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Enhancements in Spray-Dried Powder Functionality, Using Multistage Fluidized-Bed Drying and a New Templating Process

机译:使用多级流化床干燥和新型模板工艺,增强了喷雾干燥粉末的功能

摘要

Spray drying is a technique that is widely applied to produce dry powders from their liquid or slurry states in the food and pharmaceutical industries. Spray-dried forms of dairy powders may have several advantages, such as greater solubility, dissolution rates and surface areas. However, they are thermodynamically-unstable solids, which may undergo undesirable changes, such as caking after production. udTo overcome this problem, a fluidized-bed dryer has been used in this study to improve the degree of lactose crystallinity of sweet whey. It has been found that, with controlling the operating conditions in a continuous multi-stage fluidized bed dryer, whey powders can have different degrees of lactose crystallinity with reasonable overall processing times. udHowever, crystalline powders may have some undesirable properties, such as lower dissolution rates. Thus, a new templating method has been developed to create spray-dried powders with high porosity and controlled characteristics, while maintaining the high stability of a crystalline powder. There were significant improvements in the surface areas.udThese engineered particles were then used as porous excipients in an adsorption technique to evaluate the potential of this technique for improvement of the dissolution characteristics of poorly water-soluble drugs and for content uniformity enhancement by incorporating the drug molecules onto this porous structure. Indomethacin, nifedipine, and acetaminophen as model drugs were studied. This method significantly improved the dissolution rate of these poorly water-soluble drugs due to the nanoconfinement of drug crystals inside the porous structure and the high solubility of porous mannitol. Tunable drug loadings have also been achieved with low variability for the drug content, indicating the ability of this method to produce highly-uniform blends.
机译:喷雾干燥是一种广泛应用于食品和制药工业中以液态或浆态生产干粉的技术。奶粉的喷雾干燥形式可能具有几个优点,例如更大的溶解度,溶解速度和表面积。但是,它们是热力学不稳定的固体,可能会发生不希望的变化,例如生产后结块。为了克服这个问题,在这项研究中使用了流化床干燥器来提高甜乳清的乳糖结晶度。已经发现,通过控制连续多级流化床干燥器中的操作条件,乳清粉可以在合理的总加工时间下具有不同程度的乳糖结晶度。 ud但是,结晶粉末可能具有某些不良特性,例如较低的溶解速度。因此,已经开发了一种新的模板方法,以产生具有高孔隙率和受控特性的喷雾干燥粉末,同时保持结晶粉末的高稳定性。这些表面工程化的颗粒随后被用作吸附技术中的多孔赋形剂,以评估该技术通过改善水溶性差的药物的溶出度和含量均匀性的潜力。药物分子到这个多孔结构上。研究了吲哚美辛,硝苯地平和对乙酰氨基酚作为模型药物。由于多孔结构内部药物晶体的纳米约束和多孔甘露醇的高溶解度,该方法显着提高了这些水溶性差的药物的溶解速率。还实现了可调的药物负载量,并且药物含量的变异性很低,这表明该方法具有生产高度均匀的混合物的能力。

著录项

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    Saffari Morteza;

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  • 年度 2016
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  • 入库时间 2022-08-20 20:28:53

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