scholarly journals The effect of GABAB receptors in CA1 region of hippocampus on morphine tolerance in female Wistar race rats by conditioned place preference

2020 ◽  
Vol 24 (6) ◽  
pp. 79-92
Author(s):  
firoozeh Alavian ◽  
Saeedeh Ghiasvand ◽  
◽  
2016 ◽  
Vol 312 ◽  
pp. 394-404 ◽  
Author(s):  
Nasim Assar ◽  
Dorna Mahmoudi ◽  
Ali Farhoudian ◽  
Mohammad Hasan Farhadi ◽  
Zahra Fatahi ◽  
...  

2014 ◽  
Vol 2014 ◽  
pp. 1-7 ◽  
Author(s):  
ZhengLin Zhao ◽  
Young Woo Kim ◽  
YuPeng Yang ◽  
Jie Zhang ◽  
Ji Yun Jung ◽  
...  

Glycyrrhizae Radixmodulates the neurochemical and locomotor alterations induced by acute psychostimulants in rodents via GABAb receptors. This study investigated the influence of methanol extract fromGlycyrrhizae Radix(MEGR) on repeated methamphetamine- (METH-) induced locomotor sensitization and conditioned place preference (CPP). A cohort of rats was treated with METH (1 mg/kg/day) for 6 consecutive days, subjected to 6 days of withdrawal, and then challenged with the same dose of METH to induce locomotor sensitization; during the withdrawal period, the rats were administered MEGR (60 or 180 mg/kg/day). A separate cohort of rats was treated with either METH or saline every other day for 6 days in METH-paired or saline-paired chambers, respectively, to induce CPP. These rats were also administered MEGR (180 mg/kg) prior to every METH or CPP expression test. Pretreatment with MEGR (60 and 180 mg/kg/day) attenuated the expression of METH-induced locomotor sensitization dose-dependently, and 180 mg/kg MEGR significantly inhibited the development and expression of METH-induced CPP. Furthermore, administration of a selective GABAb receptor antagonist (SCH50911) prior to MEGR treatment effectively blocked the inhibitory effects of MEGR on locomotor sensitization, but not CPP. These results suggest thatGlycyrrhizae Radixblocked repeated METH-induced behavioral changes via GABAb receptors.


2010 ◽  
Author(s):  
Daniel M. Noel ◽  
Tammy J. Sluder ◽  
Julia Lehmann ◽  
Jamie D. Whittemore ◽  
Russell W. Brown

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