660417-52-7Relevant academic research and scientific papers
Synthesis, characterization, and antimicrobial activities of clubbed [1,2,4]-oxadiazoles with fluorobenzimidazoles
Jadhav, Ganesh R.,Shaikh, Mohammad U.,Kale, Rajesh P.,Ghawalkar, Anand R.,Gill, Charansingh H.
experimental part, p. 980 - 987 (2009/12/05)
(Chemical Equation Presented) In this study, a novel series of substituted 4,6-difluoro-2-{2-[3-(substituted-phenyl)-[1,2,4]-oxadiazol-5-yl]-ethyl} -1H-benzo[d]imidazole derivatives were synthesized by condensation of 2,4-difluoro-6-nitrophenyl amine with 3-(substitutedphenyl-[1,2,4]-oxadiazol- 5yl) propionic acid by using 2,4,6-trichlorobenzoyl chloride in the presence of triethyl amine base. The compounds were evaluated for their preliminary in vitro antibacterial activity against Pseudomonas aeruginosa, Escherichia coli, Staphylococcus aureus, and Salmonella typhosa. The antibacterial data of the tested compounds indicated that most of the synthesized compounds showed moderate activity with reference standard Gentamycin.
Discovery and optimization of a novel series of N-arylamide oxadiazoles as potent, highly selective and orally bioavailable cannabinoid receptor 2 (CB 2) agonists
Cheng, Yuan,Albrecht, Brian K.,Brown, James,Buchanan, John L.,Buckner, William H.,DiMauro, Erin F.,Emkey, Renee,Fremeau Jr., Robert T.,Harmange, Jean-Christophe,Hoffman, Beth J.,Huang, Liyue,Huang, Ming,Lee, Josie Han,Lin, Fen-Fen,Martin, Matthew W.,Nguyen, Hung Q.,Patel, Vinod F.,Tomlinson, Susan A.,White, Ryan D.,Xia, Xiaoyang,Hitchcock, Stephen A.
experimental part, p. 5019 - 5034 (2009/07/19)
The CB2 receptor is an attractive therapeutic target for analgesic and anti-inflammatory agents. Herein we describe the discovery of a novel class of oxadiazole derivatives from which potent and selective CB 2 agonist leads were developed. Initial hit 7 was identified from a cannabinoid target-biased library generated by virtual screening of sample collections using a pharmacophore model in combination with a series of physicochemical filters. 7 was demonstrated to be a selective CB2 agonist (CB2 EC50 = 93 nM, Emax = 98%, CB 1 EC50 > 10 μM). However, this compound exhibited poor solubility and relatively high clearance in rat, resulting in low oral bioavailability. In this paper, we report detailed SAR studies on 7 en route toward improving potency, physicochemical properties, and solubility. This effort resulted in identification of 63 that is a potent and selective agonist at CB2 (EC50 = 2 nM, Emax = 110%) with excellent pharmacokinetic properties.
NEW COMPOUNDS
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Page 169, (2010/02/06)
The present invention relates to new compounds of formula I, (I) a process for their preparation and new intermediates prepared therein, pharmaceutical formulations containing said compounds and to the use of said compounds in therapy.
