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首页> 外文期刊>The Journal of the Acoustical Society of America >Theoretical investigation of shear stress generated by a contrast microbubble on the cell membrane as a mechanism for sonoporation
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Theoretical investigation of shear stress generated by a contrast microbubble on the cell membrane as a mechanism for sonoporation

机译:超声造影在细胞膜上产生的切应力作为声穿孔机制的理论研究

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摘要

There are numerous experimental investigations on sonoporation, while the theoretical background of this phenomenon still is in its infancy. One of the suggested mechanisms of sonoporation is linked to shear stress exerted on the cell membrane by acoustic microstreaming generated by a contrast microbubble pulsating nearby a cell. Currently, the existing model of this effect is based on an equation that has been derived for a free hemispherical bubble resting on a rigid plane. Such a model is not adequate for a contrast microbubble. In this paper, an improved theory is suggested that assumes an encapsulated bubble to be detached from the cell membrane. The improved model allows one to calculate the shear stress distribution on the cell membrane at different values of the acoustic parameters. The second problem considered is how to apply the model for pairwise bubble-cell interactions to bubble-cell solutions, which one has to deal with in experiments. An approach is proposed to evaluate the number of sonoporated cells in a bubble-cell solution. It is shown that the reaction of a bubble-cell solution to the variation of the acoustic parameters can be different from what is predicted by the analysis of interactions between single bubbles and cells.
机译:关于声穿孔的实验研究很多,而这种现象的理论背景仍处于起步阶段。声纳穿孔的一种建议机制与通过超声微泡在细胞附近脉动而产生的声音微流作用于施加在细胞膜上的剪切应力有关。当前,这种效果的现有模型基于已针对放置在刚性平面上的自由半球形气泡得出的方程。这样的模型不足以用于对比微泡。在本文中,提出了一种改进的理论,该理论假设封装的气泡将从细胞膜上脱离。改进的模型可以计算出在声学参数不同的情况下细胞膜上的切应力分布。考虑的第二个问题是如何将成对气泡-细胞相互作用模型应用于气泡-细胞溶液,这是实验中必须解决的问题。提出了一种评估气泡细胞溶液中声穿孔细胞数量的方法。结果表明,气泡细胞溶液对声学参数变化的反应可能与通过分析单个气泡与细胞之间的相互作用所预测的反应不同。

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