Ranjbaran Mina, Aghaei Hassan, Hajihoseinlou Vahdat, Sahraei Hedayat, Ranjbaran Katayoon
Neuroscience Research Center, Baqiyatallah University of Medical Sciences, Tehran, Iran.
Department of Biology, Faculty of Science, Campus of Shahid Bahonar, Farhangiaan University, Hamadan, Iran.
Basic Clin Neurosci. 2017 Mar-Apr;8(2):121-128. doi: 10.18869/nirp.bcn.8.2.121.
The role of different parts of the extended amygdala in metabolic signs of stress is not well understood. In the present study, we decided to evaluate the impact of the shell part of nucleus accumbens (NAc) on metabolic disturbance induced by electro foot shock stress using transient inactivation method in the rat.
Male Wistar rats (W: 230-250 g) were canuulated unilaterally in the shell part of nucleus accumbens and left one week for recovery. Five minutes before each stress session, the animals either received sterile saline (0.25 μl/side) (control) or lidocaine 2% (0.25 μl/side) (experiment). Blood samples were taken from rats' retro-orbital sinus for plasma corticosterone measurements. In addition, animals' weight gain, food and water intake, locomotor activity, and rearing were recorded.
Stress reduced weight gain and food intake, increased water intake and plasma corticosterone level, and reduces locomotor activity and rearing. Transient inactivation of the right side of the NAc inhibits the stress effect on weight gain, water intake and plasma corticosterone level, but not food intake. However, when the left side of the NAc was inactivated, only weight gain was affected and other parameters were not differing from stress group. Even thought, the plasma corticosterone level was elevated.
In conclusion, our data indicated that right side of shell part of NAc transient inactivation leads to reduction in metabolic signs of stress but left side of shell part of the NAc inactivation even exacerbates stress signs.
目前,人们对扩展杏仁核不同部分在应激代谢指标中的作用了解尚浅。在本研究中,我们决定采用短暂失活法,评估伏隔核(NAc)壳部对电足部电击应激诱导的代谢紊乱的影响。
选用雄性Wistar大鼠(体重230 - 250克),单侧植入套管至伏隔核壳部,术后恢复一周。每次应激前5分钟,动物分别接受无菌生理盐水(0.25微升/侧)(对照组)或2%利多卡因(0.25微升/侧)(实验组)。从大鼠眶后窦采集血样,用于检测血浆皮质酮水平。此外,记录动物的体重增加、食物和水摄入量、运动活动及竖毛行为。
应激使体重增加和食物摄入量减少,水摄入量和血浆皮质酮水平升高,运动活动和竖毛行为减少。NAc右侧短暂失活可抑制应激对体重增加、水摄入量和血浆皮质酮水平的影响,但对食物摄入量无影响。然而,当NAc左侧失活时,仅体重增加受到影响,其他参数与应激组无差异。即便如此,血浆皮质酮水平仍有所升高。
总之,我们的数据表明,NAc壳部右侧短暂失活可减轻应激的代谢指标,但NAc壳部左侧失活甚至会加剧应激指标。