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Detection of benzodiazepine receptor occupancy in the human brain by positron emission tomography

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Abstract

Benzodiazepine receptor occupancy in the brain following oral administration of clonazepam (CZP) with a dose of 30 μg/kg in six healthy young men and a further dose of 50 μg/kg in one of the subjects was estimated by carbon-11 labeled Ro15-1788 and positron emission tomography (PET). The effects of CZP on the latency of auditory event-related potentials (P300) were also studied. Overall brain 11C uptake was depressed and the % inhibition of 11C uptake in the gray matter of the brain at 30 min after [11C]Ro15-1788 injection was 15.3–23.5% (mean, n=6) following 30 μg/kg CZP when compared with that in the control experiment without any previous treatment. The 11C uptake in the cerebral cortex in the subject who received both doses decreased in a dose-related manner after 30 μg/kg and 50 μg/kg CZP. The P300 latency was prolonged significantly by 30 μg/kg CZP [31.6±16.3 ms (mean±SD, n=6), P<0.05]. The P300 latency in the same subject was prolonged in a dose-related manner by 30 μg/kg and 50 μg/kg CZP. The technique using [11C]Ro15-1788 and PET permits comparison of the pharmacological effects with the percentage of receptor sites which benzodiazepines occupy in the human brain. P300 also seems to be useful to investigate the pharmacological effects of benzodiazepines.

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References

  • Ansseau M, Doumont A, Frenckell RV, Collard J (1984) Duration of benzodiazepine clinical activity: lack of direct relationship with plasma half-life. Psychopharmacology 84:293–298

    Google Scholar 

  • Beharrell GP, Hailey DM, McLaurin MK (1972) Determination of nitrazepam (Magadon) in plasma by electron capture gasliquid chromatography. J Choromatogr 70:45–52

    Google Scholar 

  • Bellantuono C, Reggi V, Tognoni G, Garattini S (1980) Benzodiazepines: clinical pharmacology and therapeutic use. Drugs 19:195–219

    Google Scholar 

  • Blackwood DHR, Christie JE (1986) The effects of physostigmine on memory and auditory P300 in Alzheimer-type dementia. Biol Psychiatry 21:557–560

    Google Scholar 

  • Callaway E (1984) Human information-processing: some effects of methylphenidate, age and scopolamine. Biol Psychiatry 19:649–662

    Google Scholar 

  • Chavoix C, Hantraye P, Brouillet E, Guibert B, Fukuda H, Sayette VDL, Fournier D, Naquet R, Maziere M (1988) Status epilepticus induced by pentylenetetrazole modulates in vivo [11C]Ro15-1788 binding to benzodiazepine receptors. Effects of ligands acting at the supramolecular receptor complex. Eur J Pharmacol 146:207–214

    Google Scholar 

  • Hantraye P, Kaijima M, Prenant C, Guibert B, Sastre J, Crouzel M, Naquet R, Comar D, Maziere M (1984) Central type benzodiazepine binding sites: a positron emission tomography study in the baboon's brain. Neurosci Lett 48:115–120

    Google Scholar 

  • Hantraye P, Brouillet E, Guibert B, Chavoix C, Fukuda H, Prenant C, Crouzel M, Naquet R, Maziere M (1987a) Pentylenetetrazol-induced seizure is not mediated by benzodiazepine receptors in vivo. Neuropharmacol 26:1509–1512

    Google Scholar 

  • Hantraye P, Chavoix C, Guibert B, Fukuda H, Brouillet E, Dodd RH, Prenant C, Crouzel M, Naquet R, Maziere M (1987b) Benzodiazepine receptors studied in living primates by positron emission tomography: inverse agonist interactions. Eur J Pharmacol 138:239–247

    Google Scholar 

  • Herning RI, Jones RT, Hooker WD, Tulunay FC (1985) Information processing components of the auditory event related potential are reduced by cocaine. Psychopharmacology 87:178–185

    Google Scholar 

  • Kutas M, McCarthy G, Donchin E (1977) Augmenting mental chronometry: the P300 as a measure of stimulus evaluation time. Science 197:792–795

    Google Scholar 

  • Loke WH, Hinrichs JV, Ghoneim MM (1985) Caffeine and diazepam: separate and combined effects on mood, memory, and psychomotor performance. Psychopharmacology 87:344–350

    Google Scholar 

  • MacCarthy G, Donchin E (1980) A metric for thought: a comparison of P300 latency and reaction time. Science 211:77–80

    Google Scholar 

  • Miller LG, Greenblatt DJ, Paul SM, Shader RI (1987) Benzodiazepine receptor occupancy in vivo: correlation with brain concentrations and pharmacodynamic actions. J Pharmacol Exp Ther 240:516–522

    Google Scholar 

  • Möhler H, Richards JG (1983) Benzodiazepine receptors in the central nervous system. In: Costa E (ed) The benzodiazepines: from molecular biology to clinical practice. Raven Press, New York, pp 93–116

    Google Scholar 

  • Naestoft J, Lund M, Larsen NE, Hvidberg EF (1973) Assay and pharmacokinetics of clonazepam in humans. Acta Neurol Scand [Suppl 49] 53:103–108

    Google Scholar 

  • Naito H, Wachi M, Nishida M (1987) Clinical effects and plasma concentrations of long-term clonazepam monotherapy in previously untreated epileptics. Acta Neurol Scand 76:58–63

    Google Scholar 

  • Naylor H, Halliday R, Callaway E (1985) The effect of methylphenidate on information processing. Psychopharmacology 86:90–95

    Google Scholar 

  • Pappata S, Samson Y, Chavoix C, Prenant C, Maziere M, Baron JC (1988) Regional specific binding of [11C]Ro15-1788 to central type benzodiazepine receptors in human brain: quantitative evaluation by PET. J Cereb Blood Flow Metab 8:304–313

    Google Scholar 

  • Persson A, Ehrin E, Eriksson L, Farde L, Hedstrom CG, Litton JE, Mindus P, Sedvall G (1985) Imaging of [11C]-labelled Ro15-1788 binding to benzodiazepine receptors in the human brain by positron emission tomography. J Psychiatr Res 19:609–622

    Google Scholar 

  • Richards JG, Möhler H (1984) Benzodiazepine receptors. Neuropharmacology 23:233–242

    Google Scholar 

  • Ritter W, Simson R, Vaughan HG, Friedman D (1979) A brain event related to the making of a sensory discrimination. Science 203:1358–1361

    Google Scholar 

  • Roy-Byrne PP, Uhde TW, Holcomb H, Thompson K, King AK, Weingartner H (1987) Effects of diazepam on cognitive process in normal subjects. Psychopharmacology 91:30–33

    Google Scholar 

  • Samson Y, Hantraye P, Baron J-C, Soussaline F, Comar D, Maziere M (1985) Kinetics and displacement of [11C]Ro15-1788, a benzodiazepine antagonist, studied in human brain in vivo by positron tomography. Eur J Pharmacol 110:247–251

    Google Scholar 

  • Shinotoh H, Yamasaki T, Inoue O, Itoh T, Suzuki K, Hashimoto K, Tateno Y, Ikehira H (1986) Visualization of specific binding sites of benzodiazepine in human brain. J Nucl Med 27:1593–1599

    Google Scholar 

  • Strauss J, Lewis JL, Klorman R, Peloquin L-J, Perlmutter RA, Salzman LF (1984) Effects of methylphenidate on young adults performance and event-related potentials in a vigilance and a paired-associates learning test. Psychophysiol 21:609–621

    Google Scholar 

  • Suzuki K, Inoue O, Hashimoto K, Yamasaki T, Kuchiki M, Tamate K (1985) Computer-controlled large scale production of high specific activity [11C]Ro15-1788 for PET studies of benzodiazepine receptors. Int J Appl Radiat Isot 36:971–976

    Google Scholar 

  • Takami K, Ueda K, Okajima K, Tanaka E, Nohara N, Tomitani T, Murayama H, Shishido F, Ishimatsu K, Ohgushi S, Inoue Y, Takakusa Y, Hayashi T, Nakase S (1983) Performace study of whole-body, multislice positron computed tomograph-Positologica II. IEEE Trans Nucl Sci NS-80:734–738

    Google Scholar 

  • Teo RKC, Ferguson DA (1986) The acute effects of ethanol on auditory event-related potentials. Psychopharmacology 90:179–184

    Google Scholar 

  • Whitehouse PJ, Trifiletti RR, Jones BE, Folstein S, Price DL, Snyder SH, Kuhar MJ (1985) Neurotransmitter receptor alterations in Huntington's disease: autoradiographic and homogenate studies with special reference to benzodiazepine receptor complexes. Ann Neurol 18:202–210

    Google Scholar 

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Shinotoh, H., Iyo, M., Yamada, T. et al. Detection of benzodiazepine receptor occupancy in the human brain by positron emission tomography. Psychopharmacology 99, 202–207 (1989). https://doi.org/10.1007/BF00442808

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