Publication | Open Access
Design and Synthesis of Systemically Active Metabotropic Glutamate Subtype-2 and -3 (mGlu<sub>2/3</sub>) Receptor Positive Allosteric Modulators (PAMs): Pharmacological Characterization and Assessment in a Rat Model of Cocaine Dependence
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Citations
41
References
2014
Year
Pharmacological CharacterizationSynaptic TransmissionNeurotransmitterPsychopharmacologyPharmacotherapyMglu2 Receptor PamsExperimental PharmacologyRat ModelSocial SciencesMolecular PharmacologyAddiction MedicineBiochemistryMechanism Of ActionNeuropharmacologyPharmacologyCocaine DependencePam ActivityAddictionFunctional SelectivityMglu2/3 Receptor PamsNeuroscienceMedicineDrug Discovery
As part of our ongoing small-molecule metabotropic glutamate (mGlu) receptor positive allosteric modulator (PAM) research, we performed structure-activity relationship (SAR) studies around a series of group II mGlu PAMs. Initial analogues exhibited weak activity as mGlu2 receptor PAMs and no activity at mGlu3. Compound optimization led to the identification of potent mGlu2/3 selective PAMs with no in vitro activity at mGlu1,4-8 or 45 other CNS receptors. In vitro pharmacological characterization of representative compound 44 indicated agonist-PAM activity toward mGlu2 and PAM activity at mGlu3. The most potent mGlu2/3 PAMs were characterized in assays predictive of ADME/T and pharmacokinetic (PK) properties, allowing the discovery of systemically active mGlu2/3 PAMs. On the basis of its overall profile, compound 74 was selected for behavioral studies and was shown to dose-dependently decrease cocaine self-administration in rats after intraperitoneal administration. These mGlu2/3 receptor PAMs have significant potential as small molecule tools for investigating group II mGlu pharmacology.
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