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Morphology Control of Protein Microparticles Produced Using Microfluidic Droplets in a Non-equilibrium State

机译:在非平衡状态下使用微流体液滴产生的蛋白质微粒的形态学控制

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摘要

Here we present microfluidic systems to produce micrometer-sized particles made of proteins, using monodisperse droplets in a non-equilibrium state. Droplets of an aqueous solution of protein were formed in the continuous phase of a water-dissolving polar organic solvent, and then the droplets were shrunk because of the dissolution of water molecules. Protein molecules were precipitated, and then stable protein micro particles were obtained after the crosslinking reaction. We obtained spherical/non-spherical protein microparticles using several types of proteins, and examined factors affecting the particle morphology. In particular, highly unique tear-drop-shaped particles and hemispherical particles were obtained when incompletely dehydrated droplets were crosslinked. In addition, we cultured mammalian cells on the particles made of collagen, demonstrating the applicability of the particles as cell-culture scaffolds. The presented protein microparticles would be useful as carriers or scaffolds for various biological/medical applications.
机译:在这里,我们呈现微流体系统以产生由非平衡状态下的单分散液滴产生由蛋白质制成的微米尺寸粒子。在水溶液的极性有机溶剂的连续相中形成蛋白质水溶液的液滴,然后由于水分子的溶解而缩小液滴。沉淀蛋白质分子,然后在交联反应后获得稳定的蛋白质微颗粒。我们使用几种类型的蛋白质获得球形/非球形蛋白质微粒,并检查了影响颗粒形态的因素。特别地,当不完全脱水的液滴交联时获得高度独特的泪滴形颗粒和半球形颗粒。此外,我们培养哺乳动物细胞对胶原蛋白制成的颗粒上,证明颗粒作为细胞培养支架的适用性。呈现的蛋白质微粒可用作各种生物/医疗应用的载体或支架。

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