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1.
Bioorg Chem ; 113: 104955, 2021 08.
Article in English | MEDLINE | ID: mdl-34034134

ABSTRACT

Inconsistent results have been reported for the effects of the mitogen-activating extracellular kinase (MEK) inhibitor α-[amino(4-aminophenyl)thio]methylene-2-(trifluoromethyl)benzeneacetonitrile (SL 327) on ethanol-induced conditioned place preference (EtOH-CPP). Since such inconsistencies may be due to the configurational composition of administered SL 327, the interconvertibility of the geometric isomers of this class of compounds has been investigated. This study provides conditions for determination of configurational composition of this class of compounds by HPLC and by 1H NMR and reports details of configurational equilibria as a function of medium and time in solution along with solubility data for SL 327 in aqueous DMSO. The results suggest that the apparently inconsistent results reported for CPP-EtOH may be due to the administration of suspension vs. solutions, as well as to different configurational compositions of SL 327.


Subject(s)
Aminoacetonitrile/analogs & derivatives , Aminoacetonitrile/chemistry , Molecular Structure , Solutions
2.
ACS Chem Neurosci ; 6(12): 1956-64, 2015 Dec 16.
Article in English | MEDLINE | ID: mdl-26367173

ABSTRACT

The nociceptin/orphanin FQ opioid peptide (NOP) receptor is a widely expressed GPCR involved in the modulation of pain, anxiety, and motor behaviors. Dissecting the functional properties of this receptor is limited by the lack of systemically active ligands that are brain permeant. The small molecule NOP receptor-selective, full agonist 8-[(1S,3aS)-2,3,3a,4,5,6-hexahydro-1H-phenalen-1-yl]-1-phenyl-1,3,8-triazaspiro[4.5]decan-4-one (Ro 64-6198) hydrochloride is an active, brain penetrant ligand, but its difficult and cost-prohibitive synthesis limits its widespread use and availability for animal studies. Here, we detail a more efficient and convenient method of synthesis, and use both in vitro and in vivo pharmacological assays to fully characterize this ligand. Specifically, we characterize the pharmacodynamics of Ro 64-6198 in cAMP and G-protein coupling in vitro and examine, for the first time, the effects of nociceptin/orphanin FQ and Ro 64-6198 in arrestin recruitment assays. Further, we examine the effects of Ro 64-6198 on analgesia, anxiety, and locomotor responses in vivo. This new synthesis and pharmacological characterization provide additional insights into the useful, systemically active, NOP receptor agonist Ro 64-6198.


Subject(s)
Imidazoles/chemistry , Imidazoles/pharmacology , Receptors, Opioid/agonists , Spiro Compounds/chemistry , Spiro Compounds/pharmacology , Animals , CHO Cells , Calcium/metabolism , Cricetulus , Cyclic AMP/metabolism , Energy Transfer , Exploratory Behavior/drug effects , HEK293 Cells , Humans , Mice , Models, Chemical , Pain Measurement/drug effects , Receptors, Opioid/chemistry , Receptors, Opioid/genetics , Rotarod Performance Test , Nociceptin Receptor
3.
Bioorg Med Chem Lett ; 22(21): 6661-4, 2012 Nov 01.
Article in English | MEDLINE | ID: mdl-23031594

ABSTRACT

SB-334867 has been an important ligand for the study of the orexin 1 (OX1) receptor due to its high OX1/OX2 selectivity and bioavailability. This ligand however, contains a 2-methylbenzoxazole ring system which is known to undergo hydrolysis, particularly under acidic or basic conditions. The possibility that SB-334867 would be susceptible to significant hydrolysis was evaluated in various formulations and in the solid state. SB-334867 was found to be unstable under conditions commonly employed to prepare stock solutions for in vitro and in vivo studies. In addition, and most alarmingly, the hydrochloride salt of SB-334867 was found to quantitatively decompose to an OX1-inactive product even in the solid state. These findings combine to suggest that studies using SB-334867 (and any other 2-methylbenzoxazole-containing compound) should be performed with great care to avoid the confounding effects of the rapid hydrolytic decomposition of this susceptible structure.


Subject(s)
Benzoxazoles/chemistry , Receptors, G-Protein-Coupled/antagonists & inhibitors , Receptors, Neuropeptide/antagonists & inhibitors , Urea/analogs & derivatives , Benzoxazoles/chemical synthesis , Drug Stability , Hydrogen-Ion Concentration , Hydrolysis , Ligands , Molecular Structure , Naphthyridines , Orexin Receptors , Urea/chemical synthesis , Urea/chemistry
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