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无水诺氟沙星与其水合物之间的固态相互转化。

Solid state interconversion between anhydrous norfloxacin and its hydrates.

作者信息

Chongcharoen Wanchai, Byrn Stephen R, Sutanthavibul Narueporn

机构信息

Faculty of Pharmaceutical Sciences, Chulalongkorn University, Bangkok, Thailand.

出版信息

J Pharm Sci. 2008 Jan;97(1):473-89. doi: 10.1002/jps.21165.

Abstract

This work is focused on characterizing and evaluating the solid state interconversion of norfloxacin (NF) hydrates. Four stoichiometric NF hydrates, dihydrate, hemipentahydrate, trihydrate, pentahydrate and a disordered NF state, were generated by various methods and characterized by X-ray powder diffractometry (XRPD), thermal analysis and Karl Fisher titrimetry. XRPD patterns of all NF hydrates exhibited crystalline structures. NF hydrate conversion was studied with respect to mild elevated temperature and various degrees of moisture levels. NF hydrates transformed to anhydrous NF Form A after gentle heating at 60 degrees C for 48 h except dihydrate and trihydrate where mixture in XRPD patterns between anhydrous NF Form A and former structures existed. Desiccation of NF hydrates at 0% RH for 7 days resulted in only partial removal of water molecules from the hydrated structures. The hydrated transitional phase and the disordered NF state were obtained from the incomplete dehydration of NF hydrates after thermal treatment and pentahydrate NF after desiccation, respectively. Anhydrous NF Form A and NF hydrates transformed to pentahydrate NF when exposed to high moisture environment except dihydrate. In conclusion, surrounding moisture levels, temperatures and the duration of exposure strongly influenced the interconversion pathways and stoichiometry of anhydrous NF and its hydrates.

摘要

这项工作聚焦于表征和评估诺氟沙星(NF)水合物的固态相互转化。通过多种方法制备了四种化学计量的NF水合物,即二水合物、半五水合物、三水合物、五水合物以及一种无序的NF状态,并通过X射线粉末衍射法(XRPD)、热分析和卡尔费休滴定法对其进行了表征。所有NF水合物的XRPD图谱均显示出晶体结构。研究了在温和升温及不同湿度水平下NF水合物的转化情况。除二水合物和三水合物在XRPD图谱中出现无水NF晶型A与先前结构的混合物外,其他NF水合物在60℃温和加热48小时后均转化为无水NF晶型A。将NF水合物在0%相对湿度下干燥7天,仅导致水合结构中的水分子部分去除。水合过渡相和无序的NF状态分别是通过热处理后NF水合物的不完全脱水以及干燥后的五水合物NF获得的。除二水合物外,无水NF晶型A和NF水合物在高湿度环境下会转化为五水合物NF。总之,周围的湿度水平、温度和暴露持续时间强烈影响无水NF及其水合物的相互转化途径和化学计量。

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