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An Aluminum Microfluidic Chip Fabrication Using a Convenient Micromilling Process for Fluorescent Poly(dl-lactide-co-glycolide) Microparticle Generation

机译:铝微流控芯片制造使用方便的微铣削工艺生产荧光聚(dl-丙交酯-共-乙交酯)微粒

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This study presents the development of a robust aluminum-based microfluidic chip fabricated by conventional mechanical micromachining (computer numerical control-based micro-milling process). It applied the aluminum-based microfluidic chip to form poly(lactic-co-glycolic acid) (PLGA) microparticles encapsulating CdSe/ZnS quantum dots (QDs). A cross-flow design and flow-focusing system were employed to control the oil-in-water (o/w) emulsification to ensure the generation of uniformly-sized droplets. The size of the droplets could be tuned by adjusting the flow rates of the water and oil phases. The proposed microfluidic platform is easy to fabricate, set up, organize as well as program, and is valuable for further applications under harsh reaction conditions (high temperature and/or strong organic solvent systems). The proposed method has the advantages of actively controlling the droplet diameter, with a narrow size distribution, good sphericity, as well as being a simple process with a high throughput. In addition to the fluorescent PLGA microparticles in this study, this approach can also be applied to many applications in the pharmaceutical and biomedical area.
机译:本研究介绍了通过常规机械微加工(基于计算机数控的微铣削工艺)制造的坚固的铝基微流体芯片的开发。它应用了铝基微流控芯片,形成了包裹CdSe / ZnS量子点(QD)的聚乳酸-乙醇酸共聚物(PLGA)微粒。采用错流设计和流聚焦系统来控制水包油(o / w)乳化,以确保产生大小均一的液滴。可以通过调节水相和油相的流速来调节液滴的大小。拟议的微流体平台易于制造,设置,组织和编程,对于在苛刻的反应条件(高温和/或强有机溶剂系统)下的进一步应用非常有价值。所提出的方法具有以下优点:可以主动地控制液滴直径,具有窄的尺寸分布,良好的球形度以及具有高产量的简单工艺。除了本研究中的荧光PLGA微粒外,该方法还可以应用于制药和生物医学领域的许多应用。

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