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Captopril treatment during development alleviates mechanically induced aortic remodeling in newborn elastin knockout mice

机译:开发过程中的卡托普利治疗减轻了在新生Elastin敲除小鼠中机械诱导的主动脉重塑

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Deposition of elastin and collagen in the aorta correlates with increases in blood pressure and flow during development, suggesting that the aorta adjusts its mechanical properties in response to hemodynamic stresses. Elastin knockout (Eln(-/-)) mice have high blood pressure and pathological remodeling of the aorta and die soon after birth. We hypothesized that decreasing blood pressure in Eln(-/-) mice during development may reduce hemodynamic stresses and alleviate pathological remodeling of the aorta. We treated Eln(+/+) and Eln(-/-) mice with the anti-hypertensive medication captopril throughout embryonic development and then evaluated left ventricular (LV) pressure and aortic remodeling at birth. We found that captopril treatment decreased Eln(-/-) LV pressure to values near Eln(+/+) mice and alleviated the wall thickening and changes in mechanical behavior observed in untreated Eln(-/-) aorta. The changes in thickness and mechanical behavior in captopril-treated Eln(-/-) aorta were not due to alterations in measured elastin or collagen amounts, but may have been caused by alterations in smooth muscle cell (SMC) properties. We used a constitutive model to understand how changes in stress contributions of each wall component could explain the observed changes in composite mechanical behavior. Our modeling results show that alterations in the collagen natural configuration and SMC properties in the absence of elastin may explain untreated Eln(-/-) aortic behavior and that partial rescue of the SMC properties may account for captopril-treated Eln(-/-) aortic behavior.
机译:在主动脉中沉积弹性蛋白和胶原蛋白与显影过程中的血压和流动的增加相关,这表明主动脉响应于血液动力学应力调节其机械性能。 Elastin敲除(Eln( - / - ))小鼠具有高血压和主动脉的病理重塑,出生后不久死亡。我们假设在开发过程中降低eln( - / - )小鼠的血压可以减少血液动力学应力并减轻主动脉的病理重塑。我们处理了胚胎发育的抗高血压药物Capopril的Eln(+ / +)和eln( - / - )小鼠,然后在出生时评估左心室(LV)压力和主动脉改造。我们发现卡托普利治疗降低了ELN( - / - )LV压力对ELN(+ / +)小鼠附近的值,并减轻了在未处理的ELN( - / - )主动脉中观察到的壁厚和机械行为的变化。 Captopril处理的ELN( - / - )主动脉厚度和机械行为的变化不是由于测量的弹性蛋白或胶原量的改变,但可能是由平滑肌细胞(SMC)性质的改变引起的。我们使用了一个本构模型来了解每个墙壁组分的应力贡献变化如何解释综合力学行为的观察到的变化。我们的建模结果表明,在没有弹性蛋白的情况下,胶原蛋白天然配置和SMC性质的改变可以解释未经治疗的ELN( - / - )主动脉行为,并且SMC性能的部分救援可能会占Captopril处理的eln( - / - )主动脉行为。

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