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Key factors that affect sonoporation efficiency in in vitro settings: the importance of standing wave in sonoporation.

机译:影响体外声处理效率的关键因素:声波在声处理中的重要性。

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摘要

Ultrasound-induced intracellular drug delivery, sonoporation, is an appealing and promising technique for next generation drug delivery system. Many types of molecules, such as plasmid DNAs, siRNAs and peptides, have been demonstrated to be delivered into the cell by ultrasound with the aid of microbubbles both in vitro and in vivo. Although there are many reports on in vitro sonoporation, the efficiency of successful sonoporation and the viabilities of cells after the procedure documented in each report vary in a wide range, and the reasons for these differences are not fully understood. In this study, we have investigated how different experimental settings would affect sonoporation efficiency and cell viabilities after the procedure. Our results show that the fashion of cell culture (e.g. in suspension or in monolayer culture) and the presence of standing wave have a great impact on the overall results. These results indicate that in vitro sonoporation settings should be carefully evaluated in each experiment. The fact that standing wave is necessary to achieve high sonoporation efficiency may be a problematic issue for clinical application of sonoporation, as it may be difficult (although not impossible) to create standing wave in a human body.
机译:超声诱导的细胞内药物递送,声穿孔是下一代药物递送系统的诱人且有前途的技术。已经证明,借助于微泡在体外和体内通过超声将许多类型的分子,例如质粒DNA,siRNA和肽,传递到细胞中。尽管有许多关于体外声穿孔的报道,但是成功声穿孔的效率和每份报告中记载的程序后细胞的活力变化范围很广,而导致这些差异的原因还没有被完全理解。在这项研究中,我们调查了不同的实验设置如何在手术后影响声纳效率和细胞活力。我们的结果表明细胞培养的方式(例如悬浮或单层培养)和驻波的存在对整体结果有很大的影响。这些结果表明,在每个实验中应仔细评估体外声穿孔设置。驻波对于实现高声波穿透效率是必需的这一事实对于声波穿透的临床应用可能是一个有问题的问题,因为在人体中可能难以(尽管并非不可能)产生驻波。

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