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Spray drying of monodispersed microencapsulates: implications of formulation and process parameters on microstructural properties and controlled release functionality

机译:喷雾干燥单分散微胶囊:配方和工艺参数对微结构性质和控释功能的影响

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摘要

Particulates for pharmaceutical applications require stringent control over their characteristics to realize the optimal therapeutic performance. By generating uniform spray-dried silica particles encapsulating different model drugs via a microfluidic jet spray drying technique, we demonstrated how the effects of formulation and process parameters on the investigated properties could be directly quantified without the complications of wide particle distributions typical of conventional spray drying. The implemented strategies included incorporating lactose to modify the internal microstructures to regulate release, and increasing drying temperature during synthesis to modify the surface features of particles. The physicochemical properties of encapsulated drugs were shown to influence particle morphologies and release profiles, while the pH of initial precursors influenced the particle morphologies with slight effects on the initial release rates. The outcomes would be useful to indentify appropriate formulations and manufacturing parameters in designing spray-dried silica-based microencapsulates with tailor-made controlled release functionalities.
机译:用于药物应用的颗粒需要对其特性进行严格控制,以实现最佳治疗效果。通过使用微流体喷射喷雾干燥技术产生包封不同模型药物的均匀喷雾干燥二氧化硅颗粒,我们证明了如何直接量化配方和工艺参数对所研究性质的影响,而没有传统喷雾干燥所特有的宽颗粒分布的复杂性。实施的策略包括掺入乳糖以修饰内部微结构以调节释放,并在合成过程中提高干燥温度以修饰颗粒的表面特征。研究表明,包封药物的理化性质会影响颗粒的形貌和释放曲线,而初始前体的pH值会影响颗粒的形貌,而对初始释放速率的影响很小。结果将有助于确定适当的配方和制造参数,以设计具有定制控制释放功能的喷雾干燥二氧化硅基微囊。

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