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Extending vaterite microviscometry to ex vivo blood vessels by serial calibration

机译:通过串行校准将球ate石微粘度计扩展到离体血管

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摘要

The endothelial glycocalyx layer is a ~2 µm thick glycosaminoglycan rich pericellular matrix expressed on the luminal surface of vascular endothelial cells, which has implications in vessel mechanics and mechanotransduction. Despite its role in vascular physiology, no direct measurement has of yet been made of vessel glycocalyx material properties. Vaterite microviscometry is a laser tweezers based microrheological method, which has been previously utilized to measure the viscosity of linear and complex fluids under flow. This form of microrheology has until now relied on complete recollection of the forward scattered light. Here we present a novel method to extend vaterite microviscometry to relatively thick samples. We validate our method and its assumptions and measure the apparent viscosity as a function of distance from the vascular endothelium. We observe a differential response in conditions designed to preserve the EGL in comparison to those designed to collapse it.
机译:内皮糖萼层是在血管内皮细胞腔表面表达的约2 µm厚的富含糖胺聚糖的细胞周围基质,对血管力学和机械转导有影响。尽管其在血管生理学中具有作用,但是尚未对血管糖萼材料的性质进行直接测量。球ate石微粘度测定法是一种基于激光镊子的微流变方法,以前已用于测量流动状态下线性和复杂流体的粘度。迄今为止,这种形式的微流变学一直依赖于对前向散射光的完全收集。在这里,我们提出了一种新方法,可将球ate石微粘度计扩展到相对较厚的样品。我们验证了我们的方法及其假设,并测量了表观粘度随距血管内皮距离的变化。与旨在使EGL崩溃的条件相比,我们观察到在旨在保护EGL的条件下的响应差异。

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