A Predictive In vitro Biorelevant Dissolution Method Development for Fluvoxamine Extended-Release Capsules by Simulating Preprandial and Postprandial In vivo Performance

IF 0.4 Q4 PHARMACOLOGY & PHARMACY
Devi Thamizhanban
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引用次数: 0

Abstract

Aims: This research work was about biorelevant dissolution method development for fluvoxamine extended-release capsule by correlating preprandial and postprandial in vivo performance. Materials and Methods: The mean plasma concentration profile obtained after oral administration of extended-release capsules was deconvoluted using Wagner-Nelson deconvolution technique, to achieve percentage fraction of drug absorbed, and target dissolution profile was derived. Biorelevant dissolution method was developed using USP Apparatus-3, with dissolution media simulating gastrointestinal tract sink condition. A full factorial design of experiment was carried out for optimizing dissolution volume and dips per minutes, to achieve target dissolution profile. Results: The dissolution results observed using office of generic drugs recommend dissolution method were not comparable with target dissolution profile and observed with F2 value of 37 at preprandial and 43 at postprandial condition. The achieved dissolution profile was comparable with target and observed with F2 value of 81 at preprandial condition and 85 at postprandial condition. Conclusion: The developed dissolution method establishes good correlation between in vitro drug release and in vivo drug absorption and observed with R2 value of 0.998 at preprandial condition and 0.997 at postprandial condition. The method gives the advantage of giving biowaiver.
氟伏沙明缓释胶囊体外生物相关溶出度预测方法的建立
目的:本研究通过关联餐前和餐后体内表现,开发氟伏沙明缓释胶囊的生物相关溶出方法。材料和方法:使用Wagner-Nelson去卷积技术对口服缓释胶囊后获得的平均血浆浓度曲线进行去卷积,以获得药物吸收的百分比分数,并导出目标溶出度曲线。使用USP Apparatus-3开发了生物相关溶出方法,溶出介质模拟胃肠道水槽条件。为了优化溶解体积和每分钟浸渍量,进行了全因子实验设计,以实现目标溶解曲线。结果:使用仿制药办公室推荐的溶出方法观察到的溶出结果与目标溶出曲线不可比较,餐前F2值为37,餐后F2值为43。所获得的溶出曲线与目标相当,并且在餐前条件下观察到F2值为81,在餐后条件下观察得到F2值为85。结论:所建立的溶出度方法在体外药物释放和体内药物吸收之间建立了良好的相关性,在餐前条件下R2值为0.998,在餐后条件下R2为0.997。该方法具有生物豁免的优点。
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来源期刊
Asian Journal of  Pharmaceutics
Asian Journal of Pharmaceutics PHARMACOLOGY & PHARMACY-
自引率
0.00%
发文量
47
期刊介绍: Character of the publications: -Pharmaceutics and Pharmaceutical Technology -Formulation Design and Development -Drug Discovery and Development Interface -Manufacturing Science and Engineering -Pharmacokinetics, Pharmacodynamics, and Drug Metabolism -Clinical Pharmacology, General Medicine and Translational Research -Physical Pharmacy and Biopharmaceutics -Novel Drug delivery system -Biotechnology & Microbiological evaluations -Regulatory Sciences
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