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Synthesis and pharmacological characterization of functionalized 6-piperazin-1-yl-purines as cannabinoid receptor 1 (CB1) inverse agonists
Authors:George S Amato  Amruta Manke  Vineetha Vasukuttan  Robert W Wiethe  Rodney W Snyder  Scott P Runyon  Rangan Maitra
Institution:Discovery Science and Technology, RTI International, 3040 Cornwallis Rd., Research Triangle Park, NC 27709-2194, USA
Abstract:Antagonists of peripheral type 1 cannabinoid receptors (CB1) may have utility in the treatment of obesity, liver disease, metabolic syndrome and dyslipidemias. We have targeted analogues of the purine inverse agonist otenabant (1) for this purpose. The non-tissue selective CB1 antagonist rimonabant (2) was approved as a weight-loss agent in Europe but produced centrally mediated adverse effects in some patients including dysphoria and suicidal ideation leading to its withdrawal. Efforts are now underway to produce compounds with limited brain exposure. While many structure-activity relationship (SAR) studies of 2 have been reported, along with peripheralized compounds, 1 remains relatively less studied. In this report, we pursued analogues of 1 in which the 4-aminopiperidine group was switched to piperazine group to enable a better understanding of SAR to eventually produce compounds with limited brain penetration. To access a binding pocket and modulate physical properties, the piperazine was functionalized with alkyl, heteroalkyl, aryl and heteroaryl groups using a variety of connectors, including amides, sulfonamides, carbamates and ureas. These studies resulted in compounds that are potent antagonists of hCB1 with high selectivity for hCB1 over hCB2. The SAR obtained led to the discovery of 65 (Ki?=?4?nM, >1,000-fold selective for hCB1 over hCB2), an orally bioavailable aryl urea with reduced brain penetration, and provides direction for discovering peripherally restricted compounds with good in vitro and in vivo properties.
Keywords:BBB  Blood-Brain Barrier  CB1  Cannabinoid Receptor 1  CB2  Cannabinoid Receptor 2  CHO-K1  Chinese Hamster Ovary Cells  CNS  Central Nervous System  EtOH  ethanol  EtOAc  ethyl acetate  Ke  apparent affinity constant  MDCK-mdr1  Madin-Darby canine kidney cells transfected with the human MDR1 gene  Inositol Phospahatase 3  MRM  Multiple Reaction Monitoring  rt  room temperature  TEA  triethylamine  TFA  trifluoroacetic acid  CB1  Cannabinoid  Peripheral  Antagonist  Otenabant  Purine  CB2  MDCK  Blood brain barrier  ADME
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