Optically active mexiletine analogues as stereoselective blockers of voltage-gated Na+ channels

被引:54
|
作者
Franchini, C
Carocci, A
Catalano, A
Cavalluzzi, MM
Corbo, F
Lentini, G
Scilimati, A
Tortorella, P
Camerino, DC
De Luca, A
机构
[1] Univ Bari, Dipartimento Farmacochim & Farmacobiol, I-70125 Bari, Italy
[2] Univ G DAnnunzio, Ist Sci Farmaco, I-66100 Chieti, Italy
关键词
D O I
10.1021/jm030865y
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Optically active mexiletine analogues were synthesized and evaluated in vitro as use-dependent blockers of skeletal muscle sodium channels. The mexiletine analogues were obtained by replacing either the methyl group on the stereogenic center of mexiletine [1-(2,6-dimethylphenoxy)propan-2-amine] with a phenyl group or modifying the phenoxy moiety (by removal of one or both of the methyl groups, or introducing a chlorine atom), or both. The voltage clamp recordings showed that, regardless of the substitution pattern of the aryloxy moiety, all the compounds bearing a phenyl group on the stereogenic center (3a-f) were more active than mexiletine both in tonic and phasic block. This observation was in contrast with what was observed for mexiletine, where the removal of both methyls from the aryloxy moiety caused a dramatic reduction of potency. The most potent congener, (R)-2-(2-methylphenoxy)-1-phenylethanamine [(R)-3b], was 27-fold more potent than (R)-mexiletine in producing a tonic block, i.e., the reduction of peak sodium current in resting conditions after application of the compound. (R)-3b maintained a use-dependent behavior, being 23-fold more potent in condition of high frequency of stimulation (phasic block). Despite what was observed with mexiletine, the stereoselectivity held in phasic block conditions. Stereoselectivity indexes were generally low, ranging from I to 4, but except for that of the 2,6-xylyloxy congener 3c, they were higher for the congeners bearing a phenyl ring on the stereogenic center than for mexiletine and its strictly related analogue 1-methyl-2-phenoxyethanamine (1). This finding was in agreement with Pfeiffer's rule. The introduction of a chlorine atom in the 4-position of the aryloxy moiety caused a reduction of potency and a reversal of stereoselectivity as well. On the basis of the model to date accepted for the sodium channel local anesthetic-like molecule receptor, some possible explanations of our observations will be proposed.
引用
收藏
页码:5238 / 5248
页数:11
相关论文
共 50 条
  • [1] Optically active mexiletine analogues as stereoselective blockers of voltage-gated Na+ channels (vol 46, pg 5241, 2005)
    Franchini, C
    Carocci, A
    Catalano, A
    Cavalluzzi, MM
    Corbo, F
    Lentini, GV
    Scilimati, A
    Tortorella, P
    Camerino, DC
    De Luca, A
    JOURNAL OF MEDICINAL CHEMISTRY, 2005, 48 (08) : 3094 - 3094
  • [2] Vincamine and vincanol are potent blockers of voltage-gated Na+ channels
    Erdo, SL
    Molnar, P
    Lakics, V
    Bence, JZ
    Tomoskozi, Z
    EUROPEAN JOURNAL OF PHARMACOLOGY, 1996, 314 (1-2) : 69 - 73
  • [3] Evolution of voltage-gated Na+ channels
    Goldin, AL
    JOURNAL OF EXPERIMENTAL BIOLOGY, 2002, 205 (05): : 575 - 584
  • [4] Voltage-Gated Sodium Channel Blockers: Synthesis of Mexiletine Analogues and Homologues
    Catalano, Alessia
    Franchini, Carlo
    Carocci, Alessia
    CURRENT MEDICINAL CHEMISTRY, 2021, 28 (08) : 1535 - 1548
  • [5] Resurgent current of voltage-gated Na+ channels
    Lewis, Amanda H.
    Raman, Indira M.
    JOURNAL OF PHYSIOLOGY-LONDON, 2014, 592 (22): : 4825 - 4838
  • [6] Mechanism of Inactivation in Voltage-Gated Na+ Channels
    Gawali, V. S.
    Todt, H.
    NA CHANNELS FROM PHYLA TO FUNCTION, 2016, 78 : 409 - 450
  • [7] Voltage-gated Na+ channels in neuropathic pain
    Hargus, Nicholas-James
    Patel, Manoj Kumar
    EXPERT OPINION ON INVESTIGATIONAL DRUGS, 2007, 16 (05) : 635 - 646
  • [8] Voltage-Gated Na+ Channels: Not Just for Conduction
    Kruger, Larisa C.
    Isom, Lori L.
    COLD SPRING HARBOR PERSPECTIVES IN BIOLOGY, 2016, 8 (06):
  • [9] Interactions of local anesthetics with voltage-gated Na+ channels
    Nau, C
    Wang, GK
    JOURNAL OF MEMBRANE BIOLOGY, 2004, 201 (01): : 1 - 8
  • [10] Clustered voltage-gated Na+ channels in Aplysia axons
    Johnston, WL
    Dyer, JR
    Castellucci, VF
    Dunn, RJ
    JOURNAL OF NEUROSCIENCE, 1996, 16 (05): : 1730 - 1739