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Using USP I and USP IV for Discriminating Dissolution Rates of Nano- and Microparticle-Loaded Pharmaceutical Strip-Films

机译:使用USP I和USP IV来区分载有纳米和微粒的药物剥离膜的溶解速率

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摘要

Recent interest in the development of drug particle-laden strip-films suggests the need for establishing standard regulatory tests for their dissolution. In this work, we consider the dissolution testing of griseofulvin (GF) particles, a poorly water-soluble compound, incorporated into a strip-film dosage form. The basket apparatus (USP I) and the flow-through cell dissolution apparatus (USP IV) were employed using 0.54% sodium dodecyl sulfate as the dissolution medium as per USP standard. Different rotational speeds and dissolution volumes were tested for the basket method while different cell patterns/strip-film position and dissolution media flow rate were tested using the flow-through cell dissolution method. The USP I was not able to discriminate dissolution of GF particles with respect to particle size. On the other hand, in the USP IV, GF nanoparticles incorporated in strip-films exhibited enhancement in dissolution rates and dissolution extent compared with GF microparticles incorporated in strip-films. Within the range of patterns and flow rates used, the optimal discrimination behavior was obtained when the strip-film was layered between glass beads and a flow rate of 16 ml/min was used. These results demonstrate the superior discriminatory power of the USP IV and suggest that it could be employed as a testing device in the development of strip-films containing drug nanoparticles.
机译:对载有药物颗粒的条状膜的最新兴趣表明,需要建立标准的溶出度标准测试。在这项工作中,我们考虑了灰黄霉素(GF)颗粒(一种水溶性差的化合物)的溶出度测试,该颗粒被掺入了带状薄膜剂型中。使用篮筐装置(USP I)和流通池溶解装置(USP IV),使用USP标准的0.54%十二烷基硫酸钠作为溶解介质。对于篮式方法,测试了不同的转速和溶出量,而使用流通池式溶出方法,则测试了不同的细胞模式/条带膜位置和溶出介质流速。 USP I无法根据粒径区分GF颗粒的溶解。另一方面,在USP IV中,与掺入条状膜的GF微粒相比,掺入条状膜的GF纳米颗粒显示出溶解速率和溶解程度的增强。在所使用的图案和流速范围内,当将条形膜铺在玻璃珠之间并使用16 ml / min的流速时,可获得最佳的辨别行为。这些结果证明了USP IV的卓越区分能力,并表明它可以用作开发包含药物纳米颗粒的条状膜的测试装置。

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