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阐明负载腺相关病毒的微泡声孔作用的机制。

Elucidating the mechanisms behind sonoporation with adeno-associated virus-loaded microbubbles.

机构信息

Ghent Research Group on Nanomedicines, Lab of General Biochemistry and Physical Pharmacy, Faculty of Pharmaceutical Sciences, Ghent University, Harelbekestraat 72, 9000 Gent, Belgium.

出版信息

Mol Pharm. 2011 Dec 5;8(6):2244-51. doi: 10.1021/mp200112y. Epub 2011 Nov 4.

Abstract

Microbubbles are Food and Drug Administration (FDA) approved contrast agents for ultrasound imaging. It has been reported that applying ultrasound on drug-loaded microbubbles facilitates drug uptake by cells, due to so-named sonoporation. However, the biophysics behind sonoporation are not fully understood. It is believed that sonoporation results in a "direct" delivery of drugs in the cytoplasm of cells, though it has been suggested as well that sonoporation facilitates endocytosis which would improve the internalization of drugs by cells. To get a better understanding of sonoporation, this study reports on the ultrasound assisted delivery of adeno-associated virus (AAV) loaded on the surface of microbubbles. AAVs rely on endocytosis for efficient transduction of cells and are, consequently, an elegant tool to evaluate whether endocytosis is involved in ultrasound-induced sonoporation. Applying ultrasound on AAV-loaded microbubbles clearly improved the internalization of AAVs by cells, though transduction of the cells did not occur, indicating that by sonoporation substances become directly delivered in the cytosol of cells.

摘要

微泡是美国食品和药物管理局 (FDA) 批准的超声成像对比剂。据报道,应用超声于载药微泡上有助于药物被细胞摄取,这归因于所谓的声孔效应。然而,声孔效应的生物物理学机制尚未完全阐明。人们认为声孔效应导致药物直接递送至细胞的细胞质中,尽管也有人认为声孔效应促进了内吞作用,从而提高了细胞对药物的内化。为了更好地理解声孔效应,本研究报告了在超声作用下,表面载有腺相关病毒 (AAV) 的微泡的递药情况。AAV 依赖于内吞作用来有效地转导细胞,因此是评估内吞作用是否参与超声诱导的声孔效应的一种优雅工具。在载有 AAV 的微泡上施加超声明显增加了细胞对 AAV 的内化,尽管细胞未发生转导,表明通过声孔效应,物质直接递送至细胞的细胞质中。

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