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超声法从纳米聚合物泡囊中释放内容物。

Ultrasonically induced release from nanosized polymer vesicles.

机构信息

Department of Chemical and Biomolecular Engineering, University of Pennsylvania, 210 S 33rd Street, Philadelphia, Pennsylvania 19104, USA.

出版信息

Macromol Biosci. 2010 May 14;10(5):546-54. doi: 10.1002/mabi.201000081.

Abstract

Vesicles made from synthetic diblock copolymers, polymersomes, have great potential for targeted imaging and drug delivery. Ultrasound is gaining attention as a therapeutic tool in addition to its use in diagnostics. We report on the response of nanoscale vesicles made from PEO-b-PBD copolymers to ultrasound at 20 kHz. Leakage of a fluorescent dye from vesicle core was measured to study the permeation. Ultrasound causes significant leakage from the core above threshold intensity, suggesting that leakage is governed by acoustic cavitation. Size measurements and direct visualization of vesicles show that ultrasound does not completely rupture them into fragments but causes transient poration. The extent of leakage inversely depends on membrane thickness and directly depends on sonication time and intensity.

摘要

由合成两亲嵌段共聚物制成的囊泡(聚合物囊泡)在靶向成像和药物传递方面具有巨大的潜力。除了在诊断中的应用外,超声作为一种治疗工具也越来越受到关注。我们报告了由 PEO-b-PBD 共聚物制成的纳米级囊泡对 20 kHz 超声的响应。通过测量荧光染料从囊泡核心的泄漏来研究渗透情况。超声在超过阈值强度时会导致核心内的显著泄漏,这表明泄漏是由声空化控制的。囊泡的尺寸测量和直接可视化显示,超声不会将它们完全破裂成碎片,而是导致瞬时穿孔。泄漏的程度与膜的厚度成反比,与声处理时间和强度成正比。

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