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Hepatobiliary excretion and brain distribution of caffeine in rats using microdialysis
Authors:Ming-Hwang Shyr  Chun-Hao Chang  Yen-Ju Hsieh
Institution:a Department of Anesthesiology, Buddhist Tzu Chi General Hospital, Hualien, Taiwan
b National Research Institute of Chinese Medicine, Taipei, Taiwan
c Institute of Pharmacology, School of Medicine, National Yang-Ming University, Taipei 112, Taiwan
d Institute of Traditional Medicine, School of Medicine, National Yang-Ming University, Taipei 112, Taiwan
e Department of Education and Research, Taipei City Hospital, Taipei, Taiwan
Abstract:To investigate the pharmacokinetic mechanism of hepatobiliary excretion and brain distribution of caffeine, this study uses a method based on microdialysis technique and liquid chromatography that allows continuous and concurrent in vivo monitoring of extracellular caffeine in the blood, brain and bile of anesthetized rats following the administration of caffeine (3 or 10 mg/kg, i.v.) through the femoral vein. Dialysates of the blood, brain and bile were directly injected onto the liquid chromatographic system and no further clean-up procedures were required. The study design consisted of two groups of six rats in parallel: the rats of the control group received caffeine (3 or 10 mg/kg, i.v.) alone and those of the cyclosporine treated-group were injected cyclosporine (10 mg/kg, i.v.) 10 min prior to caffeine administration (3 or 10 mg/kg, i.v.). The decline of caffeine in the blood, brain striatum and bile suggested that caffeine had rapid exchange and equilibration between the peripheral compartment and the central nervous system. In addition, the results indicated that caffeine underwent hepatobiliary excretion and was distributed into brain. When cyclosporine was co-administered, the pharmacokinetic parameters were not significantly altered. The results of this study reveal that the pharmacokinetic mechanism of hepatobiliary excretion and brain distribution of caffeine might not relate to P-glycoprotein.
Keywords:AUC  area under the concentration versus time curve  BBB  blood-brain barrier  Cl  clearance  Cmax  peak concentration  t1/2  elimination half-life  Tmax  time to reach peak concentration  Vss  volume of distribution at steady-state
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