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用于脂质体生产的微流控芯片中pH指示剂对扩散过程的分析

Analysis of the Diffusion Process by pH Indicator in Microfluidic Chips for Liposome Production.

作者信息

Bottaro Elisabetta, Mosayyebi Ali, Carugo Dario, Nastruzzi Claudio

机构信息

Bioengineering Science Group, Faculty of Engineering and the Environment, University of Southampton, Southampton SO17 1BJ, UK.

Department of Life Science and Biotechnology, University of Ferrara, Via Fossato di Mortara 17, 44121 Ferrara, Italy.

出版信息

Micromachines (Basel). 2017 Jul 1;8(7):209. doi: 10.3390/mi8070209.

Abstract

In recent years, the development of nano- and micro-particles has attracted considerable interest from researchers and enterprises, because of the potential utility of such particles as drug delivery vehicles. Amongst the different techniques employed for the production of nanoparticles, microfluidic-based methods have proven to be the most effective for controlling particle size and dispersity, and for achieving high encapsulation efficiency of bioactive compounds. In this study, we specifically focus on the production of liposomes, spherical vesicles formed by a lipid bilayer encapsulating an aqueous core. The formation of liposomes in microfluidic devices is often governed by diffusive mass transfer of chemical species at the liquid interface between a solvent (i.e., alcohol) and a non-solvent (i.e., water). In this work, we developed a new approach for the analysis of mixing processes within microfluidic devices. The method relies on the use of a pH indicator, and we demonstrate its utility by characterizing the transfer of ethanol and water within two different microfluidic architectures. Our approach represents an effective route to experimentally characterize diffusion and advection processes governing the formation of vesicular/micellar systems in microfluidics, and can also be employed to validate the results of numerical modelling.

摘要

近年来,纳米和微粒的发展引起了研究人员和企业的极大兴趣,因为这类颗粒作为药物递送载体具有潜在用途。在用于生产纳米颗粒的不同技术中,基于微流控的方法已被证明是控制颗粒大小和分散性以及实现生物活性化合物高包封率最有效的方法。在本研究中,我们特别关注脂质体的生产,脂质体是由包裹水相核心的脂质双层形成的球形囊泡。微流控装置中脂质体的形成通常受化学物质在溶剂(即醇)和非溶剂(即水)之间的液体界面处的扩散传质控制。在这项工作中,我们开发了一种分析微流控装置内混合过程的新方法。该方法依赖于使用pH指示剂,并且我们通过表征乙醇和水在两种不同微流控结构中的转移来证明其效用。我们的方法是一种有效途径,可通过实验表征控制微流控中囊泡/胶束系统形成的扩散和平流过程,并且还可用于验证数值模拟结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0ae/6189829/733df92b040d/micromachines-08-00209-g001.jpg

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