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一种新型溶解模型在个体受试者中评估腔内药物释放的口腔局部作用美沙拉嗪制剂的体内生物预测比较。

A Biopredictive In Vitro Comparison of Oral Locally Acting Mesalazine Formulations by a Novel Dissolution Model for Assessing Intraluminal Drug Release in Individual Subjects.

机构信息

University of Greifswald, Department of Pharmacy, Institute of Biopharmaceutics and Pharmaceutical Technology, Center of Drug Absorption and Transport, 3 Felix Hausdorff Street, Greifswald 17489, Germany.

University of Greifswald, Department of Pharmacy, Institute of Biopharmaceutics and Pharmaceutical Technology, Center of Drug Absorption and Transport, 3 Felix Hausdorff Street, Greifswald 17489, Germany.

出版信息

J Pharm Sci. 2018 Jun;107(6):1680-1689. doi: 10.1016/j.xphs.2018.02.016. Epub 2018 Feb 27.

Abstract

Drug release and availability at the site of action are the major factors determining the clinical response for locally-acting gastrointestinal (GI) drug products. The present work focused on the prediction of site and extent of in vivo mesalazine release after oral administration to a variety of subjects using individualized in vitro drug release experiments. First, experiments mimicking GI passages in average adult subjects were performed. Then, results from a study screening fasted in vivo pH and transit profiles in individual subjects were translated into a novel in vitro dissolution model enabling to mimic individual GI pH-profiles and transit times with physiologically relevant dissolution media. A selection of monolithic and multiparticulate mesalazine formulations with pH-dependent and pH-independent drug release was screened with the novel dissolution model. Results of the study indicate that dosage form performance can be significantly different in individual subjects and highlight the importance of addressing individual physiological parameters relevant to intraluminal drug release when the aim is to predict the in vivo performance of locally-acting mesalazine formulations in individual patients. The novel in vitro dissolution approach thus represents a valuable tool for both improving individual oral therapy with locally-acting GI drug products and assessing bioequivalence of these formulations.

摘要

药物在作用部位的释放和可用性是决定局部作用胃肠道(GI)药物产品临床疗效的主要因素。本工作重点在于使用个体化的体外药物释放实验,预测各种受试者口服后体内美沙拉嗪的释放部位和程度。首先,进行了模拟普通成年受试者胃肠道通道的实验。然后,将个体禁食体内 pH 值和转运特征研究的结果转化为一种新的体外溶解模型,该模型能够模拟个体胃肠道 pH 曲线和转运时间,并使用生理相关的溶解介质。使用新型溶解模型筛选了具有 pH 依赖性和 pH 非依赖性药物释放的单块和多颗粒美沙拉嗪制剂。研究结果表明,在个体受试者中,剂型性能可能有很大差异,并强调了当旨在预测个体患者局部作用美沙拉嗪制剂的体内性能时,解决与腔内药物释放相关的个体生理参数的重要性。因此,新型的体外溶解方法是一种有价值的工具,可用于改善局部作用胃肠道药物产品的个体化口服治疗,并评估这些制剂的生物等效性。

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