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微流控技术:纳米医学开发与生产的变革性工具。

Microfluidics: a transformational tool for nanomedicine development and production.

作者信息

Garg Shyam, Heuck Gesine, Ip Shell, Ramsay Euan

机构信息

a Precision NanoSystems Inc , Vancouver , BC , Canada.

出版信息

J Drug Target. 2016 Nov;24(9):821-835. doi: 10.1080/1061186X.2016.1198354. Epub 2016 Aug 5.

Abstract

Microfluidic devices are mircoscale fluidic circuits used to manipulate liquids at the nanoliter scale. The ability to control the mixing of fluids and the continuous nature of the process make it apt for solvent/antisolvent precipitation of drug-delivery nanoparticles. This review describes the use of numerous microfluidic designs for the formulation and production of lipid nanoparticles, liposomes and polymer nanoparticles to encapsulate and deliver small molecule or genetic payloads. The advantages of microfluidics are illustrated through examples from literature comparing conventional processes such as beaker and T-tube mixing to microfluidic approaches. Particular emphasis is placed on examples of microfluidic nanoparticle formulations that have been tested in vitro and in vivo. Fine control of process parameters afforded by microfluidics, allows unprecedented optimization of nanoparticle quality and encapsulation efficiency. Automation improves the reproducibility and optimization of formulations. Furthermore, the continuous nature of the microfluidic process is inherently scalable, allowing optimization at low volumes, which is advantageous with scarce or costly materials, as well as scale-up through process parallelization. Given these advantages, microfluidics is poised to become the new paradigm for nanomedicine formulation and production.

摘要

微流控装置是用于在纳升尺度上操控液体的微观尺度流体回路。控制流体混合的能力以及该过程的连续性使其适用于药物递送纳米颗粒的溶剂/反溶剂沉淀法。本综述描述了众多微流控设计在脂质纳米颗粒、脂质体和聚合物纳米颗粒的配方制定及生产中的应用,这些纳米颗粒用于封装和递送小分子或基因载荷。通过文献中的实例说明了微流控技术的优势,这些实例将烧杯和T型管混合等传统工艺与微流控方法进行了比较。特别强调了已在体外和体内进行测试的微流控纳米颗粒配方实例。微流控技术对工艺参数的精细控制使得纳米颗粒质量和封装效率得到了前所未有的优化。自动化提高了配方的可重复性和优化程度。此外,微流控过程的连续性本质上具有可扩展性,允许在低体积下进行优化,这对于稀缺或昂贵的材料是有利的,并且可以通过工艺并行化进行放大。鉴于这些优势,微流控技术有望成为纳米医学配方制定和生产的新范式。

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