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首页> 外文期刊>Biopharmaceutics and Drug Disposition >Pharmacokinetic Modelling of Blood-Brain Barrier Transport of Escitalopram in Rats
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Pharmacokinetic Modelling of Blood-Brain Barrier Transport of Escitalopram in Rats

机译:艾司西酞普兰大鼠血脑屏障转运的药代动力学模型

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摘要

This study examined the pharmacokinetics and distribution of escitalopram in the brain extracellular fluid in rats by the concurrent use of intracerebral microdialysis and serial blood sampling. Following three constant intravenous infusions, drug concentrations in the hippocampus and plasma were monitored for 6h. To estimate the integrated pharmacokinetics and intercompartmental transport parameters, including blood-brain barrier (BBB) transport over the entire dose range, unbound brain and plasma escitalopram concentration data from all doses were simultaneously analysed using compartmental modelling. The pharmacokinetic analysis revealed that systemic clearance decreased as a function of dose, which was incorporated in the integrated model. Escitalopram was rapidly and extensively transported across the BBB and distributed into the brain extracellular fluid. The modelling resulted in an estimated influx clearance into the brain of 535ul/min/g brain, resulting in an unbound brain-to-plasma AUC ratio of 0.8 independent of escitalopram dose. The model may be applied for preclinical evaluations or predictions of escitalopram concentration-time courses in plasma as well as at the target site in the CNS for various dosing scenarios. In addition, this modelling approach may also be valuable for studying BBB transport characteristics for other psychotropic agents.
机译:这项研究通过同时使用脑内微透析和连续血液采样检查了艾司西酞普兰在大鼠脑细胞外液中的药代动力学和分布。连续3次静脉滴注后,监测海马和血浆中的药物浓度6小时。为了评估在整个剂量范围内的综合药代动力学和小室间转运参数,包括血脑屏障(BBB)转运,使用隔室模型同时分析了所有剂量下未结合的脑和血浆艾司西酞普兰浓度数据。药代动力学分析表明,全身清除率随剂量而降低,已纳入综合模型。艾司西酞普兰被迅速,广泛地转运穿过血脑屏障,并分布到脑细胞外液中。该模型导致进入脑部的流入清除率估计为535ul / min / g大脑,与依西酞普兰剂量无关,未绑定的脑与血浆AUC比率为0.8。该模型可用于血浆以及中枢神经系统中靶点的依西酞普兰浓度-时间进程的临床前评估或预测,以用于各种给药方案。此外,这种建模方法对于研究其他精神病患者的血脑屏障转运特性可能也很有价值。

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