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Angiotensin II Type 1 Receptor Blocker, Fimasartan, Reduces Vascular Smooth Muscle Cell Senescence by Inhibiting the CYR61 Signaling Pathway

机译:血管紧张素II 1型受体阻滞剂Fimasartan通过抑制CYR61信号通路降低血管平滑肌细胞衰老

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Background and Objectives Angiotensin II (Ang II) has been suggested to accelerate vascular senescence, however the molecular mechanism(s) remain unknown. Methods We cultured human coronary artery smooth muscle cells (hCSMCs) and treated Ang II and/or fimasartan. Or we transfected adenoviral vectors expressing CYR61 (Ad-CYR61) or antisense CYR61 (Ad-As-CYR61). Cellular senescence was evaluated senescence-associated β-galactosidase (SA-β-gal) assay. The molecular mechanisms were investigated real-time PCR and western blots. Results SA-β-gal-positive cells significantly increased in Ang II-treated hCSMCs (5.77±1.43-fold compared with the control). The effect of Ang II was significantly attenuated by pretreatment with the Ang II type 1 receptor blocker, fimasartan (2.00±0.92-fold). The expression of both p53 and p16 senescence regulators was significantly increased by Ang II (p53: 1.39±0.17, p16: 1.19±0.10-fold vs. the control), and inhibited by fimasartan. Cysteine-rich angiogenic protein 61 (CYR61) was rapidly induced by Ang II. Compared with the control, Ad-CYR61-transfected hCSMCs showed significantly increased SA-β-gal-positive cells (3.47±0.65-fold). Upon transfecting Ad-AS-CYR61, Ang II-induced senescence (3.74±0.23-fold) was significantly decreased (1.77±0.60-fold). p53 expression by Ang II was significantly attenuated by Ad-AS-CYR61, whereas p16 expression was not regulated. Ang II activated ERK1/2 and p38 MAPK, which was significantly blocked by fimasartan. ERK and p38 inhibition both regulated Ang II-induced CYR61 expression. However, p53 expression was only regulated by ERK1/2, whereas p16 expression was only attenuated by p38 MAPK. Conclusions Ang II induced vascular senescence by the ERK/p38 MAPK–CYR61 pathway and ARB, fimasartan, protected against Ang II-induced vascular senescence.
机译:背景和目的血管紧张素II(Ang II)可以促进血管衰老,但是其分子机制仍然未知。方法我们培养了人类冠状动脉平滑肌细胞(hCSMC),并处理了Ang II和/或fimasartan。或者我们转染了表达CYR61(Ad-CYR61)或反义CYR61(Ad-As-CYR61)的腺病毒载体。评价细胞衰老相关的衰老相关β-半乳糖苷酶(SA-β-gal)测定。研究了实时荧光定量PCR和蛋白质印迹的分子机制。结果在Ang II处理的hCSMC中,SA-β-gal阳性细胞明显增加(与对照相比,增加了5.77±1.43倍)。 Ang II 1型受体阻滞剂Fimasartan预处理可显着减弱Ang II的作用(2.00±0.92倍)。 Ang II显着增加了p53和p16衰老调节因子的表达(与对照组相比,p53:1.39±0.17,p16:1.19±0.10倍),并受到了fimasartan的抑制。 Ang II可以快速诱导富含半胱氨酸的血管生成蛋白61(CYR61)。与对照相比,Ad-CYR61转染的hCSMCs显示SA-β-gal阳性细胞明显增加(3.47±0.65倍)。转染Ad-AS-CYR61后,Ang II诱导的衰老(3.74±0.23倍)显着降低(1.77±0.60倍)。 Ang II的p53表达被Ad-AS-CYR61显着减弱,而p16的表达不受调控。 Ang II激活ERK1 / 2和p38 MAPK,而后者被fimasartan显着阻断。 ERK和p38抑制均调节Ang II诱导的CYR61表达。但是,p53表达仅受ERK1 / 2调控,而p16表达仅受p38 MAPK减弱。结论Ang II通过ERK / p38 MAPK–CYR61途径诱导血管衰老,ARB,Fimasartan可以防止Ang II诱导的血管衰老。

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