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Microfluidic emulsification and sorting assisted preparation of monodisperse chitosan microparticles

机译:微流乳化和分选辅助制备单分散壳聚糖微粒

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摘要

A microfluidic device for generating monodisperse chitosan microparticles and separating the desired particle from smaller particles created as a byproduct of this process was described. The purpose of this study is to separate the satellite droplets from their parent droplets to enhance the size uniformity of the desired microparticles. A double T-junction design was first employed to control the emulsification and the separation, respectively. The results show that the size and gap of the parent droplets are tunable by adjusting the water and oil flow rates. A separation ratio of the satellite droplets of more than 99% was observed. The proposed microfluidic chip is capable of generating relatively uniform micro-droplets with well controllable diameter, and it has the added advantages of being a simple, low cost, and high throughput process. In the future this apparatus can be used to fabricate size-controlled monodisperse microparticles to act as drug carriers for biotechnology and biomedicine applications.
机译:描述了一种微流体装置,其用于产生单分散的壳聚糖微粒并将所需的微粒与作为该方法的副产物而产生的较小的微粒分离。这项研究的目的是将卫星微滴与其母滴分离,以增强所需微粒的尺寸均匀性。首先采用双T型接头设计分别控制乳化和分离。结果表明,通过调节水和油的流速可以调节母滴的大小和间隙。观察到卫星液滴的分离率大于99%。所提出的微流体芯片能够产生具有良好可控制的直径的相对均匀的微滴,并且还具有简单,低成本和高通量过程的附加优点。将来,该设备可用于制造尺寸受控的单分散微粒,以用作生物技术和生物医学应用的药物载体。

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