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首页> 外文期刊>Macromolecular Research >PEG/PLA core/shell particles from coaxial electrohydrodynamic spray drying
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PEG/PLA core/shell particles from coaxial electrohydrodynamic spray drying

机译:同轴电动流体动力喷雾干燥的PEG / PLA核/壳颗粒

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The process of encapsulation has been used to provide a useful route for the delivery of active ingredients in the food and pharmaceutical industries. These fields often employ spray drying processes, where pressurized air flow is used to conveniently prepare microparticles. Unfortunately, spray drying methods do not allow strict control of the particle size and structure. On the other hand, electrohydrodynamic jetting is versatile with regards to controlling these properties. In this work, a combination of spray drying and electrospraying has been used to prepare poly(ethylene glycol) (PEG)/polylactide (PLA) core/shell microparticles. A high electrical potential, which provides controllability, was applied to a customized coaxial nozzle in a laboratory scale spray dryer. Compared to conventional spray drying, the proposed method resulted in the suppression of particle aggregation, improved core/shell structure, smaller particle size, and a decrease in the initial burst release behavior. The solution flow rate and solvent evaporation rate provide additional control of the relative thickness of the core and shell phases, particle size, and aggregation. The combined method of ‘electro-spray drying’ offers an advanced and versatile platform for preparing encapsulated particles that are used widely in the pharmaceutical, food, environmental and electrical industries.
机译:封装过程已被用于提供在食品和制药工业中递送活性成分的有用途径。这些领域经常采用喷雾干燥工艺,其中使用压缩空气流来方便地制备微粒。不幸的是,喷雾干燥方法不允许严格控制粒度和结构。另一方面,关于控制这些性质,电动流体动力喷射是通用的。在这项工作中,已经使用喷雾干燥和电喷雾的组合来制备聚(乙二醇)(PEG)/聚丙交酯(PLA)核/壳微粒。提供可控性的高电势被应用于实验室规模喷​​雾干燥器中的定制同轴喷嘴。与常规喷雾干燥相比,所提出的方法可抑制颗粒聚集,改善核/壳结构,减小粒径并降低初始爆裂释放行为。溶液流速和溶剂蒸发速率可提供对核和壳相的相对厚度,粒度和聚集的额外控制。 “电喷雾干燥”的组合方法提供了一个先进且通用的平台,用于制备被封装的颗粒,这些颗粒被广泛用于制药,食品,环境和电气行业。

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