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Fabrication of Biodegradable Poly(Lactic Acid) Particles in Flow-Focusing Glass Capillary Devices

机译:流动聚焦玻璃毛细管装置中可生物降解的聚(乳酸)颗粒的制备

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Monodisperse poly(dl-lactic acid) (PLA) particles with a diameter in the range from 12 to 100 urn were fabricated in flow focusing glass capillary devices by evaporation of dichloromethane (DCM) from emulsions at room temperature. The dispersed phase was 5% (w/w) PLA in DCM containing a small amount of Nile red and the continuous phase was 5% (w/w) poly(vinyl alcohol) in reverse osmosis water. Particle diameter was 2.7 times smaller than the size of the emulsion droplet template indicating that the particle porosity was very low. SEM images revealed that the majority of particle pores are in the sub-micron region but in some instances these pores can reach 3 μm in diameter. Droplet diameter was influenced by the flow rates of the two phases and the entry diameter of the collection capillary tube; droplet diameters decreased with increasing values of the flow rate ratio of the dispersed to continuous phase to reach constant minimum values at 40-60% orifice diameter. At flow rate ratios less than 5, jetting can occur, giving rise to large droplets formed by detachment from relatively long jets (~10 times longer than droplet diameter).
机译:通过在室温下从乳液中蒸发二氯甲烷(DCM),在流量聚焦玻璃毛细管装置中制造直径的单分散聚(DL-乳酸)(PLA)颗粒。分散相为含有少量尼罗红的DCM中的5%(w / w)PLA,连续相是反渗透水中的连续相是5%(w / w)聚(乙烯醇)。粒径小于乳液液滴模板的尺寸的2.7倍,表明粒子孔隙率非常低。 SEM图像显示大多数粒子孔位于亚微米区域中,但在某些情况下,这些孔的直径可以达到3μm。液滴直径受两个阶段的流速和收集毛细管的入口直径的影响;液滴直径随着分散到连续相的流速比的增加而降低,以达到40-60%孔口直径的恒定最小值。在流速比小于5的情况下,可能发生喷射,从相对长的喷射喷射(比液滴直径长约10倍)产生大液滴。

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