Ding Shukai, Anton Nicolas, Vandamme Thierry F, Serra Christophe A
a Institut Charles Sadron (ICS) - UPR 22 CNRS , Strasbourg , France.
b Laboratoire de Conception et Application de Molécules Bioactives (CAMB) - UMR 7199 CNRS , Equipe de Pharmacie Biogalénique , Strasbourg , France.
Expert Opin Drug Deliv. 2016 Oct;13(10):1447-60. doi: 10.1080/17425247.2016.1193151. Epub 2016 Jun 3.
This review gives an overview of the different microfluidic setups used to produce either pure drug or drug-loaded polymeric nanoparticles.
We propose a description of the different fluidic principles reported in the literature, explaining their respective design and configuration in parallel with the technical challenges related to the nanoprecipitation of the polymer, in relation with the results obtained, e.g., particle size, distribution and productivity.
This review is mostly intended for a broad readership and provides key tools regarding the choice of microfluidic setups, tailored to given specifications. We discuss the specificities and geometries of the microfluidic devices intended to nanoprecipitation, advantages, drawbacks and limitations.
本综述概述了用于制备纯药物或载药聚合物纳米颗粒的不同微流控装置。
我们对文献中报道的不同流体原理进行了描述,解释了它们各自的设计和配置,同时阐述了与聚合物纳米沉淀相关的技术挑战,以及所获得的结果,如粒径、分布和生产率。
本综述主要面向广大读者,提供了针对特定规格选择微流控装置的关键工具。我们讨论了用于纳米沉淀的微流控装置的特性和几何形状、优点、缺点和局限性。