[2-(2-Aminopropoxy)-1,3-phenylene]dimethanol 1 and 4-(2-aminopropoxy)-3- (hydroxymethyl)-5-methylphenol 2, two dihydroxylated analogs of mexiletine - a well known class IB anti-arrhythmic drug - were synthesized and used as pharmacological tools to investigate the blockingactivity requirements of human skeletal muscle, voltage-gated sodium channel. The very low blocking activity shown by newly synthesized compounds corroborates the hypothesis that the presence of a phenolic group in the para-position to the aromatic moiety and/or benzylic hydroxyl groups on the aromatic moiety of local anesthetic-like drugs impairs either the transport to or the interaction with the binding site in the pore of Na+ channels. © 2010 Wiley-VCH Verlag GmbH & Co. KGaA.

Hydroxylated analogs of mexiletine as tools for structural-requirements investigation of the sodium channel blocking activity

CATALANO, ALESSIA;CAROCCI, ALESSIA;CAVALLUZZI, MARIA MADDALENA;DI MOLA, ANTONIA;LENTINI, Giovanni;LOVECE, ANGELO;DIPALMA, ANTONELLA;COSTANZA, TERESA;DESAPHY, Jean Francois;CONTE, Diana;FRANCHINI, Carlo
2010-01-01

Abstract

[2-(2-Aminopropoxy)-1,3-phenylene]dimethanol 1 and 4-(2-aminopropoxy)-3- (hydroxymethyl)-5-methylphenol 2, two dihydroxylated analogs of mexiletine - a well known class IB anti-arrhythmic drug - were synthesized and used as pharmacological tools to investigate the blockingactivity requirements of human skeletal muscle, voltage-gated sodium channel. The very low blocking activity shown by newly synthesized compounds corroborates the hypothesis that the presence of a phenolic group in the para-position to the aromatic moiety and/or benzylic hydroxyl groups on the aromatic moiety of local anesthetic-like drugs impairs either the transport to or the interaction with the binding site in the pore of Na+ channels. © 2010 Wiley-VCH Verlag GmbH & Co. KGaA.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11586/192796
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