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硅基微流控流量聚焦装置用于生产粒径可控的基于 PLGA 的载药微球。

Silicon microfluidic flow focusing devices for the production of size-controlled PLGA based drug loaded microparticles.

机构信息

Pharmacodelivery Group, School of Pharmacy, University College Cork, Ireland.

Tyndall National Institute, University College Cork, Ireland.

出版信息

Int J Pharm. 2014 Jun 5;467(1-2):60-9. doi: 10.1016/j.ijpharm.2014.03.051. Epub 2014 Mar 28.

Abstract

The increasing realisation of the impact of size and surface properties on the bio-distribution of drug loaded colloidal particles has driven the application of micro fabrication technologies for the precise engineering of drug loaded microparticles. This paper demonstrates an alternative approach for producing size controlled drug loaded PLGA based microparticles using silicon Microfluidic Flow Focusing Devices (MFFDs). Based on the precise geometry and dimensions of the flow focusing channel, microparticle size was successfully optimised by modifying the polymer type, disperse phase (Qd) flow rate, and continuous phase (Qc) flow rate. The microparticles produced ranged in sizes from 5 to 50 μm and were highly monodisperse (coefficient of variation <5%). A comparison of Ciclosporin (CsA) loaded PLGA microparticles produced by MFFDs vs conventional production techniques was also performed. MFFDs produced microparticles with a narrower size distribution profile, relative to the conventional approaches. In-vitro release kinetics of CsA was found to be influenced by the production technique, with the MFFD approach demonstrating the slowest rate of release over 7 days (4.99 ± 0.26%). Finally, MFFDs were utilised to produce pegylated microparticles using the block co-polymer, PEG-PLGA. In contrast to the smooth microparticles produced using PLGA, PEG-PLGA microparticles displayed a highly porous surface morphology and rapid CsA release, with 85 ± 6.68% CsA released after 24h. The findings from this study demonstrate the utility of silicon MFFDs for the precise control of size and surface morphology of PLGA based microparticles with potential drug delivery applications.

摘要

越来越多的人认识到颗粒的大小和表面性质对载药胶体颗粒生物分布的影响,这推动了微制造技术在载药微球精确工程中的应用。本文展示了一种使用硅微流控流聚焦装置(MFFD)生产载药 PLGA 基微球的替代方法。基于流聚焦通道的精确几何形状和尺寸,可以通过改变聚合物类型、分散相(Qd)流速和连续相(Qc)流速来成功优化微球粒径。所制备的微球粒径范围为 5 至 50μm,且具有高度单分散性(变异系数 <5%)。还对 MFFD 与传统生产技术生产的环孢素(CsA)载 PLGA 微球进行了比较。与传统方法相比,MFFD 生产的微球具有更窄的粒径分布谱。CsA 的体外释放动力学受生产技术的影响,MFFD 方法在 7 天内表现出最慢的释放速率(4.99 ± 0.26%)。最后,使用嵌段共聚物 PEG-PLGA 通过 MFFD 生产了聚乙二醇化微球。与使用 PLGA 制备的光滑微球相比,PEG-PLGA 微球显示出高度多孔的表面形态和快速的 CsA 释放,24h 后释放了 85 ± 6.68%的 CsA。本研究的结果表明,硅 MFFD 可用于精确控制基于 PLGA 的微球的大小和表面形态,具有潜在的药物输送应用。

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