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高强度聚焦超声使包裹纳米脂质体的药物可控释放的体外可行性研究。

An in vitro feasibility study of controlled drug release from encapsulated nanometer liposomes using high intensity focused ultrasound.

机构信息

Department of Physics and The Materials Science Program, The University of Vermont, Burlington, VT 05405, USA.

出版信息

Ultrasonics. 2010 Aug;50(8):744-9. doi: 10.1016/j.ultras.2010.02.009. Epub 2010 Mar 1.

Abstract

A liposome with a diameter ranging from 150 to 200 nm has been considered to be one of the optimal vehicles for targeted drug delivery in vivo since it is able to encapsulate drug and also circulate in the blood stream stably. Its small size, however, makes controlled release of its encapsulated content difficult. A feasibility study for applications of high intensity focused ultrasound (HIFU) of the mega-hertz frequency to induce controlled release of its content was carried out. This study, using the dynamic light scattering and transmission electron microscopic observation, demonstrated 21.2% of encapsulated fluorescent materials (FITC) could be released from liposomes with an average diameter of 210 nm when exposed to continuous (cw) ultrasound at 1.1MHz (I(SPTA)=900 W/cm(2)) for 10s and the percentage release efficiency can reach to 70% after 60s irradiation. This result also reveals that rupture of relatively large liposomes (>100 nm) and generation of pore-like defects in the membrane of small liposomes (<100 nm) due to HIFU excitation might be the main causes of the release; the inertial cavitation took place during the irradiation. The controlled drug release from liposomes by HIFU may be proven to be a potential useful modality for clinical applications.

摘要

直径在 150 至 200nm 之间的脂质体被认为是体内靶向药物输送的最佳载体之一,因为它能够包裹药物并在血液中稳定循环。然而,其较小的尺寸使得控制其包裹内容物的释放变得困难。已经进行了一项应用兆赫兹高强度聚焦超声(HIFU)诱导其内容物可控释放的可行性研究。这项研究使用动态光散射和透射电子显微镜观察,表明当将平均直径为 210nm 的脂质体暴露于 1.1MHz 的连续(cw)超声(I(SPTA)=900W/cm2)10s 时,有 21.2%的包裹荧光材料(FITC)可以被释放出来,并且在 60s 照射后释放效率可以达到 70%。该结果还表明,由于 HIFU 的激发,相对较大的脂质体(>100nm)的破裂和小脂质体(<100nm)膜上孔状缺陷的产生可能是释放的主要原因;在照射过程中发生了惯性空化。HIFU 从脂质体中控制药物释放可能被证明是一种有临床应用潜力的有效方式。

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