CNS 7056

Author:

Kilpatrick Gavin J.1,McIntyre Margaret S.2,Cox Richard F.3,Stafford Jeffrey A.4,Pacofsky Gregory J.5,Lovell Gwyer G.2,Wiard Robert P.6,Feldman Paul L.7,Collins Holly8,Waszczak Barbara L.9,Tilbrook Gary S.10

Affiliation:

1. * Chief Scientific Officer,

2. † Senior Scientist,

3. ‡ Manager,

4. § Current position: Vice President of Chemistry, Takeda, San Diego, California.

5. ∥ Current position: Research Investigator, Scynexis, Inc., Durham, North Carolina.

6. # Principal Scientist,

7. ** Vice President of Medicinal Chemistry, GlaxoSmithKline, Research Triangle Park, North Carolina.

8. †† Northeastern University, Bouve College of Health Sciences, Boston, Massachusetts.

9. ‡‡ Professor of Pharmaceutical Sciences,

10. §§ Director of Drug Discovery, CeNeS Limited.

Abstract

Abstract Background: A new benzodiazepine derivative, CNS 7056, has been developed to permit a superior sedative profile to current agents, i.e., more predictable fast onset, short duration of sedative action, and rapid recovery profile. This goal has been achieved by rendering the compound susceptible to metabolism via esterases. The authors now report on the profile of CNS 7056 in vitro and in vivo. Methods: The affinity of CNS 7056 and its carboxylic acid metabolite, CNS 7054, for benzodiazepine receptors and their selectivity profiles were evaluated using radioligand binding. The activity of CNS 7056 and midazolam at subtypes (α1β2γ2, α2β2γ2, α3β2γ2, α5β2γ2) of the γ-aminobutyric acid type A (GABAA) receptor was evaluated using the whole cell patch clamp technique. The activity of CNS 7056 at brain benzodiazepine receptors in vivo was measured in rats using extracellular electrophysiology in the substantia nigra pars reticulata. The sedative profile was measured in rodents using the loss of righting reflex test. Results: CNS 7056 bound to brain benzodiazepine sites with high affinity. The carboxylic acid metabolite, CNS 7054, showed around 300 times lower affinity. CNS 7056 and CNS 7054 (10 μm) showed no affinity for a range of other receptors. CNS 7056 enhanced GABA currents in cells stably transfected with subtypes of the GABAA receptor. CNS 7056, like midazolam and other classic benzodiazepines, did not show clear selectivity between subtypes of the GABAA receptor. CNS 7056 (intravenous) caused a dose-dependent inhibition of substantia nigra pars reticulata neuronal firing and recovery to baseline firing rates was reached rapidly. CNS 7056 (intravenous) induced loss of the righting reflex in rodents. The duration of loss of righting reflex was short (< 10 min) and was inhibited by pretreatment with flumazenil. Conclusions: CNS 7065 is a high-affinity and selective ligand for the benzodiazepine site on the GABAA receptor. CNS 7056 does not show selectivity between GABAA receptor subtypes. CNS 7056 is a potent sedative in rodents with a short duration of action. Inhibition of substantia nigra pars reticulata firing and the inhibition of the effects of CNS 7056 by flumazenil show that it acts at the brain benzodiazepine receptor.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Anesthesiology and Pain Medicine

Reference27 articles.

1. The benzodiazepine binding site of GABAA receptors.;Trends Pharmacol Sci,1997

2. Midazolam: The first water-soluble benzodiazepine: Pharmacology, pharmacokinetics and efficacy in insomnia and anesthesia.;Pharmacotherapy,1985

3. Pharmacokinetic and pharmacodynamic consequences of metabolism-based drug interactions with alprazolam, midazolam, and triazolam.;J Clin Pharmacol,1999

4. Midazolam: A review of therapeutic uses and toxicity.;J Emerg Med,1997

5. Design, synthesis, and pharmacological evaluation of ultrashort- to long-acting opioid analgetics.;J Med Chem,1991

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