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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Microwave drying of granules containing a moisture-sensitive drug: a promising alternative to fluid bed and hot air oven drying.
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Microwave drying of granules containing a moisture-sensitive drug: a promising alternative to fluid bed and hot air oven drying.

机译:含有水分敏感性药物的颗粒的微波干燥:这是流化床和热风烤箱干燥的一种有前途的替代方法。

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摘要

The impact of microwave drying and binders (copolyvidone and povidone) on the degradation of acetylsalicylic acid (ASA) and physical properties of granules were compared with conventional drying methods. Moist granules containing ASA were prepared using a high shear granulator and dried with hot air oven, fluid bed or microwave (static or dynamic bed) dryers. Percent ASA degradation, size and size distribution, friability and flow properties of the granules were determined. Granules dried with the dynamic bed microwave dryer showed the least amount of ASA degradation, followed by fluid bed dryer, static bed microwave oven and hot air oven. The use of microwave drying with a static granular bed adversely affected ASA degradation and drying capability. Dynamic bed microwave dryer had the highest drying capability followed by fluid bed, static bed microwave dryer and conventional hot air oven. The intensity of microwave did not affect ASA degradation, size distribution, friability and flow properties of the granules. Mixing/agitating of granules during drying affected the granular physical properties studied. Copolyvidone resulted in lower amount of granular residual moisture content and ASA degradation on storage than povidone, especially for static bed microwave drying. In conclusion, microwave drying technology has been shown to be a promising alternative for drying granules containing a moisture-sensitive drug.
机译:将微波干燥和粘合剂(共聚维酮和聚维酮)对乙酰水杨酸(ASA)的降解和颗粒物理性能的影响与常规干燥方法进行了比较。使用高剪切造粒机制备含有ASA的湿颗粒,并用热风烤箱,流化床或微波(静态或动态床)干燥机干燥。测定了颗粒的ASA降解百分比,尺寸和尺寸分布,易碎性和流动性。用动态床微波干燥器干燥的颗粒显示出最少的ASA降解,其次是流化床干燥器,静态床微波炉和热风烤箱。将微波干燥与静态颗粒床一起使用会对ASA降解和干燥能力产生不利影响。动态床微波干燥机具有最高的干燥能力,其次是流化床,静态床微波干燥机和常规热风烤箱。微波强度不影响ASA的降解,粒度分布,脆性和颗粒的流动性。干燥过程中颗粒的混合/搅拌会影响所研究的颗粒物理性能。与聚维酮相比,共聚维酮导致的颗粒状残留水分含量更低,并且储存时的ASA降解更低,尤其是对于静态床微波干燥而言。总之,微波干燥技术已被证明是干燥含有水分敏感性药物的颗粒的有前途的替代方法。

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