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采用一步超声法快速合成低多分散性的脂质-聚合物杂化纳米粒。

Quick synthesis of lipid-polymer hybrid nanoparticles with low polydispersity using a single-step sonication method.

机构信息

Department of Nanoengineering and Moores Cancer Center, University of California-San Diego, La Jolla, California 92093, United States.

出版信息

Langmuir. 2010 Nov 16;26(22):16958-62. doi: 10.1021/la103576a. Epub 2010 Oct 20.

Abstract

Lipid-polymer hybrid nanoparticle, consisting of a hydrophobic polymeric core and a lipid monolayer shell, represents a new and promising drug delivery platform that has shown controllable particle size and surface functionality, high drug loading yield, sustained drug release profile, and excellent in vitro and in vivo stability. These lipid monolayer-coated polymeric nanoparticles are typically fabricated through a modified nanoprecipitation method, which involves sample heating, vortexing, and solvent evaporation. Herein we report a new and fast method to synthesize lipid-polymer hybrid nanoparticles with controllable and nearly uniform particle size. Using a bath sonication approach, we demonstrate that the whole hybrid nanoparticle synthesis process can be completed in about 5 min compared with a few hours for previous synthesis approaches. The size and polydispersity of the resulting nanoparticles can be readily controlled by tuning the relative concentrations of individual building components. Colloidal stability tests of the synthesized hybrid nanoparticles in PBS buffer and serum show no signs of aggregation over a period of 5 days. The present method improves the production rate of the hybrid nanoparticles by near 20-fold while not compromising the physicochemical properties of the particles. This work may facilitate the bench-to-bedside translation of lipid-polymer hybrid nanoparticles as a robust drug nanocarrier by allowing for fabricating a large amount of these nanoparticles at high production rate.

摘要

脂质-聚合物杂化纳米粒子由疏水性聚合物核和脂质单层壳组成,代表了一种新的有前途的药物传递平台,具有可控的粒径和表面功能、高载药量、持续的药物释放曲线以及出色的体外和体内稳定性。这些脂质单层包覆的聚合物纳米粒子通常通过改良的纳米沉淀法制备,该方法涉及样品加热、涡旋和溶剂蒸发。在此,我们报告了一种新的快速方法来合成具有可控且几乎均匀粒径的脂质-聚合物杂化纳米粒子。通过水浴超声法,我们证明与以前的合成方法相比,整个杂化纳米粒子的合成过程可以在大约 5 分钟内完成。通过调整各个构建组件的相对浓度,可以轻松控制所得纳米粒子的尺寸和多分散性。在 PBS 缓冲液和血清中对合成的杂化纳米粒子进行胶体稳定性测试,在 5 天内没有观察到聚集的迹象。与以前的方法相比,该方法将杂化纳米粒子的产率提高了近 20 倍,而不会影响颗粒的物理化学性质。这项工作可能会促进脂质-聚合物杂化纳米粒子作为一种稳健的药物纳米载体从实验室到临床的转化,因为它可以以高生产速率制备大量这些纳米粒子。

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