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焦虑倾向大鼠情绪脑的氧化代谢改变。

Oxidative metabolism alterations in the emotional brain of anxiety-prone rats.

机构信息

School of Neuroscience, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

School of Neuroscience, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

出版信息

Prog Neuropsychopharmacol Biol Psychiatry. 2019 Dec 20;95:109706. doi: 10.1016/j.pnpbp.2019.109706. Epub 2019 Jul 19.

Abstract

Mood disorders such as anxiety and depression are heterogeneous disorders with many sufferers unresponsive to current pharmacological treatments. Individual differences in temperament represent one factor that may underlie symptom heterogeneity, so understanding its biological underpinnings can help pave the way to personalized therapies and improved patient outcomes. The present study uses a rodent model of temperamental differences to examine whether individual differences in emotional behavior phenotypes correspond to altered limbic brain cellular metabolism, an indicator of neuronal activity. The model uses two selectively bred rat lines - high novelty responder rats (HRs) that show highly exploratory behavior in a novel environment, active coping style and resilience to chronic mild stress compared to low novelty responder rats (LRs), which are inhibited in novel environments, display passive coping style, and are susceptible to chronic stress. Utilizing transcriptome data from a prior study in adult HR/LR rats, we first show that a preponderance of genes differing in the HR vs. LR hippocampus and amygdala are involved in cellular metabolism. This led us to then ask if oxygen consumption was altered in isolated mitochondria of the hippocampus and amygdala of HR/LR rats; here we found increased oxygen consumption reserve capacity in LR amygdala. Our last experiment examined activity of cytochrome c oxidase (COX), an enzyme responsible for ATP production and correlate of metabolic activity, in several brain regions of HR/LR rats. We found that LRs displayed higher COX activity in the dentate gyrus, prefrontal cortex, and dorsal raphe compared to HRs, with no significant HR/LR difference in nuclei of the amygdala. Correlational analyses of COX activity across brain regions suggested divergent connectivity between the prefrontal cortex, amygdala, hippocampus, and dorsal raphe of HR vs. LR rats. Together these studies point to altered cellular metabolism in the limbic brain of LR/HR animals, which may reflect altered neural circuitry that drives their divergent behavioral profiles.

摘要

心境障碍,如焦虑和抑郁,是具有多种症状的异质性疾病,许多患者对当前的药物治疗反应不佳。气质的个体差异是导致症状异质性的一个因素,因此了解其生物学基础可以为个性化治疗和改善患者预后铺平道路。本研究使用一种具有气质差异的啮齿动物模型,研究情绪行为表型的个体差异是否与边缘脑细胞代谢的改变相对应,细胞代谢是神经元活动的一个指标。该模型使用两种选择性繁殖的大鼠品系——高新奇反应大鼠(HRs),它们在新环境中表现出高度探索行为、积极应对方式和对慢性轻度应激的抵抗力,与低新奇反应大鼠(LRs)相比,LRs 在新环境中受到抑制,表现出消极应对方式,且易受慢性应激影响。利用先前在成年 HR/LR 大鼠中进行的转录组数据,我们首先表明,HR 与 LR 海马体和杏仁核之间差异的大多数基因都与细胞代谢有关。这促使我们进一步探讨 HR/LR 大鼠海马体和杏仁体分离线粒体的耗氧量是否发生改变;结果发现 LR 杏仁体的耗氧量储备能力增加。我们的最后一个实验研究了 HR/LR 大鼠几种脑区细胞色素 c 氧化酶(COX)的活性,COX 是一种负责产生 ATP 和代谢活性相关的酶。结果发现,LR 大鼠的齿状回、前额叶皮层和背侧中缝核中的 COX 活性高于 HR 大鼠,而杏仁核核中的 HR/LR 差异不显著。对 HR/LR 大鼠脑区 COX 活性的相关分析表明,HR 与 LR 大鼠前额叶皮层、杏仁核、海马体和背侧中缝核之间的连接存在差异。这些研究共同表明,LR/HR 动物边缘脑的细胞代谢发生改变,这可能反映了驱动其不同行为特征的神经回路改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6266/6708503/dd12983fd5d7/nihms-1536015-f0001.jpg

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Oxidative metabolism alterations in the emotional brain of anxiety-prone rats.焦虑倾向大鼠情绪脑的氧化代谢改变。
Prog Neuropsychopharmacol Biol Psychiatry. 2019 Dec 20;95:109706. doi: 10.1016/j.pnpbp.2019.109706. Epub 2019 Jul 19.

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