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Lessons learned from the exquisite design of the endothelial surface glycocalyx and their amazing applications

机译:从内皮表面甘油糖的精致设计中了解到的经验教训及其惊人的应用

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In a recent paper by Weinbaum et al. [1], a theoretical model was developed for the structural organization and function of the thin 0.4 μm endothelial surface matrix layer of proteoglycans and glycoproteins that coats the inner lining of our blood vessels. In particular, it is shown that the core proteins in this layer are sufficiently stiff to serve as an exquisitely designed transducer of fluid shear stress to the cortical cytoskeleton of the endothelial cell in initiating intracellular signaling, but offer negligible resistance to buckling when red cell motion is arrested. This latter property allows highly flexible red cells to move through tightly fitting capillaries with remarkably little frictional resistance since the normal force is balanced nearly entirely by the fluid pressure in the highly compressible glycocalyx layer and sliding friction between the cell and the solid phase is vanishingly small. We first show that there is a remarkable dynamic similarity between the motion of red cells gliding on the endothelial glycocalyx and a human snowboarding on fresh powder although they differ in mass by 10~(15). One is able to produce lift forces in each case that are four orders of magnitude larger than classical lubrication theory due to the inability of the trapped fluid or air in the porous layer to rapidly escape. These concepts are then extended to the design of a future generation train that can glide on a track whose permeability and elastic properties are similar to goose down.
机译:在Weinbaum等人的最新纸上。 [1],制定了理论模型,用于构造组织和薄的蛋白质聚糖和糖蛋白的薄片0.4μm内皮表面基质层的功能,涂覆血管内衬的糖蛋白。特别地,显示该层中的核心蛋白是充分刚刚的,以用作引发细胞内信号传导的内皮细胞的皮质细胞骨架的精美的流体剪切应力的换能器,但在红色细胞运动时提供可忽略的抗弯曲抗性被捕。后一种性能允许高度柔性的红电池通过紧密的装配毛细管,由于摩擦阻力显着,因为正常力几乎完全由高可压缩的糖钙层层中的流体压力平衡,并且细胞与固相之间的滑动摩擦越小。首先表明红细胞在内皮甘油膜上滑动的运动运动与新鲜粉末上的人滑雪之间存在显着的动态相似性,尽管它们的质量与10〜(15)不同。一种能够在每种情况下产生提升力,这些情况是由于多孔层中的捕获的流体或空气不能快速逃逸而大于经典润滑理论的四个数量级。然后将这些概念扩展到未来的一代火车的设计,这些火车可以在磁动性和弹性特性与叶片相似的轨道上滑动。

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