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Deformation and flow of red blood cells in a synthetic lattice: evidence for an active cytoskeleton.

机译:合成晶格中红细胞的变形和流动:活跃细胞骨架的证据。

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摘要

We introduce the use of microfabrication techniques to construct on a silicon wafer a synthetic capillary bed with 2.5- to 4-micron (mu)-wide channels. Establishment of a fluid pressure gradient allowed us to observe simultaneously using optical microscopy hundreds of cells flowing through the bed at physiological speeds. We find a large distribution of mobilities among red cells flowing through the structure; smaller channels provide a greater impedance to flow than larger ones, indicating that kinetic drag variations provide the origin of the distribution. The mobility of a particular cell is not correlated with the cell diameter but appears to be inversely correlated with intracellular calcium concentration of the cell, as determined by fluorescence of the calcium-binding dye fluo-3 AM. Also, we are able to use the parallel processing nature of our arrays to observe isolated events where the rigidity of the red cell seems to change suddenly over several orders of magnitude as it blocks a channel in the array.
机译:我们介绍了使用微细加工技术在硅晶片上构建具有2.5至4微米(μ)宽通道的合成毛细管床。流体压力梯度的建立使我们能够使用光学显微镜同时观察以生理速度流过该床的数百个细胞。我们发现流动通过结构的红细胞之间的迁移率分布很大。较小的通道比较大的通道提供更大的流动阻力,这表明动态阻力变化提供了分布的起源。特定细胞的迁移率与细胞直径无关,但似乎与细胞的细胞内钙浓度成反比,这是由钙结合染料fluo-3 AM的荧光确定的。同样,我们能够利用阵列的并行处理特性来观察孤立的事件,在这些事件中,红细胞的刚度似乎会在几个数量级上突然变化,因为它阻塞了阵列中的通道。

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