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Dynamics of Microtubules Disruption and Rearrangement in the Sonoporated Human Umbilical Vein Endothelial Cells

机译:微管状的动态混乱和排列在超孔的人脐静脉内皮细胞中的破坏和重排

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The aim of this study was to investigate the response of microtubule cytoskeleton of cells to the perforated membrane by acoustic cavitation. The changes of microtubule at subcellular level were observed in real time using an experimental platform of 1.5 MHz ultrasound exposure (13.33 μs duration and 0.70 MPa peak negative pressure). HUVEC cells exhibited different degrees of cell membrane perforation under acoustic cavitation. Our results show that: 1) After acoustic perforation, tubulin simultaneously depolymerizes with cell membrane rupture. 2) In the case of small membrane damage, tubulin could be rapidly repaired with cell membrane repair. 3) In the case of large membrane damage, tubulin could be repaired far behind the membrane repair. 4) After chelating extracellular calcium ions, the cell membrane and tubulin could not be repaired. These results provide clues for exploring the mechanism of cell membrane repair by ultrasound cavitation.
机译:本研究的目的是通过声学探讨细胞微管细胞骨架对穿孔膜的响应。使用1.5MHz超声暴露(13.33μs持续时间和0.70MPa峰值负压)实验平台实时观察亚细胞水平下微管状的变化。 Huvec细胞在声学空气下表现出不同程度的细胞膜穿孔。我们的研究结果表明:1)声穿孔后,管蛋白同时用细胞膜破裂解聚。 2)在小膜损伤的情况下,通过细胞膜修复可以快速修复微管蛋白。 3)在大膜损伤的情况下,可以在膜修复后面修复微管蛋白。 4)螯合细胞外钙离子后,不能修复细胞膜和微管蛋白。这些结果提供了用于通过超声空化探索细胞膜修复机理的线索。

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