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Ethylcellulose-Based Matrix-Type Microspheres: Influence of Plasticizer RATIO as Pore-Forming Agent

机译:基于乙基纤维素的基质型微球:增塑剂RATIO作为孔形成剂的影响

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摘要

In this study, ethylcellulose (EC)-based microsphere formulations were prepared without and with triethyl citrate (TEC) content of 10% and 30% by water-in-oil emulsion-solvent evaporation technique. Diltiazem hydrochloride (DH) was chosen as a hydrophilic model drug and used at different drug/polymer ratios in the microspheres. The aim of the work was to evaluate the influence of plasticizer ratio on the drug release rate and physicochemical characteristics of EC-based matrix-type microspheres. The resulting microspheres were evaluated for encapsulation efficiency, particle size and size distribution, surface morphology, total pore volume, thermal characteristics, drug release rates, and release mechanism. Results indicated that the physicochemical properties of microspheres were strongly affected by the drug/polymer ratio investigated and the concentration of TEC used in the production technique. The surface morphology and pore volume of microspheres significantly varied based on the plasticizer content in the formulation. DH release rate from EC-based matrix-type microspheres can be controlled by varying the DH to polymer and plasticizer ratios. Glass transition temperature values tended to decrease in conjunction with increasing amounts of TEC. Consequently, the various characteristics of the EC microspheres could be modified based on the plasticized ratio of TEC.
机译:在这项研究中,通过油包水乳液-溶剂蒸发技术制备了不带柠檬酸三乙酯(TEC)含量为10%和30%的柠檬酸乙酯(EC)基微球制剂。选择盐酸地尔硫卓(DH)作为亲水模型药物,并在微球中以不同的药物/聚合物比率使用。这项工作的目的是评估增塑剂比例对基于EC的基质型微球的药物释放速率和理化特性的影响。评价所得微球的包封效率,粒径和尺寸分布,表面形态,总孔体积,热特性,药物释放速率和释放机理。结果表明,所研究的药物/聚合物比例和生产工艺中所用TEC的浓度对微球的理化性质有很大的影响。微球的表面形态和孔体积基于配方中增塑剂的含量而显着变化。可以通过改变DH与聚合物和增塑剂的比例来控制基于EC的基质型微球的DH释放速率。玻璃化转变温度值倾向于随着TEC含量的增加而降低。因此,可以基于TEC的增塑比例来修改EC微球的各种特性。

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