Involvement of nitric oxide in the protective effects of dehydroepiandrosterone sulphate on stress induced neurobehavioral suppression and brain oxidative injury in rats

被引:21
作者
Chakraborti, Ayanabha [1 ]
Gulati, Kavita [1 ]
Ray, Arunabha [1 ]
机构
[1] Univ Delhi, Vallabhbhai Patel Chest Inst, Dept Pharmacol, Delhi 110007, India
关键词
Restraint stress; Dehydroepiandrosterone sulphate; Nitric oxide; Oxidative stress; NEUROACTIVE STEROIDS; NO; MODULATION; SYNTHASE; NEUROSTEROIDS; RESPONSES; BEHAVIOR; PATHWAY; ANXIETY; GABA;
D O I
10.1016/j.ejphar.2010.11.002
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The involvement of nitric oxide (NO) in the effects of dehydroepiandrosterone sulphate (DHEAS) on restraint stress induced neurobehavioral and brain oxidative/nitrosative stress markers was investigated in rats. Exposure of rats to restraint stress suppressed behavioral activity in the elevated plus maze and this was associated with increases in malondialdehyde (MDA) and decrease in reduced glutathione (GSH) and brain NO metabolite (NOx) levels in brain homogenates. Pretreatment with DHEAS (5-40 mg/s.c.) reversed the stress induced changes in behavioral and oxidative stress markers and also brain NOx levels. The beneficial effect of DHEAS (40 mg/kg s.c.) was blocked by pretreatment with nitric oxide synthase inhibitor, L-NAME (50 mg/kg i.p.) while pretreatment of rats with NO-precursor L-Arginine (100 mg/kg i.p.) produced potentiation of action of sub effective dose of DHEAS (5 mg/kg s.c.). The DHEAS effects were stress specific as these behavioral and biochemical parameters were not much influenced in non-stressed rats. These observations suggest that pretreatment with DHEAS has a protective effect on restraint stress induced alteration of neurobehavioral changes and brain oxidative injury in rats and NO-dependent mechanisms may be involved in this effect. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:55 / 59
页数:5
相关论文
共 45 条
[31]   Prolonged decrease in stress reactivity caused by dehydroepiandrosterone sulfate [J].
Obut, T. A. ;
Ovsyukova, M. V. ;
Cherkasova, O. P. .
BULLETIN OF EXPERIMENTAL BIOLOGY AND MEDICINE, 2006, 141 (05) :571-573
[32]   ASSAY FOR LIPID PEROXIDES IN ANIMAL-TISSUES BY THIOBARBITURIC ACID REACTION [J].
OHKAWA, H ;
OHISHI, N ;
YAGI, K .
ANALYTICAL BIOCHEMISTRY, 1979, 95 (02) :351-358
[33]   Modulation of neurotransmitter systems by dehydroepiandrosterone and dehydroepiandrosterone sulfate:: Mechanism of action and relevance to psychiatric disorders [J].
Perez-Neri, Ivan ;
Montes, Sergio ;
Ojeda-Lopez, Carmen ;
Ramirez-Bermudez, Jesus ;
Rios, Camilo .
PROGRESS IN NEURO-PSYCHOPHARMACOLOGY & BIOLOGICAL PSYCHIATRY, 2008, 32 (05) :1118-1130
[34]   POSSIBLE INVOLVEMENT OF NITRIC-OXIDE IN CHLORDIAZEPOXIDE INDUCED ANXIOLYSIS IN MICE [J].
QUOCK, RM ;
NGUYEN, E .
LIFE SCIENCES, 1992, 51 (25) :PL255-PL260
[35]   Current trends in nitric oxide research [J].
Ray, A. ;
Chakraborti, A. ;
Gulati, K. .
CELLULAR AND MOLECULAR BIOLOGY, 2007, 53 (01) :3-14
[36]  
Reddy Doodipala Samba, 2003, Critical Reviews in Neurobiology, V15, P197
[37]   Role of nitric oxide in modulating the release of dopamine, glutamate, and GABA in striatum of the freely moving rat [J].
Segovia, G ;
Mora, F .
BRAIN RESEARCH BULLETIN, 1998, 45 (03) :275-279
[38]   Dehydroepiandrosterone modulates endothelial nitric oxide synthesis via direct genomic and nongenomic mechanisms [J].
Simoncini, T ;
Mannella, P ;
Fornari, L ;
Varone, G ;
Caruso, A ;
Genazzani, AR .
ENDOCRINOLOGY, 2003, 144 (08) :3449-3455
[39]   Antipsychotic, antidepressant, anxiolytic, and anticonvulsant drugs induce type II nitric oxide synthase rnRNA in rat brain [J].
Suzuki, E ;
Nakaki, T ;
Shintani, F ;
Kanba, S ;
Miyaoka, H .
NEUROSCIENCE LETTERS, 2002, 333 (03) :217-219
[40]   Cerebral Blood Flow Regulation by Nitric Oxide: Recent Advances [J].
Toda, Noboru ;
Ayajiki, Kazuhide ;
Okamura, Tomio .
PHARMACOLOGICAL REVIEWS, 2009, 61 (01) :62-97