首页> 外文期刊>Journal of Materials Science >Simple emulsion technique as an innovative template for preparation of porous, spongelike poly(lactide-co-glycolide) microspheres with pore-closing capability
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Simple emulsion technique as an innovative template for preparation of porous, spongelike poly(lactide-co-glycolide) microspheres with pore-closing capability

机译:简单的乳液技术作为制备具有闭孔能力的多孔海绵状聚(丙交酯-共乙交酯)微球的创新模板

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摘要

The objective of this study was to develop a new oil-in-water emulsion template for the preparation of highly porous poly(lactide-co-glycolide) (PLGA) microspheres having a spongelike skeleton and a pore-closing functionality. A dispersed phase consisting of isopropyl formate and PLGA was emulsified in an aqueous phase. Ammonia was added toward this emulsion, in order to induce ammonolysis in the dispersed phase. Subsequently, isopropyl formate was broken into water-soluble isopropanol and formamide. As they functioned as anti-solvents against PLGA, microsphere hardening occurred. Also, their leaching into the aqueous phase led to the formation of highly porous, spongelike microspheres. The microsphere porosity was found to be controlled by adjusting isopropyl formate volume, PLGA type and concentration, ammonia volume, and ammonia-isopropyl formate molar ratio. When these dried microspheres were dispersed into an aqueous phase, the pores closed themselves autonomously. Herein, the self-closing capability of the microspheres was greatly influenced by microsphere Tg and the aqueous phase temperature. FITC-dextran and lysozyme were successfully encapsulated into the microspheres by simply equilibrating their aqueous solutions with the self-closing microspheres. In conclusion, the new emulsion template did not use either a halogenated organic solvent or conventional porogens. It did not require high-shear or high-energy mixing devices that must be used in the practice of most contemporary microencapsulation techniques. Despite these facts, this new technique was able to fabricate spongelike microspheres with an extremely high porosity and an outstanding pore-closing functionality.
机译:本研究的目的是开发一种新的水包油乳液模板,用于制备具有海绵状骨架和闭孔功能的高多孔聚(丙交酯-共乙交酯)(PLGA)微球。由甲酸异丙酯和PLGA组成的分散相在水相中乳化。向该乳液中加入氨,以诱导分散相的氨解。随后,将甲酸异丙酯分解为水溶性异丙醇和甲酰胺。由于它们起到了对抗PLGA的反溶剂的作用,因此发生了微球硬化。此外,它们浸出到水相中导致形成高度多孔的海绵状微球。通过调节甲酸异丙酯体积、PLGA类型和浓度、氨体积和氨-甲酸异丙酯摩尔比来控制微球孔隙率。当这些干燥的微球分散到水相中时,孔隙会自动闭合。本文中,微球的自闭合能力受微球Tg和水相温度的影响很大。FITC-葡聚糖和溶菌酶通过简单地将其水溶液与自闭微球平衡,成功地封装到微球中。总之,新的乳液模板既不使用卤化有机溶剂,也不使用传统的多孔剂。它不需要高剪切或高能混合装置,而这些装置必须在大多数当代微胶囊化技术的实践中使用。尽管有这些事实,这种新技术还是能够制造出具有极高孔隙率和出色闭孔功能的海绵状微球。

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