首页> 外文期刊>AAPS PharmSciTech >Exploring the Potential of A Highly Compressible Microcrystalline Cellulose as Novel Tabletting Excipient in the Compaction of Extended-Release Coated Pellets Containing an Extremely Water-Soluble Model Drug
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Exploring the Potential of A Highly Compressible Microcrystalline Cellulose as Novel Tabletting Excipient in the Compaction of Extended-Release Coated Pellets Containing an Extremely Water-Soluble Model Drug

机译:探索一种高度可压缩的微晶纤维素作为新型压片赋形剂的压制潜能,该压制的含水溶性极高的模型药物的延长释放包衣小丸

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Compaction of controlled-release coated pellets into tablets is challenging because of the fusion of pellets and the rupturing of coated film. The difficulty in compaction intensifies with the use of extremely water-soluble drugs. Therefore, the present study was conducted to prepare and compact pellets containing pseudoephedrine hydrochloride as an extremely water-soluble model drug. The pellets were produced using an extrusion–spheronization technique. The drug-loaded pellets were coated to extend the drug release up to 12-h employing various polymers, and then they were compressed into tablets using microcrystalline cellulose Ceolus KG-801 as a novel tabletting excipient. The in vitro drug release studies of coated pellets and tablets were undertaken using the USP basket method in dissolution test apparatus I. The amount of drug released was analyzed at a wavelength of 215 nm. The combined coatings of hydroxypropyl methylcellulose and Kollicoat SR-30D yielded 12-h extended-release pellets with drug release independent of pH of dissolution medium following zero-order kinetics. The drug release from the tablets prepared using inert Celous KG-801 granules as tabletting excipient was found faster than that of coated pellets. However, a modification in drug release rate occurred with the incorporation of inert Ceolus KG-801 pellets. The drug dissolution profile from tablets containing 40% w/w each of coated pellets and inert granules along with 20% w/w inert pellets was found to be closely similar to that of coated pellets. Furthermore, the friability, tensile strength, and disintegration time of the tablets were within the USP specifications.
机译:由于丸粒的融合和包膜的破裂,将控释包衣的丸粒压制成片剂是具有挑战性的。使用极易溶于水的药物会增加压实的难度。因此,进行本研究以制备并压制含有盐酸伪麻黄碱作为极易溶于水的模型药物的小丸。颗粒是使用挤出滚圆技术生产的。使用各种聚合物将载药小丸包衣以延长药物释放长达12小时,然后使用微晶纤维素Ceolus KG-801作为新型压片赋形剂将其压制成片剂。使用USP篮式方法在溶出度测试仪I中进行了包衣小丸和片剂的体外药物释放研究。在215 nm波长处分析了释放的药物量。羟丙基甲基纤维素和Kollicoat SR-30D的复合涂层产生了12小时的缓释微丸,药物释放与零级动力学后的溶出介质的pH无关。发现从使用惰性Celous KG-801颗粒作为压片赋形剂制备的片剂中释放的药物要快于包衣小丸。但是,掺入惰性Ceolus KG-801药丸会改变药物释放速率。发现来自包含40%w / w的包衣小丸和惰性颗粒以及20%w / w的惰性小丸的片剂的药物溶出曲线与包衣的小丸非常相似。此外,片剂的易碎性,拉伸强度和崩解时间均在USP规格之内。

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