超越传统毒理学:PBTK建模的变革力量
Anagha Damre1, Aniruddha Banerjee1
1DMPK, Global Preclinical & Product Safety, Product Innovation & Development, Established Pharmaceuticals, Abbott Healthcare Pvt. Ltd., Mumbai 400093, India.
概括
基于生理学的毒动力学 (PBTK) 建模量化化学ADME用于风险评估. PBTK模型增强了物种间推断,并减少了监管评估中的动物试验.
科学领域:
- 毒动力学 毒动力学 毒动力学
- 计算毒理学计算毒理学
- 风险评估 风险评估
背景情况:
- 在评估化学ADME时,生理学基础的毒动力学 (PBTK) 建模至关重要.
- 传统的方法在物种间和剂量推断中缺乏精度.
- PBTK模型整合了生理和生化数据,以提高预测.
研究的目的:
- 审查PBTK建模在毒动力学中的应用.
- 探索PBTK模型与监管风险评估准则的协调.
- 突出PBTK在物种间推断和减少动物试验中的作用.
主要方法:
- 使用高吞吐量毒动力学 (HTTK) 和体外到体外抽取 (IVIVE).
- 整合大规模实验数据集和计算方法.
- 应用PBTK模型进行路线对路线,交叉物种和特殊种群的推断.
主要成果:
- 通过PBTK模型,可以对ADME进行精确的定量评估.
- 通过HTTK和IVIVE增强预测能力.
- 促进目标组织度估计和生态风险评估.
结论:
- PBTK建模是各种行业监管风险评估的关键工具.
- PBTK模型改善了人类生物建模和生态风险评估.
- 监管机构越来越多地采用,这意味着向数据驱动,减少动物试验的毒性评估的转变.
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