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Consequences of postnatal vascular smooth muscle EGFR deletion on acute angiotensin II action

机译:产后血管平滑肌EGFR缺失对急性血管紧张素II作用的后果

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Epi dermal growth factor (EGF) receptor (EGFR) is activated by its canonical ligands and transactivated by various vasoactive substances, e.g. angiotensin II (Ang II). Vascular EGFR has been proposed to be involved in vascular tissue homoeostasis and remodelling. Thus, most studies have focused on its role during long-term vascular changes whereas the relevance for acute regulation of vascular function in vivo and ex vivo is insufficiently understood. To investigate the postnatal role of VSMCs (vascular smooth muscle cells) EGFR in vivo and ex vivo, we generated a mouse model with cell-specific and inducible deletion of VSMC EGFR and studied the effect on basal blood pressure, acute pressure response to, among others, Ang II in vivo as well as ex vivo, cardiovascular tissue homoeostasis and vessel morphometry in male mice. In knockout (KO) animals, systolic, diastolic and mean blood pressures were reduced compared with wild-type (WT). Furthermore, Ang II-induced pressure load was lower in KO animals, as was Ang II-induced force development and extracellular-signal-regulated kinase 1 and 2 (ERK1/2) phosphorylation in aortic rings from KO animals. By contrast, we observed no difference in force development during application of serotonin, KCl, endothelin-1 or endothelin-1-induced pressure load in KO animals. In addition, nitric oxide (NO)-mediated vasodilation was not affected. Heart weight (HW) increase and up-regulation of aortic and cardiac expression of Ccl2 (chemoattractant protein-2) and serpinE1 (plasminogen activator inhibitor 1) during the transition from 4- to 10-months of age were prevented by VSMC EGFR KO. We conclude that VSMC EGFR is involved in basal blood pressure homoeostasis and acute pressure response to Ang II, and thereby contributes to maturation-related remodelling.
机译:表皮皮肤生长因子(EGF)受体(EGFR)被其典型的配体激活,并被各种血管活性物质(例如血管紧张素II(Ang II)。已经提出血管EGFR参与血管组织的稳态和重塑。因此,大多数研究都集中于其在长期血管变化中的作用,而对于体内和离体急性调节血管功能的相关性却知之甚少。为了研究VSMCs(血管平滑肌细胞)EGFR在体内和离体后的作用,我们建立了具有细胞特异性和诱导型VSMC EGFR缺失的小鼠模型,并研究了其对基础血压,急性压力反应的影响。其他方面,雄性小鼠体内和体外的Ang II,心血管组织的稳态和血管形态测定均如此。与野生型(WT)相比,基因敲除(KO)动物的收缩压,舒张压和平均血压降低。此外,在KO动物中,Ang II诱导的压力负荷较低,在KO动物的主动脉环中,Ang II诱导的力发展以及细胞外信号调节的激酶1和2(ERK1 / 2)磷酸化也是如此。相比之下,我们观察到在KO动物中应用5-羟色胺,KCl,内皮素-1或内皮素-1诱导的压力负荷过程中力量发展没有差异。此外,一氧化氮(NO)介导的血管舒张作用不受影响。 VSMC EGFR KO可防止从4个月到10个月大的过渡期间心脏重量(HW)的增加以及Ccl2(化学吸引蛋白2)和serpinE1(纤溶酶原激活物抑制剂1)的主动脉和心脏表达的上调。我们得出的结论是,VSMC EGFR参与基础血压的稳态和对Ang II的急性压力反应,从而有助于与成熟有关的重塑。

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