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D.-S. Su, M. K. Markowitz, R. M. DiPardo, K. L. Murphy, C. M. Harrell, S. S. O’Malley, R. W. Ransom, R. S. L. Chang, S. Ha, F. J. Hess, D. J. Pettibone, G. S. Mason, S. Boyce, R. M. Freidinger and M. G. Bock, “Discovery of a Potent, Non-peptide Bradykinin B1 Receptor Antagonist,” Journal of the American Chemical Society, Vol. 125, No. 25, 2003, p. 7516. doi:10.1021/ja0353457
has been cited by the following article:
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TITLE:
Synthesis and Influence of Two Quinoxalinone Derivatives on Anxiety- and Depressive-Like Responses in Wistar Rat
AUTHORS:
Redouan Nakache, Brahim Lakhrissi, Fatima Zahra El Mrabet, Aboubaker Elhessni, Ali Ouichou, Bouchra Benazzouz, Abdelhalem Mesfioui
KEYWORDS:
Depression; Anxiety; Quinoxalinone Derivatives; Locomotor Activity; Wistar Rats
JOURNAL NAME:
Neuroscience and Medicine,
Vol.3 No.4,
December
26,
2012
ABSTRACT: Two new quinoxalinone derivatives have been synthesized adopting the HONG method, and investigated for some neuropharmacological effects (anxiety- and depressive-like responses) in rats. The present experiment sought to determine whether treatment with these compounds produces changes in affective responses. We found that the chronic injection of 6-nitro-2(1H)-quinoxalinone (NQu) showed obvious anxiolytic- and antidepressant-like effects, respectively, measured in the behavioral tests of Elevated Plus Maze (EPM) and Forced Swim Test (FST). At the dose of 30 mg/kg, NQu showed a comparative anxiolytic-like effect in rats as diazepam (Dz) (1 mg/kg), and a comparative antidepressant effect as clomipramine (Clmp) (2 mg/kg; i.p). The 2(1H)-quinoxalinone (Qu) significantly reduced depressive-like responses as evaluated in FST, whereas no anxiolytic-like effect was found as measured by open field test (OF). Additionally, the locomotor activity levels were unaffected by treatment as measured by OF and EPM.