4.7 Article

Pregabalin is a potent and selective ligand for α2δ-1 and α2δ-2 calcium channel subunits

Journal

EUROPEAN JOURNAL OF PHARMACOLOGY
Volume 667, Issue 1-3, Pages 80-90

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ejphar.2011.05.054

Keywords

Pregabalin; Calcium channel alpha(2)delta subunit; Receptor autoradiography; Analgesic; Anticonvulsant; Anxiolytic

Funding

  1. Pfizer Inc.

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Pregabalin, a synthetic branched chain gamma-amino acid with anticonvulsant, anxiolytic, and analgesic activities, has been shown to bind with high affinity to the voltage-gated calcium channel alpha(2)delta subunit. Given the broad therapeutic utility of pregabalin, a series of experiments was undertaken to determine the potency, selectivity, and specificity of pregabalin's receptor-binding profile at alpha(2)delta-1 and alpha(2)delta-2 subunits of voltage-gated calcium channels along with 38 widely studied receptors and channels. Receptor autoradiography was used to assess regional-binding density of pregabalin throughout the rat spinal cord and brain. In addition, a series of studies using in vivo electrophysiological recordings of gamma-aminobutyric acid(GABA)(A)- and GABA(B)- evoked currents was undertaken to determine the interaction of pregabalin with GABAergic receptor subtypes. Together, the results of these studies demonstrate potent and selective binding of pregabalin to alpha(2)delta-1 and alpha(2)delta-2 subunits in native and recombinant human and porcine systems. Pregabalin did not interact with any of the 38 receptors and ion channels evaluated, and a variety of central nervous system (CNS)-targeted therapeutic drugs did not show activity at the alpha(2)delta-2 subunits of voltage-gated calcium channels. Receptor autoradiography demonstrated extensive [H-3]-pregabalin binding throughout the CNS, with high-level binding in the cortex, hippocampus, cerebellum, dorsal horn of the spinal cord, and amygdala. Finally, receptor-binding and electrophysiological techniques failed to show evidence of an interaction between pregabalin and GABA(A) or GABA(B) receptors. These studies suggest that the clinical effects of pregabalin are likely due to direct and selective interactions with alpha(2)delta-1 and alpha(2)delta-2 subunits of voltage-gated calcium channels. (C) 2011 Elsevier B.V. All rights reserved.

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