4.7 Article

The effects of anandamide transport inhibitor AM404 on voltage-dependent calcium channels

Journal

EUROPEAN JOURNAL OF PHARMACOLOGY
Volume 634, Issue 1-3, Pages 10-15

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ejphar.2010.02.013

Keywords

Calcium channel; AM404; Endocannabinoid; Skeletal muscle

Funding

  1. NIDA/NIH, USA
  2. United Arab Emirates University

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The effects of anandamide transport inhibitor AM404 were investigated on depolarization-induced Ca-45(2+) fluxes in transverse tubule membrane vesicles from rabbit skeletal muscle and on Ba2+ currents through L-type voltage-dependent Ca2+ channels in rat myotubes. AM404, at the concentration of 3 mu M and higher, caused a significant inhibition of Ca-45(2+) fluxes. Radioligand binding studies indicated that the specific binding of [H-3] Isradipine to transverse tubule membranes was also inhibited significantly by AM404. In controls and in presence of 10 mu M AM404, B-max values were 51 +/- 6 and 27 +/- 5 pM/mg, and KD values were 236 +/- 43 and 220 +/- 37 pM, respectively. Inhibitory effects of AEA and arachidonic add on Ca-45(2+) flux and [H-3]Isradipine binding reported in earlier studies, were also enhanced significantly in the presence of AM404. In the presence of VDM11 (1 mu M), another anandamide transport inhibitor. AM404 continued to inhibit Ca-45(2+) fluxes and [H-3]Isradipine binding. In rat myotubes, Ca2+ currents through L-type Ca2+ channels recorded in whole-cell configuration of patch clamp technique were inhibited by AM404 in a concentration-dependent manner with an IC50 value of 3.2 mu M. In conclusion, results indicate that AM404 inhibits directly the function of L-type voltage-dependent Ca2+ channels in mammalian skeletal muscles. Published by Elsevier B.V.

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