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Pharmacokinetics of Paracetamol in Gottingen Minipigs: In Vivo Studies and Modeling to Elucidate Physiological Determinants of Absorption

机译:扑热息痛在哥廷根小型猪中的药代动力学:体内研究和模型,阐明吸收的生理决定因素

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Purpose Onset and rate of gastric emptying are important determinants of drug absorption after oral dosing. Therefore, robust estimates of these parameters are needed in physiologically based absorption models to predict reliably plasma concentration time profiles. For human and some other laboratory animals, reasonable parameterization of gastric emptying has been established. However gastric emptying is less well characterized in minipigs, a large animal model rapidly gaining importance in pharmaceutical research.Methods A pharmacokinetic crossover study using different dosage forms of paracetamol (intravenous and oral solution, capsule and tablet) was conducted in four male and four female Gottingen minipigs-after an overnight fast. Deconvolution analysis was performed to determine the absorption kinetics. Estimated lag times and first order gastric emptying parameters were incorporated in a previously published PBPK model of the minipig and simulations verified. Postmortem assessments of minipig stomachs were made after different fasting protocols.Results Fraction of dose absorbed vs. time profiles showed high interindividual variability, comparable to human fed state absorption. Mean gastric transit times were determined to be 0.63 h, 1.36 h, and 0.73 h for solution, capsules, and tablets, respectively. Postmortem assessment confirmed that minipig stomachs were not empty after an overnight fast.Conclusions Gastric transit times in overnight fasted minipigs are longer than those observed in humans. This is most likely caused by delayed and incomplete food emptying and further work is needed to develop feasible and effective fasting protocols for minipigs.
机译:目的胃排空的发生和速率是口服给药后药物吸收的重要决定因素。因此,在基于生理的吸收模型中需要对这些参数进行可靠的估计,以可靠地预测血浆浓度时间曲线。对于人类和其他一些实验动物,已经建立了合理的胃排空参数。但是在小型猪中胃排空的特征较差,大型动物模型在药物研究中迅速得到重视。方法在四只雄性和四只雌性中使用不同剂量形式的扑热息痛(静脉和口服溶液,胶囊和片剂)进行药代动力学交叉研究。一夜禁食后的哥廷根小型猪。进行去卷积分析以确定吸收动力学。估计的滞后时间和一阶胃排空参数被纳入先前发布的小型猪的PBPK模型中,并进行了模拟验证。结果在不同的禁食方案后对小型猪的胃进行了事后评估。结果吸收剂量随时间变化的比例显示出较高的个体差异,可与人类进食状态下的吸收相媲美。对于溶液,胶囊和片剂,平均胃运输时间分别确定为0.63h,1.36h和0.73h。事后评估证实,禁食过夜的小型猪的胃不是空的。结论禁食过夜的小型猪的胃运输时间比人类观察到的要长。这很可能是由于食物排空延迟和不完全导致的,需要进一步的工作来开发可行且有效的小型猪禁食方案。

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