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首页> 外文期刊>Biophysical Journal >Sonoporation by single-shot pulsed ultrasound with microbubbles adjacent to cells.
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Sonoporation by single-shot pulsed ultrasound with microbubbles adjacent to cells.

机译:通过单次脉冲超声对与细胞相邻的微泡进行声波穿透。

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摘要

In this article, membrane perforation of endothelial cells with attached microbubbles caused by exposure to single-shot short pulsed ultrasound is described, and the mechanisms of membrane damage and repair are discussed. Real-time optical observations of cell-bubble interaction during sonoporation and successive scanning electron microscope observations of the membrane damage with knowledge of bubble locations revealed production of micron-sized membrane perforations at the bubble locations. High-speed observations of the microbubbles visualized production of liquid microjets during nonuniform contraction of bubbles, indicating that the jets are responsible for cell membrane damage. The resealing process of sonoporated cells visualized using fluorescence microscopy suggested that Ca2+-independent and Ca2+-triggered resealing mechanisms were involved in the rapid resealing process. In an experimental condition in which almost all cells have one adjacent bubble, 25.4% of the cells were damaged by exposure to single-shot pulsed ultrasound, and 15.9% (approximately 60% of the damaged cells) were resealed within 5 s. These results demonstrate that single-shot pulsed ultrasound is sufficient to achieve sonoporation when microbubbles are attached to cells.
机译:在本文中,描述了由于暴露于单次短脉冲超声引起的带有附着的微泡的内皮细胞的膜穿孔,并讨论了膜损伤和修复的机制。声光作用期间细胞气泡相互作用的实时光学观察和对膜损伤的连续扫描电子显微镜观察以及对气泡位置的了解揭示了在气泡位置处产生了微米级的膜穿孔。对微气泡的高速观察使气泡非均匀收缩过程中液体微喷射的产生可视化,表明这些喷射是造成细胞膜损伤的原因。使用荧光显微镜观察的声穿孔细胞的重新密封过程表明,快速重新密封过程涉及独立于Ca2 +和触发了Ca2 +的重新密封机制。在几乎所有细胞都具有一个相邻气泡的实验条件下,暴露于单次脉冲超声中损坏了25.4%的细胞,并在5 s内重新密封了15.9%(大约60%的受损细胞)。这些结果表明,当微气泡附着在细胞上时,单脉冲脉冲超声足以实现声穿孔。

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