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新型 PhysioCell 设备在口腔即释制剂生物预测性溶出度测试中的应用 - 用于体外-体内预测的案例研究工作流程。

Application of a novel PhysioCell apparatus for biopredictive dissolution tests of oral immediate release formulations - A case study workflow for in vitro-in vivo predictions.

机构信息

Department of Physical Pharmacy and Pharmacokinetics, Poznan University of Medical Sciences, 3 Rokietnicka St., 60-806 Poznań, Poland.

Physiolution Polska, 74 Piłsudskiego St., 50-020 Wrocław, Poland.

出版信息

Int J Pharm. 2023 Jun 25;641:123061. doi: 10.1016/j.ijpharm.2023.123061. Epub 2023 May 19.

Abstract

Biorelevant dissolution tests of oral solid dosage forms open the gate to valid in vitro-in vivo predictions (IVIVP). A recently developed apparatus, PhysioCell, allows mimicking the fluid flow and pressure waves occurring in the human fasted stomach. In this work, we used the PhysioCell to perform IVIVP for vortioxetine immediate-release (IR) tablets: the originator (Brintellix) and generic product candidates (VORTIO). The dissolved drug was monitored in the gastric (StressCell) and intestinal (Collection Vessel) compartments that contained biorelevant media. Simulated intermittent gastric stress at 15 min and "housekeeping wave" at 30 min increased the dissolution of Brintellix formulations only. A mechanistic model that best described the observations involved the first-order tablet disintegration with a stress-induced enhancement for Brintellix, dissolution of solid particles in the StressCell, and drug transfer to the Collection Vessel. Then, a semi-mechanistic pharmacokinetic model with dissolution parameters as inputs simulated vortioxetine plasma concentrations in healthy volunteers after single and multiple dosing of Brintellix. Despite different dissolution characteristics, VORTIO provided similar concentration profiles to the originator. In conclusion, PhysioCell dissolution tests, combined with semi-mechanistic IVIVP, can be successfully used to develop IR dosage forms exhibiting gastric stress-related effects.

摘要

生物相关溶解试验为口服固体制剂打开了体内外相关性预测(IVIVP)的大门。最近开发的PhysioCell 仪器可以模拟人体空腹胃部中发生的流体流动和压力波。在这项工作中,我们使用 PhysioCell 对文拉法辛速释(IR)片剂进行 IVIVP:原研药(Brintellix)和仿制药候选药物(VORTIO)。在含有生物相关介质的胃(StressCell)和肠(收集容器)隔室中监测溶解的药物。15 分钟时模拟间歇性胃应激和 30 分钟时的“日常波动”仅增加了 Brintellix 制剂的溶解。能够最好地描述观察结果的机制模型涉及到具有应激增强作用的一阶片剂崩解、StressCell 中固体颗粒的溶解以及药物向收集容器的转移。然后,使用包含溶解参数的半机械药代动力学模型模拟了 Brintellix 单次和多次给药后健康志愿者的文拉法辛血浆浓度。尽管 VORTIO 的溶解特征不同,但与原研药相比,提供了相似的浓度曲线。总之,PhysioCell 溶解试验结合半机械 IVIVP 可成功用于开发具有胃应激相关作用的 IR 剂型。

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