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Selective breeding for helplessness in rats alters the metabolic profile of the hippocampus and frontal cortex: a 1H-MRS study at 9.4 T

机译:大鼠无助的选择性育种改变海马和额叶皮层的代谢特征:一项在9.4 T时进行的1H-MRS研究

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In humans metabolic changes, particularly in frontal areas of the brain, accompany depressive disorders, but few studies were conducted in animal models of depression. We used hydrogen-1 magnetic resonance spectroscopy at 9.4 T to measure the metabolic profiles of the hippocampus and frontal cortex in congenital learned helpless (cLH) and wild-type (WT) rats. The learned helplessness model of depression exposes animals to uncontrollable stress to induce changes in emotion, cognition and behaviour, but cLH rats were selectively bred to show changes in behaviour even without exposure to uncontrollable stress. Experimentally naive male 8- to 10-wk-old cLH (n = 10) and WT rats (n = 22) underwent spectroscopy and were exposed to uncontrollable stress 1 wk after the scan. We found that cLH compared to WT rats had lower levels of glutamate in the hippocampus and lower levels of choline-containing compounds in the hippocampus and frontal cortex, but higher levels of taurine and phosphocreatine in these regions, pointing to compensatory efforts of the brain to reduce excitotoxic potential and to increase neuroprotection and energy, possibly as a result of cellular stress and damage. The reduction in choline-containing phospholipids might represent a source or correlate of such stress. Overall, the results indicate that metabolic abnormalities are present in animals with a predisposition to helplessness even without exposure to explicit stress and may help identify non-invasive biomarkers in individuals who are prone to depression.
机译:在人类中,新陈代谢的变化,尤其是在大脑额叶区域,伴随着抑郁症,但是在抑郁症的动物模型中进行的研究很少。我们在9.4 T处使用氢1磁共振波谱法来测量先天性学习无助(cLH)和野生型(WT)大鼠的海马和额叶皮层的代谢谱。习得的抑郁症无助模型使动物处于无法控制的压力之下,从而诱发情绪,认知和行为的变化,但是即使没有暴露于无法控制的压力下,也可以选择性饲养cLH大鼠以显示行为变化。实验中,幼稚的8至10周龄雄性cLH(n = 10)和WT大鼠(n = 22)进行了光谱分析,扫描后1 wk暴露于无法控制的压力下。我们发现,与WT大鼠相比,cLH在海马中的谷氨酸水平较低,在海马和额叶皮层中的胆碱含量较低,但在这些区域中,牛磺酸和磷酸肌酸的水平较高,这表明大脑对可能由于细胞应激和损伤而降低兴奋性中毒潜能并增加神经保护和能量。含胆碱的磷脂的减少可能是这种压力的来源或相关因素。总的来说,这些结果表明,即使没有暴露在明显的压力下,动物中也容易出现代谢异常,容易患上无助感,并且可能有助于识别易于抑郁的个体的非侵入性生物标志物。

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