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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Live en face imaging of aortic valve leaflets under mechanical stress
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Live en face imaging of aortic valve leaflets under mechanical stress

机译:机械应力下主动脉瓣小叶的实时面成像

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摘要

Soft tissues, such as tendons, skin, arteries, or lung, are constantly subject to mechanical stresses in vivo. None more so than the aortic heart valve that experiences an array of forces including shear stress, cyclic pressure, strain, and flexion. Anisotropic biaxial cyclic stretch maintains valve homeostasis; however, abnormal forces are implicated in disease progression. The response of the valve endothelium to deviations from physiological levels has not been fully characterized. Here, we show the design and validation of a novel stretch apparatus capable of applying biaxial stretch to viable heart valve tissue, while simultaneously allowing for live en face endothelial cell imaging via confocal laser scanning microscopy (CLSM). Real-time imaging of tissue is possible while undergoing highly characterized mechanical conditions and maintaining the native extracellular matrix. Thus, it provides significant advantages over traditional cell culture or in vivo animal models. Planar biaxial tissue stretching with simultaneous live cell imaging could prove useful in studying the mechanobiology of any soft tissue.
机译:诸如肌腱,皮肤,动脉或肺等软组织在体内不断受到机械应力。没有什么比主动脉心脏瓣膜承受一系列力,包括剪切应力,循环压力,应变和屈曲更是如此。各向异性的双轴循环拉伸保持了瓣膜的动态平衡;但是,异常力量与疾病发展有关。尚未完全表征瓣膜内皮对偏离生理水平的反应。在这里,我们展示了一种新颖的拉伸设备的设计和验证,该设备能够将双轴拉伸应用于可行的心脏瓣膜组织,同时允许通过共聚焦激光扫描显微镜(CLSM)对活的内皮细胞进行成像。在经历高度表征的机械条件并维持天然细胞外基质的同时,可以对组织进行实时成像。因此,与传统的细胞培养或体内动物模型相比,它具有明显的优势。平面双轴组织拉伸同时进行活细胞成像可证明对研究任何软组织的力学生物学有用。

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