Conformational analysis, energy profile, and structural-electronic properties evaluation of mephedrone derivatives employing quantum-mechanical models

被引:0
作者
Wojciech Kolodziejczyk
Supratik Kar
Glake A. Hill
机构
[1] Wroclaw Medical University,Department of Physical Chemistry
[2] Jackson State University,Interdisciplinary Center for Nanotoxicity
来源
Structural Chemistry | 2017年 / 28卷
关键词
Cathinone; Conformations; Gaussian; Mephedrone; Molecular electrostatic potential; MP2;
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学科分类号
摘要
Mephedrone (4-methyl-meth-cathinone) or 4-MMC and its derivative 3-MMC are analogs of cathinone which act as non-selective substrates for monoamine transporters, facilitating a neurotransmitter release via the reversal of normal transporter fluxes. The pharmacological effects like paranoia, hallucinations, euphoria, aggressiveness, and psychosis make these molecules “abusive designer drugs.” In the present study, conformations of all isomers of 3- and 4-MMC have been studied at the quantum-chemical level. Calculations have been performed using Møller-Plesset second-order (MP2) methods with 6-31G(d, p) basis sets. Present study shows that there are low-energy conformers for the meta (3-MMC) and para (4-MMC) isomers that are connected by way of low-barrier transition states. Natural bond orbital (NBO) analyses have been also performed to corroborate the results as estimated from the MP2 calculations. The molecular electrostatic potential surface data for each molecule has been calculated, revealing likely that reaction sites and probable metabolism pathway for both derivatives have been proposed. IR spectra for MMC derivatives have been compared with experimental data, and rotational transition states connecting all conformers have been reported.
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页码:791 / 799
页数:8
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[1]  
Baumann MH(2011)The designer methcathinone analogs, mephedrone and methylone, are substrates for monoamine transporters in brain tissue Neuropsychopharmacology 37 1192-1203
[2]  
Ayestas MA(2014)Behavioral pharmacology of designer cathinones: a review of the preclinical literature Life Sci 97 27-30
[3]  
Partilla JS(2014)Khat and synthetic cathinones: a review Arch Toxicol 88 15-45
[4]  
Gregg RA(2014)The preclinical pharmacology of mephedrone; not just MDMA by another name Br J Pharmacol 171 2251-2268
[5]  
Rawls SM(2014)Abuse-related and abuse-limiting effects of methcathinone and the synthetic “bath salts” cathinone analogs methylenedioxypyrovalerone (MDPV), methylone and mephedrone on intracranial self-stimulation in rats Psychopharmacology 231 199-207
[6]  
Valente MJ(1929)Quantitative structure-activity relationship analysis of the pharmacology of para-substituted methcathinone analogues Bull Soc Chim Fr 45 284-286
[7]  
Guedes de Pinho P(2015)Steric parameters, molecular modeling and hydropathic interaction analysis of the pharmacology of para-substituted methcathinone analogues Br J Pharmacol 172 2433-2444
[8]  
de Lourdes BM(2015)“Bath salts” intoxication: a new recreational drug that presents with a familiar toxidrome Br J Pharmacol 172 2210-2218
[9]  
Green AR(2014)Locomotor stimulant and discriminative stimulus effects of “bath salt” cathinones Can J Emerg Med 16 171-176
[10]  
King MV(2013)The analysis of substituted cathinones. Part 1: chemical analysis of 2-, 3- and 4-methylmethcathinone Behav Pharmacol 24 437-447