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Elastin-Dependent Aortic Heart Valve Leaflet Curvature Changes During Cyclic Flexure

机译:弹性蛋白依赖性主动脉瓣小叶曲率在循环弯曲过程中的变化。

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摘要

The progression of calcific aortic valve disease (CAVD) is characterized by extracellular matrix (ECM) remodeling, leading to structural abnormalities and improper valve function. The focus of the present study was to relate aortic valve leaflet axial curvature changes as a function of elastin degradation, which has been associated with CAVD. Circumferential rectangular strips (L × W = 10 × 2.5 mm) of normal and elastin-degraded (via enzymatic digestion) porcine AV leaflets were subjected to cyclic flexure (1 Hz). A significant increase in mean curvature (p < 0.05) was found in elastin-degraded leaflet specimens in comparison to un-degraded controls at both the semi-constrained (50% of maximum flexed state during specimen bending and straightening events) and fully-constrained (maximally-flexed) states. This significance did not occur in all three flexed configurations when measurements were performed using either minimum or maximum curvature. Moreover, the mean curvature increase in the elastin-degraded leaflets was most pronounced at the instance of maximum flexure, compared to un-degraded controls. We conclude that the mean axial curvature metric can detect distinct spatial changes in aortic valve ECM arising from the loss in bulk content and/or structure of elastin, particularly when there is a high degree of tissue bending. Therefore, the instance of maximum leaflet flexure during the cardiac cycle could be targeted for mean curvature measurements and serve as a potential biomarker for elastin degradation in early CAVD remodeling.
机译:钙化性主动脉瓣疾病(CAVD)的进展特征在于细胞外基质(ECM)重塑,导致结构异常和瓣膜功能不正常。本研究的重点是将主动脉瓣小叶轴向曲率变化与弹性蛋白降解的函数联系起来,这与CAVD有关。正常和经弹性降解(通过酶消化)的猪AV小叶的周长矩形条(长×宽= 10×2.5毫米)经受循环弯曲(1 Hz)。与未降解的对照相比,在半约束条件(样品弯曲和拉直过程中最大弯曲状态的50%)和完全约束条件下,弹性蛋白降解的小叶样本的平均曲率显着增加(p <0.05) (最大屈曲)状态。当使用最小或最大曲率进行测量时,在所有三个挠曲配置中都没有出现这种意义。而且,与未降解的对照相比,在弹性最大的情况下,弹性蛋白降解的小叶的平均曲率增加最为明显。我们得出结论,平均轴向曲率度量可以检测到由于弹性蛋白的体积含量和/或结构的损失而引起的主动脉瓣ECM的明显空间变化,特别是在组织弯曲程度较高时。因此,在心动周期中最大的小叶弯曲的情况可以作为平均曲率测量的目标,并可以作为早期CAVD重构中弹性蛋白降解的潜在生物标记。

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