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Mechanical diagnosis of human erythrocytes by ultra-high speed manipulation unraveled critical time window for global cytoskeletal remodeling

机译:通过超高速操作对人类红细胞进行机械诊断揭示了总体细胞骨架重塑的关键时间窗

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摘要

Large deformability of erythrocytes in microvasculature is a prerequisite to realize smooth circulation. We develop a novel tool for the three-step “Catch-Load-Launch” manipulation of a human erythrocyte based on an ultra-high speed position control by a microfluidic “robotic pump”. Quantification of the erythrocyte shape recovery as a function of loading time uncovered the critical time window for the transition between fast and slow recoveries. The comparison with erythrocytes under depletion of adenosine triphosphate revealed that the cytoskeletal remodeling over a whole cell occurs in 3 orders of magnitude longer timescale than the local dissociation-reassociation of a single spectrin node. Finally, we modeled septic conditions by incubating erythrocytes with endotoxin, and found that the exposure to endotoxin results in a significant delay in the characteristic transition time for cytoskeletal remodeling. The high speed manipulation of erythrocytes with a robotic pump technique allows for high throughput mechanical diagnosis of blood-related diseases.
机译:在微脉管系统中,红细胞的大变形能力是实现平稳循环的前提。我们基于微流控“机器人泵”的超高速位置控制,为人类红细胞的三步“捕获-加载-启动”操纵开发了一种新颖的工具。红血球形状恢复作为加载时间的函数的量化揭示了快速恢复和慢速恢复之间过渡的关键时间窗口。与三磷酸腺苷耗竭下的红细胞的比较表明,整个细胞的细胞骨架重塑发生的时间尺度比单个血影蛋白节点的局部解离-重缔合的时间尺度长3个数量级。最后,我们通过将红细胞与内毒素一起培养对脓毒症进行建模,发现内毒素的暴露会导致细胞骨架重塑特征性转变时间的显着延迟。利用自动泵技术对红细胞进行高速处理,可以对与血液有关的疾病进行高通量的机械诊断。

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