首页> 外文期刊>Journal of Veterinary Pharmacology and Therapeutics >Mathematical modeling and simulation in animal health - Part II: principles, methods, applications, and value of physiologically based pharmacokinetic modeling in veterinary medicine and food safety assessment
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Mathematical modeling and simulation in animal health - Part II: principles, methods, applications, and value of physiologically based pharmacokinetic modeling in veterinary medicine and food safety assessment

机译:动物健康中的数学建模和仿真-第二部分:兽医学和食品安全评估中基于生理学的药代动力学建模的原理,方法,应用和价值

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摘要

This review provides a tutorial for individuals interested in quantitative veterinary pharmacology and toxicology and offers a basis for establishing guidelines for physiologically based pharmacokinetic (PBPK) model development and application in veterinary medicine. This is important as the application of PBPK modeling in veterinary medicine has evolved over the past two decades. PBPK models can be used to predict drug tissue residues and withdrawal times in food-producing animals, to estimate chemical concentrations at the site of action and target organ toxicity to aid risk assessment of environmental contaminants and/or drugs in both domestic animals and wildlife, as well as to help design therapeutic regimens for veterinary drugs. This review provides a comprehensive summary of PBPK modeling principles, model development methodology, and the current applications in veterinary medicine, with a focus on predictions of drug tissue residues and withdrawal times in food-producing animals. The advantages and disadvantages of PBPK modeling compared to other pharmacokinetic modeling approaches (i.e., classical compartmentaloncompartmental modeling, nonlinear mixed-effects modeling, and interspecies allometric scaling) are further presented. The review finally discusses contemporary challenges and our perspectives on model documentation, evaluation criteria, quality improvement, and offers solutions to increase model acceptance and applications in veterinary pharmacology and toxicology.
机译:这篇综述为对定量兽医药理学和毒理学感兴趣的个人提供了指南,并为建立基于生理的药代动力学(PBPK)模型在兽药中的开发和应用提供了指南。这很重要,因为在过去的二十年中,PBPK模型在兽医学中的应用得到了发展。 PBPK模型可用于预测食用动物中的药物组织残留量和撤药时间,估算作用部位的化学浓度和靶器官毒性,以帮助评估家畜和野生动物中环境污染物和/或药物的风险,以及帮助设计兽药的治疗方案。这篇综述提供了PBPK建模原理,模型开发方法以及在兽医学中的当前应用的全面摘要,重点是预测食物生产动物中的药物组织残留和停药时间。与其他药代动力学建模方法(即经典的隔室/非隔室建模,非线性混合效应建模和种间异速异度缩放)相比,PBPK建模的优缺点也得到了进一步介绍。该评论最后讨论了当代的挑战以及我们对模型文档,评估标准,质量改进的观点,并提供了提高模型在兽医学药理学和毒理学中的接受度和应用性的解决方案。

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