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首页> 外文期刊>Biomaterials Science >One-step fabrication of core-shell structured alginate-PLGA/PLLA microparticles as a novel drug delivery system for water soluble drugs
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One-step fabrication of core-shell structured alginate-PLGA/PLLA microparticles as a novel drug delivery system for water soluble drugs

机译:一步一步制备核壳结构藻酸盐-PLGA / PLLA微粒作为水溶性药物的新型药物递送系统

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摘要

Current focus on particulate drug delivery entails the need for increased drug loading and sustained release of water soluble drugs. Commonly studied biodegradable polyesters, such as poly(lactide-co-glycolide) (PLGA) and poly(L-lactide) (PLLA), are lacking in terms of loading efficiency of these drugs and a stable encapsulation environment for proteins. While hydrogels could enable higher loading of hydrophilic drugs, they are limited in terms of controlled and sustained release. With this in mind, the aim was to develop microparticles with a hydrophilic drug-loaded hydrogel core encapsulated within a biodegradable polyester shell that can improve hydrophilic drug loading, while providing controlled and sustained release. Herein, we report a single step method of fabricating microparticles via a concurrent ionotropic gelation and solvent extraction. Microparticles fabricated possess a core-shell structure of alginate, encapsulated in a shell constructed of either PLGA or PLLA. The cross-sectional morphology of particles was evaluated via scanning electron microscopy, calcium alginate core dissolution, FT-IR microscopy and Raman mapping. The incorporation of alginate within PLGA or PLLA was shown to increase encapsulation efficiency of a model hydrophilic drug metoclopramide HCI (MCA). The findings showed that the shell served as a membrane in controlling the release of drugs. Such gel-core hydrophobic-shell micro-particles thus allow for improved loading and release of water soluble drugs.
机译:当前对颗粒药物递送的关注使得需要增加药物载量和持续释放水溶性药物。就这些药物的装载效率和蛋白质的稳定包封环境而言,缺乏常用的可生物降解聚酯,例如聚(丙交酯-乙交酯-乙交酯)(PLGA)和聚(L-丙交酯)(PLLA)。尽管水凝胶可以使亲水性药物的负载量更高,但它们在控制和持续释放方面受到限制。考虑到这一点,目的是开发一种微粒,该微粒具有包裹在可生物降解的聚酯外壳中的,载有亲水药物的水凝胶核,可改善亲水药物的载量,同时提供可控和持续的释放。在本文中,我们报告了通过同时离子化凝胶和溶剂萃取制备微粒的一步法。制成的微粒具有藻酸盐的核-壳结构,该结构被封装在由PLGA或PLLA构成的壳中。通过扫描电子显微镜,藻酸钙核心溶解,FT-IR显微镜和拉曼作图来评估颗粒的横截面形态。显示藻酸盐在PLGA或PLLA中的结合增加了模型亲水性药物甲氧氯普胺盐酸盐(MCA)的包封效率。研究结果表明,壳层是控制药物释放的膜。这样的凝胶核疏水壳微粒因此改善了水溶性药物的负载和释放。

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