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Development of a theoretical model describing sonoporation activity of cells exposed to ultrasound in the presence of contrast agents

机译:理论模型的发展描述了在存在造影剂的情况下暴露于超声的细胞的声穿孔活性

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摘要

Sonoporation uses ultrasound, with the aid of ultrasound contrast agents (UCAs), to enhance cell permeabilization, thereby allowing delivery of therapeutic compounds noninvasively into specific target cells. The objective of this study was to determine if a computational model describing shear stress on a cell membrane due to microstreaming would successfully reflect sonoporation activity with respect to the peak rarefactional pressure. The theoretical models were compared to the sonoporation results from Chinese hamster ovary cells using Definity® at 0.9, 3.15, and 5.6 MHz and were found to accurately describe the maximum sonoporation activity, the pressure where a decrease in sonoporation activity occurs, and relative differences between maximum activity and the activity after that decrease. Therefore, the model supports the experimental findings that shear stress on cell membranes secondary to oscillating UCAs results in sonoporation.
机译:Sonoporation借助超声造影剂(UCA)使用超声来增强细胞通透性,从而允许将治疗性化合物无创地输送到特定靶细胞中。这项研究的目的是确定描述由于微流作用而在细胞膜上产生的剪切应力的计算模型是否能成功反映声波穿孔活性相对于峰值稀疏压力。使用Definity ®在0.9、3.15和5.6 MHz下,将理论模型与中国仓鼠卵巢细胞的声处理结果进行了比较,发现该模型可以准确地描述最大声处理活性,即声降低的压力。发生活动,最大活动与活动之后的相对差异减小。因此,该模型支持以下实验发现:振荡UCA后继发于细胞膜上的切应力导致声纳穿孔。

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