对Gefapixant IR配方的生理学基础生物制药建模开发和定义生物等效溶解安全空间
Michael Wang1, Tycho Heimbach2, Wei Zhu3
1Pharmaceutical Sciences, MRL, Merck & Co., Inc, Rahway, NJ, 07065, USA.
The AAPS journal
|June 11, 2024
概括
一个基于生理学的生物制药模型 (PBBM) 用于 gefapixant 辅助配方选择和生物等价性评估. 该模型准确预测了临床数据,并建立了溶解规格,以确保产品质量.
科学领域:
- 药物动力学和生物制药学
- 药物配方和开发 药物配方和开发
背景情况:
- 格法皮克桑 (Gefapixant) 是一种较弱的基本药物,需要谨慎的配方进行口服.
- 物理化学性质和临床数据对于开发预测模型至关重要.
研究的目的:
- 为 gefapixant.开发一种基于生理学的生物制药模型 (PBBM).
- 支持配方选择,生物等价性评估和溶解规范设置.
- 为了评估与质子抑制剂的药物相互作用潜力.
主要方法:
- 使用 gefapixant 的物理化学特性和药理动力学数据开发 PBBM.
- 输入各种fefapixant配方的体外溶解概况.
- 通过独立的生物等价性,生物可用性和ADME研究来验证 PBBM.
主要成果:
- 通过PBBM实现Cmax和AUC的预测误差≤20%,符合验证标准.
- 模型准确地预测了对梅醇的gefapixant暴露变化,区分了自由基和酸盐配方.
- 建立了一个虚拟溶解生物等价安全空间,表明生物等价批次在60分钟内溶解超过80%.
结论:
- PBBM是fefapixant配方开发和质量保证的宝贵工具.
- 该模型成功预测了药物相互作用,并定义了生物等价性标准.
- 在60分钟内>80%的溶解规格确保了fefapixant产品的生物等价性.
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