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Multiplexed Fluid Flow Device to Study Cellular Response to Tunable Shear Stress Gradients

机译:用于研究细胞对可调剪切应力梯度的响应的多路流体流动装置

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摘要

Endothelial cells (ECs) line the interior of blood and lymphatic vessels and experience spatially varying wall shear stress (WSS) as an intrinsic part of their physiological function. How ECs, and mammalian cells generally, sense spatially varying WSS remains poorly understood, due in part to a lack of convenient tools for exposing cells to spatially varying flow patterns. We built a multiplexed device, termed a 6-well impinging flow chamber, that imparts controlled WSS gradients to a six-well tissue culture plate. Using this device, we investigated the migratory response of lymphatic microvascular ECs, umbilical vein ECs, primary fibroblasts, and epithelial cells to WSS gradients on hours to days timescales. We observed that lymphatic microvascular ECs migrate upstream, against the direction of flow, a response that was unique among all the cells types investigated here. Time-lapse, live cell imaging revealed that the microtubule organizing center relocated to the upstream side of the nucleus in response to the applied WSS gradient. To further demonstrate the utility of our device, we screened for the involvement of canonical signaling pathways in mediating this upstream migratory response. These data highlight the importance of WSS magnitude and WSS spatial gradients in dictating the cellular response to fluid flow.
机译:内皮细胞(EC)排列在血液和淋巴管的内部,并经历空间变化的壁切应力(WSS)作为其生理功能的内在部分。 ECs和一般哺乳动物细胞如何感觉到空间变化的WSS仍然知之甚少,部分原因是缺乏方便的工具来使细胞暴露于空间变化的流动模式。我们构建了一个多路复用设备,称为6孔撞击流室,可将受控的WSS梯度传递给6孔组织培养板。使用该设备,我们在数小时至数天的时间尺度上研究了淋巴微血管EC,脐静脉EC,原代成纤维细胞和上皮细胞对WSS梯度的迁移反应。我们观察到,淋巴微血管内皮细胞向逆流方向向上游迁移,这种反应在这里研究的所有细胞类型中都是独特的。随时间流逝的活细胞成像显示,微管组织中心响应于所施加的WSS梯度而重新定位于细胞核的上游侧。为了进一步证明我们设备的实用性,我们筛选了规范信号通路在介导这种上游迁移反应中的作用。这些数据突出了WSS幅度和WSS空间梯度在决定细胞对流体流动的响应中的重要性。

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