首页> 外文会议>ASME summer bioengineering conference;SBC2008 >EFFECT OF CYTOSKELETAL STRUCTURE AND MECHANICS ON EPITHELIAL CELL ADHESION DURING AIRWAY REOPENING
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EFFECT OF CYTOSKELETAL STRUCTURE AND MECHANICS ON EPITHELIAL CELL ADHESION DURING AIRWAY REOPENING

机译:气道重新开放过程中细胞骨架结构和机制对上皮细胞粘附的影响

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In this study, we showed that actin depolymerization by latrunculin treatment improves cell adhesion during airway reopening. This effect is likely due to viscous damping and reduced force transmission through the cell to focal adhesion sites. Actin stabilization by jasplakinolidc treatment also improves cell adhesion, most likely due to strengthening of cell-substrate attachment at focal adhesion sites. While these treatments are toxins, we also showed that the clinically relevant drug simvastatin can provide similar protective effects on cell adhesion and viability during airway reopening. We are currently investigating the effectiveness of other clinically relevant drugs with various effects on cell mechanics. We are also investigating the effects of these treatments on the inflammatory response to microbubble flow.
机译:在这项研究中,我们表明,通过拉曲古林处理的肌动蛋白解聚作用可改善气道重新开放过程中的细胞粘附。这种作用可能是由于粘性阻尼和通过细胞传递至粘着部位的力降低所致。通过jasplakinolidc处理进行的肌动蛋白稳定作用还可以改善细胞粘附,这很可能是由于粘着部位处的细胞底物附着增强所致。尽管这些治疗是毒素,但我们还表明,临床相关药物辛伐他汀可以在气道重新开放期间对细胞黏附和生存能力提供类似的保护作用。我们目前正在研究对细胞力学有各种影响的其他临床相关药物的有效性。我们也正在研究这些治疗对微泡流动的炎症反应的影响。

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