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首页> 外文期刊>Journal of Applied Polymer Science >Modulating drug release from poly(lactic-co-glycolic) acid microparticles by the addition of alginate and pectin
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Modulating drug release from poly(lactic-co-glycolic) acid microparticles by the addition of alginate and pectin

机译:通过添加藻酸盐和果胶,从聚(乳酸 - 共乙醇酸)酸微粒中调节药物释放

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摘要

The aim of the present work is the characterization of PLGA microparticles including biopolymers for the controlled release of tilmicosin, a broad-spectrum antibiotic. Microparticles were prepared using the double-emulsion solvent evaporation technique. The effect of alginate and pectin incorporation over particle size and porosity, encapsulation efficiency (EE) and pH-responsive drug release was evaluated. Formulations presented a mean particle size of 5.5 mu m approximately and a drug EE ranged from 22%-57%. PLGA-Alginate particles showed an increased porosity. Tilmicosin release profiles from PLGA and PLGA-biopolymer microparticles were affected by the particular combination of polymers and the pH of the release medium. The experimental data was simulated using a mathematical model, which takes into account the autocatalytic polymer degradation and the different mechanisms of drug transport. The combination of PLGA and biopolymers strongly influenced the morphology of the particles, offering the possibility of controlling the drug release profiles according to the therapy.
机译:本工作的目的是表征PLGA微粒,包括用于广谱抗生素替米考星控释的生物聚合物。采用双乳液溶剂蒸发技术制备微粒。评估了海藻酸钠和果胶掺入对粒径和孔隙率、包封率(EE)和pH响应性药物释放的影响。制剂的平均粒径约为5.5μm,药物EE的范围为22%-57%。PLGA海藻酸盐颗粒的孔隙率增加。PLGA和PLGA生物聚合物微粒的替米考星释放曲线受聚合物的特定组合和释放介质的pH值的影响。实验数据采用数学模型进行模拟,该模型考虑了自催化聚合物降解和药物转运的不同机制。PLGA和生物聚合物的组合强烈影响了颗粒的形态,提供了根据治疗控制药物释放曲线的可能性。

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