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Effective Modification of Particle Surface Properties Using Ultrasonic Water Mist

机译:使用超声波水雾有效修饰颗粒表面性质

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摘要

The goal of the present study was to design a new technique to modify particle surface properties and, through that, to improve flowability of poorly flowing drug thiamine hydrochloride and pharmaceutical sugar lactose monohydrate of two different grades. The powdered particles were supplied by a vibratory feeder and exposed to an instantaneous effect of water mist generated from an ultrasound nebulizer. The processed and original powders were evaluated with respect to morphology (scanning electron microscopy, atomic force microscopy, and spatial filtering technique), flow, and solid state properties. It was found that rapid exposition of pharmaceutical materials by water mist resulted in the improvement of powder technical properties. The evident changes in flowability of coarser lactose were obviously due to smoothing of particle surface and decreasing in the level of fines with very slight increment in particle size. The changes in thiamine powder flow were mainly due to narrowing in particle size distribution where the tendency for better flow of finer lactose was related to surface and size modifications. The aqueous mist application did not cause any alteration of the crystal structures of the studied materials. The proposed water mist treatment technique appears to be a robust, rapid, and promising tool for the improvement of the technological properties of pharmaceutical powders.
机译:本研究的目的是设计一种新技术来改变颗粒的表面性质,并通过该技术来改善流动性差的药物硫胺素盐酸盐和药物糖乳糖一水合物的两种不同等级的流动性。粉末颗粒由振动给料机提供,并暴露于超声雾化器产生的水雾的瞬时作用下。评估了加工后的粉末和原始粉末的形态(扫描电子显微镜,原子力显微镜和空间过滤技术),流动性和固态性能。发现通过水雾快速暴露药物材料导致粉末技术性能的改善。较粗乳糖的流动性的明显变化明显是由于颗粒表面的光滑和细粉含量的降低,而颗粒尺寸的增加很小。硫胺素粉末流动的变化主要是由于粒径分布变窄,其中细乳糖更好流动的趋势与表面和粒径的变化有关。施加水雾不会引起所研究材料的晶体结构的任何改变。所提出的水雾处理技术似乎是改善药物粉末技术性能的可靠,快速和有前途的工具。

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