首页> 外文会议>ASME summer bioengineering conference;SBC2009 >ALTERED SHEAR STRESS STIMULATES UPREGULATION OF ENDOTHELIAL VCAM-1 AND ICAM-1 IN A BMP-4- AND TGF-01-DEPENDENT PATHWAY
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ALTERED SHEAR STRESS STIMULATES UPREGULATION OF ENDOTHELIAL VCAM-1 AND ICAM-1 IN A BMP-4- AND TGF-01-DEPENDENT PATHWAY

机译:剪切剪切应力刺激BMP-4-和TGF-01依赖性途径中内皮VCAM-1和ICAM-1的上调。

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摘要

Inflammation and calcification are common features of aortic valve (AV) diseases [1]. AV diseases preferentially occur in the aortic side of the valvular leaflets where they are exposed to complex and unstable hemodynamic conditions [2]. The reasons for this side-ipecific response, potentially associated with the local shear stress environment, are not completely understood. In addition, while it has been shown that exposure of vascular endothelial cells to oscillatory shear stress induces inflammatory responses by bone morphogenic protein (BMP)-4-dependent mechanisms [3], it is not clear whether BMP plays a role in the inflammation of AV leaflet exposed to altered mechanical environment. In the present study, we hypothesized that AV inflammation occurs preferentially in the aortic surface of AV leaflets in a BMP and TGF-pi-dependent manner due to the local hemodynamic loading conditions. This hypothesis was tested via three sets of experiments focused on the biological response of porcine AV leaflets using either a standard or pro-osteogenic medium.
机译:炎症和钙化是主动脉瓣(AV)疾病的常见特征[1]。 AV疾病优先发生在瓣膜小叶的主动脉侧,在那里它们暴露于复杂而不稳定的血液动力学状况中[2]。这种完全响应的原因可能与局部剪切应力环境有关,目前尚不完全清楚。另外,虽然已经表明血管内皮细胞暴露于振荡切应力会通过骨形态发生蛋白(BMP)-4-依赖性机制诱导炎症反应[3],但尚不清楚BMP是否在炎症中发挥作用。 AV小叶暴露于变化的机械环境中。在本研究中,我们假设由于局部血流动力学负荷条件,AV炎症优先以BMP和TGF-pi依赖性的方式在AV小叶的主动脉表面发生。通过使用标准或促成骨培养基,针对猪AV小叶的生物学反应的三组实验对这一假设进行了测试。

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