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动物药物调控中的代谢与动力学

Metabolism and kinetics in the regulation of animal drugs.

作者信息

Weber N E

出版信息

J Anim Sci. 1983 Jan;56(1):244-51. doi: 10.2527/jas1983.561244x.

Abstract

"Criteria and Procedures for Evaluating Assays for Carcinogenic Residues," popularly known as the "Sensitivity of the Method (SOM)" proposal for the regulation of animal drugs and feed additives, employs an initial analysis to determine whether a compound must meet the requirements as a suspect carcinogen or the requirements for general food safety (GFS). Metabolism and kinetics of drug depletion play an important role in the six-step procedure that is used for either set of regulatory criteria. The only significant difference that exists between the two sets of criteria is the degree of testing required. However, the difference will usually not be manifest until positive findings of carcinogenicity in the chronic studies in laboratory animals trigger a further evaluation of the metabolism of the drug or feed additive. For both SOM and GFS, metabolic information will be used to determine the appropriateness of the test species as well as to help select a compound for residue analysis. Residue depletion kinetics in the food animals also play an integral role in the selection of species-strains for toxicity testing selection as well as in the selection of the compound for residue analysis in food. Furthermore, depletion kinetics are used to set a safe withdrawal period. The development of guidelines is discussed.

摘要

《评估致癌性残留检测方法的标准和程序》,通常被称为关于动物药品和饲料添加剂监管的“方法灵敏度(SOM)”提案,采用初步分析来确定一种化合物是必须符合疑似致癌物的要求还是一般食品安全(GFS)的要求。药物消除的代谢和动力学在用于这两套监管标准的六步程序中起着重要作用。这两套标准之间唯一显著的差异在于所需的测试程度。然而,这种差异通常要到实验室动物慢性研究中致癌性的阳性结果引发对药物或饲料添加剂代谢的进一步评估时才会显现出来。对于SOM和GFS而言,代谢信息都将用于确定测试物种的适宜性以及帮助选择用于残留分析的化合物。食用动物体内的残留消除动力学在毒性测试物种品系的选择以及食品中残留分析化合物的选择中也起着不可或缺的作用。此外,消除动力学用于设定安全停药期。文中还讨论了指南的制定。

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