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用于广谱抗菌剂吡啶硫酮锌的基于生理学的药代动力学模型:I. 模型开发与验证

A physiologically based pharmacokinetic model for the broad-spectrum antimicrobial zinc pyrithione: I. Development and verification.

作者信息

Diamond Gary L, Skoulis Nicholas P, Jeffcoat A Robert, Nash J Frank

机构信息

a SRC, Inc ., North Syracuse , New York , USA.

b LONZA America, Inc ., Allendale , New Jersey , USA.

出版信息

J Toxicol Environ Health A. 2017;80(2):69-90. doi: 10.1080/15287394.2016.1245123. Epub 2017 Jan 13.

Abstract

The broad-spectrum antimicrobial zinc pyrithione (ZnPT) is used in numerous products ranging from in-can preservative/mildicide in paints to antidandruff shampoo. Although products containing ZnPT have a long history of safe use, regulatory agencies routinely set limits of exposure based upon toxicological considerations. The objective of this study was to create a physiologically based pharmacokinetic (PBPK) model for ZnPT in the rat for improving dose-response analysis of ZnPT-induced toxicity, reversible hindlimb weakness, the endpoint that has been used as the basis for ZnPT risk assessments. A rat oral PBPK model was developed that includes compartments for plasma, liver, kidneys, muscle, brain, and rapidly and slowly perfused tissues. Pyrithione metabolism to 2-(methylsulfonyl)pyridine (MSP) and glucuronide conjugates was incorporated into the model. The model was parameterized and optimized based upon data from single-dose intravenous (iv) and oral gavage pharmacokinetic studies of radiolabeled pyrithione ([C]PT) administered as zinc [C]-pyrithione (Zn-[C]PT) to adult female rats. It was further evaluated and refined using data from repeated, multidose oral gavage and dietary studies of Zn[C]PT in the adult female rat that included measurements of plasma PT concentration, the putative toxic species. The model replicated the observed short-term elimination kinetics of PT in plasma and [C]PT in whole blood following single doses and longer term temporal patterns of plasma and blood concentrations during repeated dosing schedules. The model also accounted for production and rapid elimination of S-glucuronide conjugates (SG) of 2-pyridinethiol and 2-pyridinethiol-1-oxide in urine, as well as production and slower elimination of MSP, the major [C]PT species in blood within several hours following administration of ZnPT. The model provided internal dosimetry predictions for a benchmark dose (BMD) analysis of hindlimb weakness in rats, and was used to combine gavage and dietary studies into a single internal dose-response model with area under the curve (AUC) for plasma PT as the internal dose metric. This PBPK model has predictive validity for calculating internal doses of PT and/or [C]PT from different routes of exposure in the rat.

摘要

广谱抗菌剂吡啶硫酮锌(ZnPT)被用于众多产品中,从涂料中的罐装防腐剂/防霉剂到去屑洗发水。尽管含ZnPT的产品有着长期安全使用的历史,但监管机构通常会基于毒理学考量设定接触限值。本研究的目的是建立大鼠体内基于生理的药代动力学(PBPK)模型,以改进对ZnPT诱导毒性(可逆性后肢无力,该终点已被用作ZnPT风险评估的基础)的剂量反应分析。建立了一个大鼠口服PBPK模型,该模型包括血浆、肝脏、肾脏、肌肉、大脑以及快速和缓慢灌注组织的隔室。将吡啶硫酮代谢为2 -(甲基磺酰基)吡啶(MSP)和葡糖醛酸共轭物纳入模型。该模型基于对成年雌性大鼠静脉注射(iv)和灌胃给予放射性标记吡啶硫酮([C]PT)(以锌[C] - 吡啶硫酮(Zn - [C]PT)形式)的单剂量药代动力学研究数据进行参数化和优化。使用成年雌性大鼠重复多剂量灌胃和饮食研究的数据对其进行进一步评估和完善,这些研究包括血浆PT浓度(假定的有毒物质)的测量。该模型复制了单剂量后血浆中PT和全血中[C]PT观察到的短期消除动力学,以及重复给药方案期间血浆和血液浓度的长期时间模式。该模型还解释了尿液中2 - 吡啶硫醇和2 - 吡啶硫醇 - 1 - 氧化物的S - 葡糖醛酸共轭物(SG)的产生和快速消除,以及ZnPT给药后数小时内血液中主要[C]PT物质MSP的产生和较慢消除。该模型为大鼠后肢无力的基准剂量(BMD)分析提供了内部剂量学预测,并用于将灌胃和饮食研究合并为一个以血浆PT曲线下面积(AUC)作为内部剂量指标的单一内部剂量反应模型。这个PBPK模型对于计算大鼠不同暴露途径下PT和/或[C]PT的内部剂量具有预测有效性。

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