In Vivo Blood-Brain Barrier Transport of Oxycodone in the Rat: Indications for Active Influx and Implications for Pharmacokinetics/Pharmacodynamics
Open Access
- 1 September 2006
- journal article
- Published by Elsevier in Drug Metabolism and Disposition
- Vol. 34 (9) , 1624-1631
- https://doi.org/10.1124/dmd.106.009746
Abstract
The blood-brain barrier (BBB) transport of oxycodone was studied in rats. Microdialysis probes were inserted into the striatum and vena jugularis. Ten animals were given a bolus dose followed by a 120-min constant rate infusion to study the steady-state concepts of oxycodone BBB equilibration. Another 10 animals were given a 60-min constant rate infusion to study the rate of equilibration across the BBB. Oxycodone-D3 was used as a calibrator for the microdialysis experiments. The samples were analyzed with a liquid chromatography-tandem mass spectrometry method and a population pharmacokinetic model was used to simultaneously fit all the data using NONMEM. A two-compartment model which allowed for a delay between the venous and arterial compartments best described the pharmacokinetics for oxycodone in blood and plasma, whereas a one-compartment model was sufficient to describe the pharmacokinetics in the brain. The BBB transport of oxycodone was parameterized as CLin and Kp,uu. CLin describes the clearance of oxycodone across the BBB into the brain, whereas Kp,uu describes the extent of drug equilibration across the BBB. CLin across the BBB was estimated to 1910 μl/min · g brain. Kp,uu was estimated to 3.0, meaning that the unbound concentration of oxycodone in brain was 3 times higher than in blood, which is an indication of active influx of oxycodone at the BBB. This is the first evidence of an opioid having an unbound steady-state concentration in brain that is higher than unity, which can explain potency discrepancies between oxycodone and other opioids.This publication has 37 references indexed in Scilit:
- Implications of genetic polymorphisms in drug transporters for pharmacotherapyCancer Letters, 2006
- Comparison of the Antinociceptive Response to Morphine and Morphine-Like Compounds in Male and Female Sprague-Dawley RatsThe Journal of Pharmacology and Experimental Therapeutics, 2006
- Oxycodone Pharmacokinetics and Pharmacodynamics in the Rat in the Presence of the P-Glycoprotein Inhibitor PSC833Journal of Pharmaceutical Sciences, 2005
- Evidence for an active transport of morphine‐6‐β‐d‐glucuronide but not P‐glycoprotein‐mediated at the blood–brain barrierJournal of Neurochemistry, 2003
- Investigation of Transport Mechanism of Pentazocine across the Blood‐Brain Barrier Using the In Situ Rat Brain Perfusion TechniqueJournal of Pharmaceutical Sciences, 2002
- The use of microdialysis in CNS drug delivery studiesAdvanced Drug Delivery Reviews, 2000
- Modelling of the blood‐brain barrier transport of morphine‐3‐glucuronide studied using microdialysis in the rat: involvement of probenecid‐sensitive transportBritish Journal of Pharmacology, 2000
- Changes in blood-brain barrier permeability associated with insertion of brain cannulas and microdialysis probesBrain Research, 1998
- Concepts basic to pharmacokineticsPharmacology & Therapeutics, 1981
- On the measurement of extracellular space in slices prepared from different rat brain areasNeuropharmacology, 1973