical vein ECs were challenged with recombinant TNF-α (100 ng/mL) for 1–24 hours in the presence or absence of everolimus using 0.5 μM concentration locally maintained by DES. EC activation was evaluated via the levels of IL-1β and IL-6 mRNAs with miR-155 expression by RT-qPCR as well as the nuclear translocation of nuclear factor kappa beta (NF-κB) detected by fluorescence microscopy. To investigate the transcriptional regulation of E-selectin and VCAM-1, TNF-α-induced enhancer RNA (eRNA) expression at p65-bound enhancers in the neighboring genomic regions of SELE and VCAM1 genes, including SELE_-11Kb and VCAM1_-10Kb, were measured in HCAECs. Mature and precursor levels of E-selectin and VCAM-1 repressor miR-181b were quantified to analyze the post-transcriptional regulation of these genes in HCAECs. Circulating miR-181b was analyzed in plasma samples of stented subjects by stem-loop RT-qPCR. TNF-α highly elevated E-selectin and VCAM-1 expression at transcriptional level in ECs. Levels of mature, pre- and pri-miR-181b were repressed in ECs by TNF-α, while everolimus acted as a negative regulator of EC activation via inhibited translocation of NF-κB p65 subunit into cell nuclei, lowered eRNA expression at SELE and VCAM1 genes-associated enhancers and modulated expression of their post-transcriptional repressor miR-181b. Significant negative correlation was observed between plasma miR-181b and soluble E-selectin and VCAM-1 in patients. In conclusion, everolimus attenuates EC activation via reduced NF-κB p65 translocation causing decreased E-selectin and VCAM-1 expression at transcriptional and post-transcriptional level after DES.
机译:我们之前发现,裸露支架置入术中支架内再狭窄的患者与未发生药物洗脱支架置入术(DES)的患者相比,内皮细胞(EC)激活水平更高。在这里,我们研究了依维莫司减弱DES后EC激活的潜在转录和转录后调控机制。我们研究了在存在重组人TNF-α(100 ng / mL)的情况下对人冠状动脉(HCAEC)和人脐静脉EC进行1至24小时的攻击,依维莫司对E-选择素(SELE)和VCAM1 mRNA水平的影响DES维持0.5μM浓度时是否存在依维莫司或是否存在依维莫司。通过RT-qPCR通过具有miR-155表达的IL-1β和IL-6 mRNA的水平以及荧光显微镜检测到的核因子kappa beta(NF-κB)的核易位来评估EC激活。为了研究E-选择蛋白和VCAM-1,TNF-α诱导的增强子RNA(eRNA)在SELE和VCAM1基因(包括SELE_-11Kb和VCAM1_-10Kb)的相邻基因组区域中p65结合增强子处的转录调控,在HCAEC中进行了测量。定量E-选择蛋白和VCAM-1阻遏物miR-181b的成熟水平和前体水平,以分析这些基因在HCAEC中的转录后调控。通过茎环RT-qPCR分析了带支架受试者血浆中的循环miR-​​181b。 TNF-α在EC中在转录水平上高度升高了E-选择蛋白和VCAM-1表达。 TNF-α抑制EC中成熟,pre-miR-181b和pri-miR-181b的水平,依维莫司通过抑制NF-κBp65亚基向细胞核易位,SELE和VCAM1基因相关的增强子及其转录后阻遏物miR-181b的调节表达。患者血浆miR-181b与可溶性E-选择素和VCAM-1之间存在显着负相关。总之,依维莫司通过减少NF-κBp65易位而减弱EC激活,从而导致DES后转录和转录后水平的E-选择素和VCAM-1表达降低。

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