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首页> 外文期刊>Polymer international >Preparation of magnetic poly(lactic-co-glycolic acid) microspheres featuring monodispersity and controllable particle size using a microchannel device
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Preparation of magnetic poly(lactic-co-glycolic acid) microspheres featuring monodispersity and controllable particle size using a microchannel device

机译:使用微通道装置制备具有单分散性和可控制粒度的磁性聚乳酸-乙醇酸共聚物微球

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Poly(lactic-co-glycolic acid) (PLGA) microspheres prepared using a traditional solvent evaporation or double emulsification method are usually polydisperse with an uncontrollable particle size distribution, which brings about poor application performance. In our research, monodisperse magnetic PLGA microspheres were prepared using a microchannel device based on a water-in-oil-in-water composite emulsion. The composite emulsion was formed by injecting a dichloromethane-gelatin water-in-oil emulsion into a microchannel together with an external water phase, i.e. poly(vinyl alcohol) (PVA) aqueous solution. Mean particle size control of the microspheres was executed using the osmotic pressure difference between internal and external aqueous phases caused by regulating NaCl concentration in PVA aqueous phase. It is found that monodisperse magnetic PLGA microspheres with high magnetic responsiveness can be successfully prepared combining the microchannel device with composite emulsion method. Mean particle size of the microspheres with coefficient of variation value below 4.72% is controllable from 123 to 203 mu m depending on the osmotic pressure. The resulting samples have pyknotic and smooth surfaces, as well as spherical appearance. These monodisperse magnetic PLGA microspheres with good superparamagnetism and magnetic mobility have potential use as drug carriers for uniform release and magnetic targeting hyperthermia in biological fields. (c) 2015 Society of Chemical Industry
机译:使用传统的溶剂蒸发或双重乳化方法制备的聚乳酸-乙醇酸共聚物(PLGA)微球通常是多分散的,其粒径分布无法控制,从而导致较差的应用性能。在我们的研究中,使用基于水包油包水复合乳液的微通道装置制备了单分散磁性PLGA微球。通过将二氯甲烷-明胶油包水乳液与外部水相即聚乙烯醇(PVA)水溶液一起注入微通道中来形成复合乳液。使用由调节PVA水相中的NaCl浓度引起的内部和外部水相之间的渗透压差来执行微球的平均粒径控制。发现将微通道装置与复合乳液法结合可以成功制备具有高磁响应性的单分散磁性PLGA微球。变异系数值低于4.72%的微球平均粒径可根据渗透压控制在123至203μm之间。所得样品的表面呈粘着性和光滑性,并呈球形。这些具有良好的超顺磁性和磁性迁移性的单分散磁性PLGA微球具有潜在的用途,可作为药物载体在生物领域中实现均匀释放和磁性靶向热疗。 (c)2015年化学工业学会

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