Fabrication of fillable microparticles and other complex 3D microstructures

作者:McHugh Kevin J; Nguyen Thanh D; Linehan Allison R; Yang David; Behrens Adam M; Rose Sviatlana; Tochka Zachary L; Tzeng Stephany Y; Norman James J; Anselmo Aaron C; Xu Xian; Tomasic Stephanie; Taylor Matthew A; Lu Jennifer; Guarecuco Rohiverth; Langer Robert; Jaklenec Ana
来源:Science, 2017, 357(6356): 1138-+.
DOI:10.1126/science.aaf7447

摘要

Three-dimensional (3D) microstructures created by microfabrication and additive manufacturing have demonstrated value across a number of fields, ranging from biomedicine to microelectronics. However, the techniques used to create these devices each have their own characteristic set of advantages and limitations with regards to resolution, material compatibility, and geometrical constraints that determine the types of microstructures that can be formed. We describe a microfabrication method, termed StampEd Assembly of polymer Layers (SEAL), and create injectable pulsatile drug-delivery microparticles, pH sensors, and 3D microfluidic devices that we could not produce using traditional 3D printing. SEAL allows us to generate microstructures with complex geometry at high resolution, produce fully enclosed internal cavities containing a solid or liquid, and use potentially any thermoplastic material without processing additives.

  • 出版日期2017-9-15