Preclinical and clinical pharmacology of TPA023B, a GABAA receptor α2/α3 subtype-selective partial agonist

Author:

Atack JR1,Hallett DJ1,Tye S1,Wafford KA1,Ryan C2,Sanabria-Bohórquez SM2,Eng Wai-si2,Gibson RE2,Burns HD2,Dawson GR1,Carling RW1,Street LJ1,Pike A1,De Lepeleire I3,Van Laere K4,Bormans G4,de Hoon JN5,Van Hecken A5,McKernan RM1,Murphy MG6,Hargreaves RJ2

Affiliation:

1. Neuroscience Research Centre, Merck Sharp & Dohme Research Laboratories, Harlow, UK.

2. Imaging Research and Pharmacology, Merck Research Laboratories, West Point, PA, USA.

3. Clinical Pharmacology, Merck Sharp & Dohme Research Laboratories, Brussels, Belgium.

4. Department of Nuclear Medicine and Radiopharmacy, Katholieke Universiteit Leuven, Leuven, Belgium.

5. Department of Clinical Pharmacology, Katholieke Universiteit Leuven, Leuven, Belgium.

6. Clinical Pharmacology, Merck Research Laboratories, Bluebell, PA, USA.

Abstract

In the accompanying paper we describe how MRK-409 unexpectedly produced sedation in man at relatively low levels of GABAA receptor occupancy (∼10%). Since it was not clear whether this sedation was mediated via the α2/α3 or α1 GABAA subtype(s), we characterized the properties of TPA023B, a high-affinity imidazotriazine which, like MRK-409, has partial agonist efficacy at the α2 and α3 subtype but is an antagonist at the α1 subtype, at which MRK-409 has weak partial agonism. TPA023B gave dose- and time-dependent occupancy of rat brain GABAA receptors as measured using an in vivo [3H]flumazenil binding assay, with 50% occupancy corresponding to a respective dose and plasma drug concentration of 0.09 mg/kg and 19 ng/mL, the latter of which was similar to that observed in mice (25 ng/mL) and comparable to values obtained in baboon and man using [11C]flumazenil PET (10 and 5.8 ng/mL, respectively). TPA023B was anxiolytic in rodent and primate (squirrel monkey) models of anxiety (elevated plus maze, fear-potentiated startle, conditioned suppression of drinking, conditioned emotional response) yet had no significant effects in rodent or primate assays of ataxia and/or myorelaxation (rotarod, chain-pulling, lever pressing), up to doses (10 mg/kg) corresponding to occupancy of greater than 99%. In man, TPA023B was well tolerated at a dose (1.5 mg) that produced occupancy of >50%, suggesting that the sedation previously seen with MRK-409 is due to the partial agonist efficacy of that compound at the α1 subtype, and highlighting the importance of antagonist efficacy at this particular GABAA receptor population for avoiding sedation in man.

Publisher

SAGE Publications

Subject

Pharmacology (medical),Psychiatry and Mental health,Pharmacology

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