Office of New Animal Drug Evaluation, Center for Veterinary Medicine, US FDA, 7500 Standish Place, MPN2, HFV-130, Rockville, Silver Spring, MD 20855, USA.
Future Med Chem. 2011 May;3(7):855-79. doi: 10.4155/fmc.11.37.
Drug metabolism is a core determinant of the dose-effectiveness-toxicity relationship of many compounds. It is also critical to the human food safety assessment of drug residues in the edible tissues of food-producing animals. This article describes the current state of knowledge regarding the role of the cytochrome P450 superfamily of enzymes in determining the metabolic profile of compounds administered to companion animals (e.g., dog and cat) and to food-producing animal species (e.g., cattle, swine, chickens). In turn, this knowledge reflects the collection of insights derived from the recognized population variability observed in human drug metabolism, our general understanding of the kinetics of various drug-metabolism pathways, emerging tools that enable the role of pharmacogenetics to be studied and the characterization of drug metabolism in individual veterinary species. Ultimately, by increasing our insights with regard to factors that can influence drug metabolism, our knowledge of metabolic pathways, sources of within- and between-species variability in pharmacokinetics and the development of in silico models that can be used to predict pharmacokinetic profiles from these diverse sources of information. We will improve our ability to generate the population inferences needed to insure the target animal safety, product effectiveness and the human food safety of veterinary pharmaceuticals.
药物代谢是许多化合物的剂量-效应-毒性关系的核心决定因素。它对于评估药用动物组织中药物残留对人类食品安全的影响也至关重要。本文描述了目前关于细胞色素 P450 超家族酶在确定给予伴侣动物(如狗和猫)和食用动物物种(如牛、猪、鸡)的化合物的代谢特征中的作用的知识状态。反过来,这一知识反映了从人类药物代谢中观察到的公认的群体变异性、我们对各种药物代谢途径动力学的一般理解、新兴工具中获得的见解,这些工具使研究药物代谢的遗传药理学的作用以及个别兽医物种的药物代谢特征成为可能。最终,通过增加我们对影响药物代谢的因素的认识,我们对代谢途径、药代动力学内在和种间变异性的来源以及可以用于从这些不同信息来源预测药代动力学特征的计算模型的了解,将得到提高。这将提高我们从这些不同信息来源预测药代动力学特征的能力,从而确保目标动物的安全性、产品的有效性和兽医药物的人类食品安全。