首页> 外文期刊>Behavioural Brain Research: An International Journal >High-fructose diet initiated during adolescence does not affect basolateral amygdala excitability or affective-like behavior in Sprague Dawley rats
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High-fructose diet initiated during adolescence does not affect basolateral amygdala excitability or affective-like behavior in Sprague Dawley rats

机译:在青春期期间发起的高果糖饮食不会影响Sprague Dawley大鼠的基石外孢子症兴奋性或情感样行为

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Patients with type-2 diabetes, obesity, and metabolic syndrome have a significantly increased risk of developing depression. Dysregulated metabolism may contribute to the etiology of depression by affecting neuronal activity in key limbic areas. The basolateral amygdala (BLA) acts as a critical emotional valence detector in the brain's limbic circuit, and shows hyperactivity and abnormal glucose metabolism in depressed patients. Furthermore, administering a periadolescent high-fructose diet (HFrD; a model of metabolic syndrome) to male Wistar rats increases anxiety- and depressive-like behavior. Repeated shock stress in Sprague Dawley rats similarly increases anxiety-like behavior and increases BLA excitability. We therefore investigated whether a metabolic stressor (HFrD) would have similar effects as shock stress on BLA excitability in Sprague Dawley rats. We found that a HFrD did not affect the intrinsic excitability of BLA neurons. Fructose-fed Sprague Dawley rats had elevated body fat mass, but did not show increases in metabolic efficiency and fasting blood glucose relative to control. Finally unlike Wistar rats, fructose-fed Sprague Dawley rats did not show increased anxiety- and depressive-like behavior. These results suggest that genetic differences between rat strains may affect susceptibility to a metabolic insult. Collectively, these data show that a periadolescent HFrD disrupts metabolism, but does not change affective behavior or BLA excitability in Sprague Dawley rats.
机译:2型糖尿病,肥胖症和代谢综合征患者具有显着增加的发展抑郁症风险。通过影响关键肢体区域的神经元活动,失调的代谢可能有助于抑郁的病因。基底外侧杏仁达拉(BLA)作为大脑肢体电路中的临界情绪化价探测器,并显示抑郁症患者的多动和异常葡萄糖代谢。此外,给雄性Wistar大鼠施用Periadlescescure高果糖饮食(HFRD;代谢综合征模型)增加了焦虑和抑郁的行为。 Sprague Dawley大鼠的反复冲击压力同样增加了焦虑的行为并提高了BLA兴奋性。因此,我们调查了代谢压力源(HFRD)是否会对Shrague Dawley大鼠的BLA兴奋性具有类似的效果。我们发现HFRD不影响BLA神经元的内在兴奋性。 Fruceose-Fed Sprague Dawley大鼠的体脂含量升高,但没有显示出代谢效率和相对于对照的空腹血糖增加。最后与Wistar大鼠不同,果糖喂养的Sprague Dawley大鼠没有显示出增加的焦虑和抑郁的行为。这些结果表明,大鼠菌株之间的遗传差异可能影响对代谢损伤的易感性。总的来说,这些数据表明,PeriaDoLescest HFRD破坏了代谢,但在Sprague Dawley大鼠中不会改变情感行为或BLA兴奋。

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