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由脉冲近红外光触发的脂质体连接金纳米颗粒用于快速释放脂质体内容物并逃离内体

Liposome-Tethered Gold Nanoparticles Triggered by Pulsed NIR Light for Rapid Liposome Contents Release and Endosome Escape.

作者信息

Veeren Anisha, Ogunyankin Maria O, Shin Jeong Eun, Zasadzinski Joseph A

机构信息

Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, MN 55455, USA.

Bristol Myers Squibb, 1 Squibb Drive, New Brunswick, NJ 08902, USA.

出版信息

Pharmaceutics. 2022 Mar 25;14(4):701. doi: 10.3390/pharmaceutics14040701.

Abstract

Remote triggering of contents release with micron spatial and sub-second temporal resolution has been a long-time goal of medical and technical applications of liposomes. Liposomes can sequester a variety of bioactive water-soluble ions, ligands and enzymes, and oligonucleotides. The bilayer that separates the liposome interior from the exterior solution provides a physical barrier to contents release and degradation. Tethering plasmon-resonant, hollow gold nanoshells to the liposomes, or growing gold nanoparticles directly on the liposome exterior, allows liposome contents to be released by nanosecond or shorter pulses of near-infrared light (NIR). Gold nanoshells or nanoparticles strongly adsorb NIR light; cells, tissues, and physiological media are transparent to NIR, allowing penetration depths of millimeters to centimeters. Nano to picosecond pulses of NIR light rapidly heat the gold nanoshells, inducing the formation of vapor nanobubbles, similar to cavitation bubbles. The collapse of the nanobubbles generates mechanical forces that rupture bilayer membranes to rapidly release liposome contents at the preferred location and time. Here, we review the syntheses, characterization, and applications of liposomes coupled to plasmon-resonant gold nanostructures for delivering a variety of biologically important contents in vitro and in vivo with sub-micron spatial control and sub-second temporal control.

摘要

以微米级空间分辨率和亚秒级时间分辨率远程触发内容物释放,一直是脂质体在医学和技术应用方面的长期目标。脂质体可以包封多种生物活性水溶性离子、配体、酶和寡核苷酸。将脂质体内部与外部溶液分隔开的双层膜为内容物的释放和降解提供了物理屏障。将等离子体共振空心金纳米壳连接到脂质体上,或者直接在脂质体外部生长金纳米颗粒,可使脂质体内容物通过纳秒级或更短的近红外光(NIR)脉冲释放。金纳米壳或纳米颗粒强烈吸收近红外光;细胞、组织和生理介质对近红外光是透明的,允许近红外光穿透毫米到厘米的深度。纳秒到皮秒级的近红外光脉冲迅速加热金纳米壳,诱导形成蒸汽纳米气泡,类似于空化气泡。纳米气泡的坍塌产生机械力,使双层膜破裂,从而在理想的位置和时间快速释放脂质体内容物。在此,我们综述了与等离子体共振金纳米结构偶联的脂质体的合成、表征及其应用,这些脂质体能够在体外和体内以亚微米空间控制和亚秒时间控制递送多种具有生物学重要性的内容物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4554/9025641/d8cc81396deb/pharmaceutics-14-00701-g001.jpg

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