Literature DB >> 17484754

Pharmacoresistance in epilepsy: a pilot PET study with the P-glycoprotein substrate R-[(11)C]verapamil.

Oliver Langer1, Martin Bauer1, Alexander Hammers1, Rudolf Karch1, Ekaterina Pataraia1, Matthias J Koepp1, Aiman Abrahim1, Gert Luurtsema1, Martin Brunner1, Raute Sunder-Plassmann1, Friedrich Zimprich1, Christian Joukhadar1, Stephan Gentzsch1, Robert Dudczak1, Kurt Kletter1, Markus Müller1, Christoph Baumgartner1.   

Abstract

PURPOSE AND METHODS: Regional overexpression of the multidrug transporter P-glycoprotein (P-gp) in epileptic brain tissue may lower target site concentrations of antiepileptic drugs and thus contribute to pharmacoresistance in epilepsy. We used the P-gp substrate R-[(11)C]verapamil and positron emission tomography (PET) to test for differences in P-gp activity between epileptogenic and nonepileptogenic brain regions of patients with drug-resistant unilateral temporal lobe epilepsy (n = 7). We compared R-[(11)C]verapamil kinetics in homologous brain volumes of interest (VOIs) located ipsilateral and contralateral to the seizure focus.
RESULTS: Among different VOIs, radioactivity was highest in the choroid plexus. The hippocampal VOI could not be used for data analysis because it was contaminated by spill-in of radioactivity from the adjacent choroid plexus. In several other temporal lobe regions that are known to be involved in seizure generation and propagation ipsilateral influx rate constants K(1) and efflux rate constants k(2) of R-[(11)C]verapamil were descriptively increased as compared to the contralateral side. Parameter asymmetries were most prominent in parahippocampal and ambient gyrus (K(1), range: -3.8% to +22.3%; k(2), range: -2.3% to +43.9%), amygdala (K(1), range: -20.6% to +31.3%; k(2), range: -18.0% to +38.9%), medial anterior temporal lobe (K(1), range: -8.3% to +14.5%; k(2), range: -14.5% to +31.0%) and lateral anterior temporal lobe (K(1), range: -20.7% to +16.8%; k(2), range: -24.4% to +22.6%). In contrast to temporal lobe VOIs, asymmetries were minimal in a region presumably not involved in epileptogenesis located outside the temporal lobe (superior parietal gyrus, K(1), range: -3.7% to +4.5%; k(2), range: -4.2% to +5.8%). In 5 of 7 patients, ipsilateral efflux (k(2)) increases were more pronounced than ipsilateral influx (K(1)) increases, which resulted in ipsilateral reductions (10%-26%) of R-[(11)C]verapamil distribution volumes (DV). However, for none of the examined brain regions, any of the differences in K(1), k(2) and DV between the epileptogenic and the nonepileptogenic hemisphere reached statistical significance (p > 0.05, Wilcoxon matched pairs test).
CONCLUSIONS: Even though we failed to detect statistically significant differences in R-[(11)C]verapamil model parameters between epileptogenic and nonepileptogenic brain regions, it cannot be excluded from our pilot data in a small sample size of patients that regionally enhanced P-gp activity might contribute to drug resistance in some patients with temporal lobe epilepsy.

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Year:  2007        PMID: 17484754     DOI: 10.1111/j.1528-1167.2007.01116.x

Source DB:  PubMed          Journal:  Epilepsia        ISSN: 0013-9580            Impact factor:   5.864


  37 in total

1.  Pgp-mediated interaction between (R)-[11C]verapamil and tariquidar at the human blood-brain barrier: a comparison with rat data.

Authors:  M Bauer; M Zeitlinger; R Karch; P Matzneller; J Stanek; W Jäger; M Böhmdorfer; W Wadsak; M Mitterhauser; J P Bankstahl; W Löscher; M Koepp; C Kuntner; M Müller; Oliver Langer
Journal:  Clin Pharmacol Ther       Date:  2011-12-14       Impact factor: 6.875

Review 2.  Imaging of P-glycoprotein function and expression to elucidate mechanisms of pharmacoresistance in epilepsy.

Authors:  Wolfgang Löscher; Oliver Langer
Journal:  Curr Top Med Chem       Date:  2010       Impact factor: 3.295

3.  New developments in antiepileptic drug resistance: an integrative view.

Authors:  Dieter Schmidt; Wolfgang Löscher
Journal:  Epilepsy Curr       Date:  2009 Mar-Apr       Impact factor: 7.500

4.  Evaluation of [18F]MC225 as a PET radiotracer for measuring P-glycoprotein function at the blood-brain barrier in rats: Kinetics, metabolism, and selectivity.

Authors:  Heli Savolainen; Albert D Windhorst; Philip H Elsinga; Mariangela Cantore; Nicola A Colabufo; Antoon Tm Willemsen; Gert Luurtsema
Journal:  J Cereb Blood Flow Metab       Date:  2016-01-01       Impact factor: 6.200

5.  [MUV researcher of the month, March 2015].

Authors:  Martin Bauer
Journal:  Wien Klin Wochenschr       Date:  2015-03       Impact factor: 1.704

6.  Celecoxib treatment restores pharmacosensitivity in a rat model of pharmacoresistant epilepsy.

Authors:  J Schlichtiger; A Pekcec; H Bartmann; P Winter; C Fuest; J Soerensen; H Potschka
Journal:  Br J Pharmacol       Date:  2010-07       Impact factor: 8.739

7.  Assessment of regional differences in tariquidar-induced P-glycoprotein modulation at the human blood-brain barrier.

Authors:  Martin Bauer; Rudolf Karch; Friederike Neumann; Claudia C Wagner; Kurt Kletter; Markus Müller; Wolfgang Löscher; Markus Zeitlinger; Oliver Langer
Journal:  J Cereb Blood Flow Metab       Date:  2009-12-16       Impact factor: 6.200

8.  Dose-response assessment of tariquidar and elacridar and regional quantification of P-glycoprotein inhibition at the rat blood-brain barrier using (R)-[(11)C]verapamil PET.

Authors:  Claudia Kuntner; Jens P Bankstahl; Marion Bankstahl; Johann Stanek; Thomas Wanek; Gloria Stundner; Rudolf Karch; Rebecca Brauner; Martin Meier; Xiaoqi Ding; Markus Müller; Wolfgang Löscher; Oliver Langer
Journal:  Eur J Nucl Med Mol Imaging       Date:  2009-12-17       Impact factor: 9.236

Review 9.  Advances in PET imaging of P-glycoprotein function at the blood-brain barrier.

Authors:  Stina Syvänen; Jonas Eriksson
Journal:  ACS Chem Neurosci       Date:  2012-12-04       Impact factor: 4.418

Review 10.  Imaging the function of P-glycoprotein with radiotracers: pharmacokinetics and in vivo applications.

Authors:  P Kannan; C John; S S Zoghbi; C Halldin; M M Gottesman; R B Innis; M D Hall
Journal:  Clin Pharmacol Ther       Date:  2009-07-22       Impact factor: 6.875

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