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大鼠中托莫西汀脑渗透及中枢神经系统药代动力学的微透析评估

Microdialysis evaluation of atomoxetine brain penetration and central nervous system pharmacokinetics in rats.

作者信息

Kielbasa William, Kalvass J Cory, Stratford Robert

机构信息

Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indiana 46285, USA.

出版信息

Drug Metab Dispos. 2009 Jan;37(1):137-42. doi: 10.1124/dmd.108.023119. Epub 2008 Oct 20.

Abstract

A comprehensive in vivo evaluation of brain penetrability and central nervous system (CNS) pharmacokinetics of atomoxetine in rats was conducted using brain microdialysis. We sought to determine the nature and extent of transport at the blood-brain barrier (BBB) and blood-cerebrospinal fluid barrier (BCB) and to characterize brain extracellular and cellular disposition. The steady-state extracellular fluid (ECF) to plasma unbound (uP) concentration ratio (C(ECF)/C(uP)=0.7) and the cerebrospinal fluid (CSF) to plasma unbound concentration ratio (C(CSF)/C(uP)=1.7) were both near unity, indicating that atomoxetine transport across the BBB and BCB is primarily passive. On the basis of the ratios of whole brain concentration to C(ECF) (C(B)/C(ECF)=170), brain cell (BC) concentration to C(ECF) (C(BC)/C(ECF)=219), and unbound brain cell concentration to C(ECF) (C(uBC)/C(ECF)=2.9), we conclude that whole brain concentration does not represent the concentration in the biophase and atomoxetine primarily partitions into brain cells. The distributional clearance at the BBB (Q(BBB)=0.00110 l/h) was estimated to be 12 times more rapid than that at the BCB (Q(BCB)=0.0000909 l/h) and similar to the clearances across brain parenchyma (CL(ECF-BC)=0.00216 l/h; CL(BC-ECF)=0.000934 l/h). In summary, the first detailed examination using a quantitative microdialysis technique to understand the brain disposition of atomoxetine was conducted. We determined that atomoxetine brain penetration is high, movements across the BBB and BCB occur predominantly by a passive mechanism, and rapid equilibration of ECF and CSF with plasma occurs.

摘要

采用脑微透析技术对大鼠体内托莫西汀的脑通透性和中枢神经系统(CNS)药代动力学进行了全面评估。我们试图确定血脑屏障(BBB)和血脑脊液屏障(BCB)处转运的性质和程度,并对脑内细胞外和细胞内分布进行表征。稳态细胞外液(ECF)与血浆未结合(uP)浓度比(C(ECF)/C(uP)=0.7)以及脑脊液(CSF)与血浆未结合浓度比(C(CSF)/C(uP)=1.7)均接近1,表明托莫西汀跨BBB和BCB的转运主要是被动转运。根据全脑浓度与C(ECF)的比值(C(B)/C(ECF)=170)、脑细胞(BC)浓度与C(ECF)的比值(C(BC)/C(ECF)=219)以及未结合脑细胞浓度与C(ECF)的比值(C(uBC)/C(ECF)=2.9),我们得出结论,全脑浓度并不代表生物相中的浓度,托莫西汀主要分布于脑细胞中。BBB处的分布清除率(Q(BBB)=0.00110 l/h)估计比BCB处的清除率(Q(BCB)=0.0000909 l/h)快12倍,且与脑实质的清除率相似(CL(ECF - BC)=0.00216 l/h;CL(BC - ECF)=0.000934 l/h)。总之,首次使用定量微透析技术对托莫西汀的脑内分布进行了详细研究。我们确定托莫西汀的脑渗透率较高,跨BBB和BCB的转运主要通过被动机制进行,且ECF和CSF与血浆能快速达到平衡。

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