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The differential role of NOS inhibitors on stress-induced anxiety and neuroendocrine alterations in the rat
Authors:Hye-Young Joung  Eun-Yee Jung  Kyungsoo Kim  Mi-Sook Lee  Song Her  Insop Shim
Institution:Department of Biomedical Sciences, College of Medicine, The Catholic University of Korea, Banpo-dong, Seocho-gu, Seoul 137-701, Republic of Korea; Acupuncture & Meridian Science Research Center, College of Oriental Medicine, Kyung Hee University, Seoul 130-701, Republic of Korea.
Abstract:The inhibitors of nitric oxide synthase (NOS) have been shown to possess antidepressant- and anxiolytic-properties in animal model. In order to examine the involvement of nitric oxide (NO) on stress-induced neurobehavioral changes and the concomitant alterations of neuroendocrinological factors, we studied the effects of the nonselective NOS inhibitor, N(ω)-Nitro l-arginine methyl ester hydrochloride (l-NAME) and the specific neuronal NOS inhibitor, 7-nitroindazole (7-NI) on restraint stress-induced anxiety in the elevated plus maze (EPM) test and biochemical analysis. Restraint stress significantly reduced the latency time in open arm and the percentage of open arm entries of the plus maze. Pretreatment with l-NAME (10mg/kg) or 7-NI (10mg/kg) significantly attenuated stress-induced anxiety response. In addition, administration of l-NAME (10mg/kg) reversed stress-induced increase in corticosterone and NO metabolites (NO(x)) in plasma. The administration of 7-NI, but notl-NAME, reversed stress-induced NO(x) in paraventricular nucleus of the hypothalamus (PVN) and locus coeruleus (LC), accompanying with decrease of NADPH-d reactivity in the PVN and lateral dorsal tegmental nucleus (LTDg). These results showed that l-NAME influences HPA axis activity such as corticosterone levels and NO(x) in plasma, whereas 7-NI produced anxiolytic-like effects through the direct reduction in NO(x) in the brain. The results of this study demonstrated that NOS inhibitors have differential effect on stress responses and inhibition of NO could be responsible for the beneficial effect on regulation of stress.
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