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Neuropharmacological reassessment of the discriminative stimulus properties ofd-lysergic acid diethylamide (LSD)

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Abstract

The neuropharmacological mechanisms underlying the behavioral effects ofd-lysergic acid diethylamide (LSD) were assessed by comparing the discriminative stimulus properties of LSD with those of agonists and antagonists that act selectively at putative serotonin (5-hydroxytryptamine; 5-HT) receptor subtypes (5-HT1 and 5-HT2). Male Sprague-Dawley rats (N=23) were trained to discriminate LSD (0.08 mg/kg) from saline and given substitution tests with the following agents: 8-hydroxy-2(di-n-propylamino) tetralin (8-OHDPAT; 0.02–0.64 mg/kg), Ru 24969 (0.2–3.2 mg/kg),m-chlorophenylpiperazine (MCPP; 0.1–1.6 mg/kg), 1-(m-trifluoromethylphenyl)piperazine (TFMPP; 0.1–1.6 mg/kg), and quipazine (0.2–3.2 mg/kg). Only quipazine mimicked LSD. In combination tests, BC 105 (0.2–3.2 mg/kg), 2-bromolysergic acid diethylamide (BOL; 0.1–1.6 mg/kg), Ly 53857 (0.4–3.2 mg/kg), metergoline (0.05–0.8 mg/kg), ketanserin (0.2–3.2 mg/kg), and pipenperone (0.0025–0.08 mg/kg), all of which act as 5-HT2 antagonists, blocked the LSD cue; only spiperone (0.02–0.32 mg/kg) was without effect. Although commonalities may exist among “5-HT agonists”, the present results demonstrate that such “agonists” are not identical. Since putative 5-HT1 agonists do not mimic LSD and the LSD cue is potently blocked by 5-HT2 antagonists, it appears that 5-HT2 neuronal systems are of greater importance than 5-HT1 systems in mediating the discriminative stimulus and, perhaps, other effects of LSD.

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References

  • Ahlenius S, Larsson K, Svensson L, Hjorth S, Carlsson A, Lindberg P, Wikstrom H, Sanchez D, Arvidsson L-E, Hacksell U, Nilsson, JLG (1981) Effect of a new type of 5-HT receptor agonist on male rat sexual behavior. Pharmacol Biochem Behav 15:785–792

    Google Scholar 

  • Appel JB, White FJ, Holohean AM (1982) Analyzing mechanism(s) of hallucinogenic drug action with drug discrimination procedures. Neurosci Biobehav Rev 6:529–536

    Google Scholar 

  • Barbaccia ML, Brunello N, Chuang D-M, Costa E (1983) Serotonin-elicited amplification of adenylate cyclase activity in hippocampal membranes from adult rat. J Neurochem 40:1671–1679

    Google Scholar 

  • Blackshear MA, Steranka LR, Sanders-Bush E (1981) Multiple serotonin receptors: Regional distribution and effect of raphe lesions. Eur J Pharmacol 76:325–334

    Google Scholar 

  • Cohen ML, Fuller RW, Kurz KD (1983) Ly 53857, a selective and potent serotonergic (5-HT2) receptor antagonist, does not lower blood pressure in the spontaneously hypertensive rat. J Pharmacol Exp Ther 227:327–333

    Google Scholar 

  • Colpaert FC, Niemegeers CJE, Janssen PAJ (1982) A drug discrimination analysis of lysergic acid diethylamide (LSD): In vivo agonist and antagonist effects of purported serotonin antagonists and of pirenperone, an LSD-antagonist. J Pharmacol Exp Ther 221:206–214

    Google Scholar 

  • Cunningham KA, Callahan PM, Appel JB (1985) Similarities in the stimulus effects of 8-hydroxy-2-(di-n-propylamino)tetralin (8-OHDPAT), buspirone and TVX Q 7821: Implications for understanding the actions of novel anxiolytics? Soc Neurosci Abstr 11:45

    Google Scholar 

  • Euvrard C, Boissier JR (1980) Biochemical assessment of the central serotonin agonist activity of Ru 24969 (a piperdinyl indole). Eur J Pharmacol 63:65–72

    Google Scholar 

  • Extance K, Goudie AJ (1981) Inter-animal olfactory cues in operant drug discrimination procedures in rats. Psychopharmacology 73:363–371

    Google Scholar 

  • Friedman RL, Barrett RJ, Sanders-Bush E (1984) Discriminative stimulus properties of quipazine: Mediation by serotonin2-binding sites. J Pharmacol Exp Ther 228:628–635

    Google Scholar 

  • Fuller RW, Snoddy HD, Mason NR, Hemrick-Luecke SK, Clemens JA (1981a) Substituted piperazines as central serotonin agonists: Comparative specificity of the post-synaptic actions of quipazine andm-trifluoromethylphenylpiperazine. J Pharmacol Exp Ther 218:636–641

    Google Scholar 

  • Fuller RW, Snoddy HD, Mason NR, Owen JE (1981b) Disposition and pharmacological effects ofm-chlorophenylpiperazine in rats. Neuropharmacology 20:155–162

    Google Scholar 

  • Glennon RA, Young R, Rosecrans JA (1983) Antagonism of the effects of the hallucinogen DOM and the purported serotonin agonist quipazine by 5-HT2 antagonists. Eur J Pharmacol 91:189–196

    Google Scholar 

  • Gozlan H, El Mestikawy S, Pichat L, Glowinski J, Hamon M (1983) Identification of presynaptic autoreceptors using a new ligand3H-PAT. Nature 305:140–142

    Google Scholar 

  • Hamon M, Bourgoin S, Gozlan H, Hall MD, Goetz C, Artaud F, Horn AS (1984) Biochemical evidence for the 5-HT agonist properties of PAT (8-hydroxy(2-DI-n-propylamino)tetralin) in the rat brain. Eur J Pharmacol 100:263–276

    Google Scholar 

  • Hamon M, Nelson DL, Herbet A, Glowinski J (1980) Multiple receptors for serotonin in the rat brain. In: Pepeu G, Kuhar MJ, Enna SF (eds) Receptors for neurotransmitters and peptide hormones, Raven, New York, pp 223–233

    Google Scholar 

  • Heym J, Rasmussen K, Jacobs BL (1984) Some behavioral effects of hallucinogens are mediated by a post-synaptic serotonergic action: Evidence from single unit studies in freely moving cats. Eur J Pharmacol 101:57–68

    Google Scholar 

  • Hjorth S, Carlsson A, Lindberg P, Sanchez D, Wikstrom H, Arvidsson L-E, Hacksell U, Nilsson JLG (1982) 8-Hydroxy-2-(Di-n-propyl amino) tetralin, 8-OHDPAT, a potent selective simplified ergot congener with central 5-HT-receptor stimulating activity. J Neural Transm 55:169–188

    Google Scholar 

  • Iversen SD (1984) 5-HT and anxiety. Neuropharmacology 23:1553–1560

    Google Scholar 

  • Jacobs BL (1976) An animal behavior model for studying central serotonergic synapses. Life Sci 19:777–785

    Google Scholar 

  • King R, Faull KF, Stahl SM, Meffort IN, Thiemann S, Barchas JD, Berger PA (1985) Serotonin and schizophrenia: Correlation between serotonergic activity and schizomotor behavior. Psychiatry Res 14:235–240

    Google Scholar 

  • Kuhn DM, White FJ, Appel JB (1978) The discriminative stimulus properties of LSD: Mechanism of action. Neuropharmacology 17:257–263

    Google Scholar 

  • Langer SZ, Moret C (1982) Citalopram antagonizes the stimulation by lysergic acid diethylamide of presynaptic inhibitory autoreceptors in the rat hypothalamus. J Pharmacol Exp Ther 222:220–226

    Google Scholar 

  • Leysen JE, Awouters F, Kennis L, Laduron PM, Vanderberk J, Janssen PAJ (1981) Receptor binding profile of R 41468, a novel antagonist at serotonin2 receptors. Life Sci 28:1015–1022

    Google Scholar 

  • Lucki I, Nobler MS, Frazer A (1984) Differential actions of serotonin antagonists on two behavioral models of serotonin activation in the rat. J Pharmacol Exp Ther 228:133–139

    Google Scholar 

  • Middlemiss DN (1984) 8-Hydroxy-2-(DI-n-propylamino) tetralin is devoid of activity at the 5-hydroxytryptamine autoreceptor in rat brain. Implications for the proposed link between the autoreceptor and the3H-5-HT recognition site. Naunyn-Schmiedeberg's Arch Pharmacol 327:18–22

    Google Scholar 

  • Mokler DJ, Commissaris RL, Warner MR, Rech RH (1983) Blockade of the behavioral effects of lysergic acid diethylamide, quipazine and lisuride by 5-hydroxytryptamine antagonists. J Pharmacol Exp Ther 227:557–562

    Google Scholar 

  • Nielsen EB, Ginn SR, Cunningham KA, Appel JB (1985) Antagonism of the LSD cue by putative serotonin antagonists: Relationship to inhibition of in vivo3H-spiroperidol binding. Behav Brain Res 16:171–176

    Google Scholar 

  • Pedigo NW, Yamamura HI, Nelson DL (1981) Discrimination of multiple3H-5-hydroxytryptamine binding sites by the neuroleptic spiperone in rat brain. J Neurochem 36:220–226

    Google Scholar 

  • Peroutka SJ, Snyder SH (1979) Multiple serotonin receptors: Differential binding of3H-5-hydroxytrptamine,3H-lysergic acid diethylamide and3H-spiroperidol-labeled serotonin receptor binding. Science 210:88–90

    Google Scholar 

  • Riblet LA, Taylor DP (1981) Pharmacology and neurochemistry of trazodone. J Clin Psychopharmacol 1:17–22

    Google Scholar 

  • Saminin R, Mennini T, Ferraris A, Bendotti C, Borsini F (1980) Hyper- and hyposensitivity of central serotonin receptors:3H-serotonin binding and functional studies in the rat. Brain Res 189:449–457

    Google Scholar 

  • Sills MA, Wolfe BB, Frazer A (1984) Determination of selective and non-selective compounds for the 5-HT1A and 5-HT1B receptor subtypes in rat frontal cortes. J Pharmacol Exp Ther 231:480–487

    Google Scholar 

  • Sloviter RS, Drust EG, Damiano BP, Connor JD (1980) A common mechanism for lysergic acid, indolealkylamine and phenethylamine hallucinogens: Serotonergic mediations of behavioral effects in rats. J Pharmacol Exp Ther 214:231–238

    Google Scholar 

  • Spencer DG Jr, Glaser T, Schuurman T, Traber J (1984) Behavioral and neurochemical correlates of pharmacology involving the 5HT1 receptor. Soc Neurosci Abstr 10:1072

    Google Scholar 

  • Van Praag HM (1982) Neurotransmitters and depression. Part A: Indoleamines and depression. In: Beumont PJV, Burrows GD (eds) Handbook of psychiatry and endocrinology, Elsevier Biomedical, Amsterdam, pp 267–290

    Google Scholar 

  • White FJ, Appel JB (1982) Training dose as a factor in LSD-saline discrimination. Psychopharmacology 76:20–25

    Google Scholar 

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Cunningham, K.A., Appel, J.B. Neuropharmacological reassessment of the discriminative stimulus properties ofd-lysergic acid diethylamide (LSD). Psychopharmacologia 91, 67–73 (1987). https://doi.org/10.1007/BF00690929

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  • DOI: https://doi.org/10.1007/BF00690929

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