Fabrication of Biodegradable Microcapsules Utilizing 3D, Surface Modified PDMS Microfluidic Devices

C. Liao, Y. Su
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Abstract

We have successfully demonstrated the fabrication of biodegradable and magnetic microcapsules utilizing PDMS double emulsification devices. Specially designed 3D microfluidic channels with surface modified by a self-aligned photo-grafting process are employed to shape immiscible fluids into monodisperse W/O/W emulsions. By varying the outer and inner fluid flow-rates, the overall and core sizes of the resulting double emulsions can be adjusted accordingly. Biodegradable materials and surface-treated ¿-Fe2O3 nanoparticles are dispersed uniformly in the middle organic phase, and solidified into magnetic microcapsules once the solvent is extracted. In the prototype demonstration, microcapsules made up of poly(L-lactic acid), trilaurin and phosphocholine (DOPC) are successfully fabricated. As such, the proposed PDMS micro-devices could potentially serve as versatile encapsulation tools, which are desired for a variety of biological and pharmaceutical applications.
利用三维、表面改性PDMS微流控装置制备可生物降解微胶囊
我们成功地演示了利用PDMS双乳化装置制备可生物降解的磁性微胶囊。采用特殊设计的三维微流体通道,表面经过自对准光接枝工艺修饰,将不混相流体塑造成单分散的W/O/W乳液。通过改变外部和内部流体的流速,可以相应地调整所得到的双乳液的总体尺寸和核心尺寸。可生物降解材料和表面处理过的¿-Fe2O3纳米颗粒均匀地分散在中间有机相中,一旦溶剂被提取,就会固化成磁性微胶囊。在原型演示中,成功制备了由聚l -乳酸、三叶草苷和磷酸胆碱(DOPC)组成的微胶囊。因此,所提出的PDMS微设备可以潜在地作为多功能封装工具,用于各种生物和制药应用。
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