- Synthesis and biological evaluation of 1-(isoxazol-5-ylmethylaminoethyl)-4- phenyl tetrahydropyridine and piperidine derivatives as potent T-type calcium channel blockers with antinociceptive effect in a neuropathic pain model
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New tetrahydropyridinyl and piperidinyl ethylamine derivatives were designed with hypothetical mapping on pharmacophore model generated from ligand-based virtual screening. The designed compounds were synthesized, and their inhibitory activities on T-type calcium channel were assayed using FDSS and patch-clamp assay. Among them, compounds 7b and 10b showed potent T-type calcium current blocking activity against Cav3.1 (α 1G) and Cav3.2 (α1H) channel simultaneously. With hERG and pharmacokinetics studies, compounds 7b and 10b were evaluated for the antinociceptive effect on rat model of neuropathic pain. They were significantly effective in decreasing the pain responses to mechanical and cold allodynia induced by spinal nerve ligation. These results suggest that modulation of α1G and α1H subtype T-type calcium channels may provide a promising approach for the treatment of neuropathic pain.
- Lee, Ju-Hyeon,Seo, Seon Hee,Lim, Eun Jeong,Cho, Nam-Chul,Nam, Ghilsoo,Kang, Soon Bang,Pae, Ae Nim,Jeong, Nakcheol,Keum, Gyochang
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p. 246 - 257
(2014/02/14)
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- Chemical modifications on 4-arylpiperazine-ethyl carboxamide derivatives differentially modulate affinity for 5-HT1A, D4.2, and α2A receptors: Synthesis and in vitro radioligand binding studies
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A series of substituted 4-aryl-piperazine-ethyl heteroarylcarboxamides were prepared and tested in in vitro radioligand binding studies. The presence of a quinoxaline has a favourable impact in terms of serotonin 5-HT1A versus dopamine D4.2 receptor selectivity. Compounds with a 3-CF3 group at the distal phenyl ring are the most effective in terms of affinity and selectivity for 5-HT1A versus D4.2 receptors. A 4-phenyl-1,2,3,6- tetrahydropyridine in place of the corresponding 4-phenyl-piperazine side chain is also favourable not only for the affinity for 5-HT1A and D4.2 receptors but also in some cases for α2A-adrenoceptors.
- Graulich, Amaury,Lonard, Marc,Rsimont, Mlissa,Huang, Xi-Ping,Roth, Bryan L.,Ligeois, Jean-Franois
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experimental part
p. 56 - 67
(2010/05/18)
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- 1-[(aminoalkyl and aminoalkylamino)carbonyl and thiocarbonyl]-α,α-diarylpyrrolidine, piperidine and homopiperidineacetamides and acetonitriles
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Novel 1-[(aminoalkyl and aminoalkylamino)carbonyl and thiocarbonyl]-α,α-diaryl-pyrrolidine, piperidine and homopiperidineacetamides and acetonitriles having the formula: STR1 wherein; n is zero, one or two; X is oxygen or sulfur; Z is STR2 p is 0 to 5 inclusive with the proviso that when Z is STR3 p is at least one; Y is aminocarbonyl or cyano; Ar1 and Ar2 are 2, 3 or 4-pyrido, phenyl or substituted phenyl; R is hydrogen or loweralkyl; R1, R2 and R3 are hydrogen, cycloalkyl, loweralkyl, phenyl, substituted phenyl, phenylloweralkyl, and R2 and R3 taken with the adjacent nitrogen may form a heterocyclic residue, and diastereoisomers when possible and pharmaceutical salts; and the method and pharmaceutical compositions for treating cardiac arrhythmias therewith are disclosed.
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- Method of treating cardiac disorders with N-(aryloxyalkyl)-N'-(aminoalkyl)ureas
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N-(Aryloxyalkyl)-N'-(aminoalkyl)ureas and thioureas having the formula: STR1 wherein R1 and R2 are hydrogen, loweralkyl, cycloalkyl, phenyl or phenyllower alkyl, and R3 and R4 are hydrogen, loweralkyl, phenyl and phenylalkyl or R3 and R4 taken together with the adjacent nitrogen form a heterocyclic residue are disclosed in a method of suppressing cardiac arrhythmias.
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