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1.
J Pharmacol Exp Ther ; 361(1): 68-86, 2017 Apr.
Article in English | MEDLINE | ID: mdl-28138040

ABSTRACT

The ability of the N-methyl-d-aspartate receptor antagonist ketamine to alleviate symptoms in patients suffering from treatment-resistant depression (TRD) is well documented. In this paper, we directly compare in vivo biologic responses in rodents elicited by a recently discovered metabotropic glutamate (mGlu) 2/3 receptor antagonist 2-amino-3-[(3,4-difluorophenyl)sulfanylmethyl]-4-hydroxy-bicyclo[3.1.0]hexane-2,6-dicarboxylic acid (LY3020371) with those produced by ketamine. Both LY3020371 and ketamine increased the number of spontaneously active dopamine cells in the ventral tegmental area of anesthetized rats, increased O2 in the anterior cingulate cortex, promoted wakefulness, enhanced the efflux of biogenic amines in the prefrontal cortex, and produced antidepressant-related behavioral effects in rodent models. The ability of LY3020371 to produce antidepressant-like effects in the forced-swim assay in rats was associated with cerebrospinal fluid (CSF) drug levels that matched concentrations required for functional antagonist activity in native rat brain tissue preparations. Metabolomic pathway analyses from analytes recovered from rat CSF and hippocampus demonstrated that both LY3020371 and ketamine activated common pathways involving GRIA2 and ADORA1. A diester analog of LY3020371 [bis(((isopropoxycarbonyl)oxy)-methyl) (1S,2R,3S,4S,5R,6R)-2-amino-3-(((3,4-difluorophenyl)thio)methyl)-4-hydroxy-bicyclo[3.1.0]hexane-2,6-dicarboxylate (LY3027788)] was an effective oral prodrug; when given orally, it recapitulated effects of intravenous doses of LY3020371 in the forced-swim and wake-promotion assays, and augmented the antidepressant-like effects of fluoxetine or citalopram without altering plasma or brain levels of these compounds. The broad overlap of biologic responses produced by LY3020371 and ketamine supports the hypothesis that mGlu2/3 receptor blockade might be a novel therapeutic approach for the treatment of TRD patients. LY3020371 and LY3027788 represent molecules that are ready for clinical tests of this hypothesis.


Subject(s)
Antidepressive Agents/therapeutic use , Excitatory Amino Acid Antagonists/therapeutic use , Ketamine/therapeutic use , Receptors, Metabotropic Glutamate/antagonists & inhibitors , Receptors, N-Methyl-D-Aspartate/antagonists & inhibitors , Animals , Antidepressive Agents/pharmacology , Depression/drug therapy , Depression/metabolism , Depression/psychology , Excitatory Amino Acid Antagonists/pharmacology , Hippocampus/drug effects , Hippocampus/metabolism , Ketamine/pharmacology , Male , Rats , Rats, Sprague-Dawley , Rats, Wistar , Receptors, Metabotropic Glutamate/metabolism , Receptors, Metabotropic Glutamate/physiology , Receptors, N-Methyl-D-Aspartate/metabolism , Treatment Outcome
2.
J Pharmacol Exp Ther ; 358(1): 71-82, 2016 07.
Article in English | MEDLINE | ID: mdl-27189960

ABSTRACT

Ketamine is a rapidly acting antidepressant in patients with treatment-resistant depression (TRD). Although the mechanisms underlying these effects are not fully established, inquiry to date has focused on the triggering of synaptogenesis transduction pathways via glutamatergic mechanisms. Preclinical data suggest that blockade of metabotropic glutamate (mGlu2/3) receptors shares many overlapping features and mechanisms with ketamine and may also provide rapid efficacy for TRD patients. Central dopamine circuitry is recognized as an end target for mood regulation and hedonic valuation and yet has been largely neglected in mechanistic studies of antidepressant-relevant effects of ketamine. Herein, we evaluated the changes in dopaminergic neurotransmission after acute administration of ketamine and the mGlu2/3 receptor antagonist LY341495 [(2S)-2-amino-2-[(1S,2S)-2-carboxycycloprop-1-yl]-3-(xanth-9-yl) propanoic acid ] in preclinical models using electrophysiologic, neurochemical, and behavioral endpoints. When given acutely, both ketamine and LY341495, but not the selective serotonin reuptake inhibitor (SSRI) citalopram, increased the number of spontaneously active dopamine neurons in the ventral tegmental area (VTA), increased extracellular levels of dopamine in the nucleus accumbens and prefrontal cortex, and enhanced the locomotor stimulatory effects of the dopamine D2/3 receptor agonist quinpirole. Further, both ketamine and LY341495 reduced immobility time in the tail-suspension assay in CD1 mice, which are relatively resistant to SSRI antidepressants. Both the VTA neuronal activation and the antidepressant phenotype induced by ketamine and LY341495 were attenuated by the α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor antagonist 1,2,3,4-tetrahydro-6-nitro-2,3-dioxo- (9CI)-benzo[f]quinoxaline-7-sulfonamide, indicating AMPA-dependent effects. These findings provide another overlapping mechanism of action of ketamine and mGlu2/3 receptor antagonism that differentiates them from conventional antidepressants and thus support the potential rapidly acting antidepressant actions of mGlu2/3 receptor antagonism in patients.


Subject(s)
Amino Acids/pharmacology , Antidepressive Agents/pharmacology , Dopamine/metabolism , Ketamine/pharmacology , Receptors, Metabotropic Glutamate/antagonists & inhibitors , Xanthenes/pharmacology , Action Potentials/drug effects , Animals , Dose-Response Relationship, Drug , Excitatory Amino Acid Antagonists/pharmacology , Male , Mice, Inbred BALB C , Microdialysis , Motor Activity/drug effects , Neurons/drug effects , Neurons/metabolism , Nucleus Accumbens/drug effects , Nucleus Accumbens/metabolism , Prefrontal Cortex/drug effects , Prefrontal Cortex/metabolism , Quinoxalines/pharmacology , Rats, Wistar , Receptors, AMPA/antagonists & inhibitors , Ventral Tegmental Area/drug effects , Ventral Tegmental Area/metabolism
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