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Juvenile male rats display lower cortical metabolic capacity than females.

机译:幼小雄性大鼠的皮质代谢能力低于雌性。

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摘要

The juvenile brain undergoes marked maturational changes accompanied by major sex hormone changes. In particular, sex differences in neural substrates could underlie male-specific dysfunction in behavioral responses related to the prefrontal cortex. Sex differences in regional metabolic capacity of the cerebral cortex were investigated in juvenile Sprague-Dawley rats. At 6 weeks of age the brains were processed for quantitative histochemistry of cytochrome oxidase, a rate-limiting enzyme in cellular respiration, which is an index of brain metabolic capacity. Quantitative image analysis revealed a main effect of sex with males displaying lower regional metabolic capacity than females in the dorsolateral and orbital prefrontal cortex and in the posterior parietal cortex. In addition, males separated for 6h/day from their mothers as pups showed greater ambulatory behavior in the novel open field and higher metabolism in the posterior parietal cortex relative to males separated for 15min/day. This is the first study to show sex differences in brain metabolic capacity in regions such as the prefrontal cortex that may be hypometabolic in juvenile males relative to females.
机译:少年大脑会经历明显的成熟变化,并伴有主要的性激素变化。特别是,神经基质中的性别差异可能是男性特定功能障碍的前额叶皮质相关行为反应的基础。研究了幼Sprague-Dawley大鼠大脑皮质区域代谢能力的性别差异。在6周龄时,对大脑进行了细胞色素氧化酶(一种细胞呼吸中的限速酶)的定量组织化学处理,这是脑代谢能力的指标。定量图像分析揭示了性别的主要影响,在背外侧和眼眶前额叶皮层和后顶叶皮层中,雄性比雌性显示出较低的区域代谢能力。此外,与幼崽分开15天/天的雄性相比,幼崽在新颖的开阔野外表现出更大的走动行为,并且在顶顶后皮层具有更高的新陈代谢,因此它们与母亲分开6h / day。这是第一项显示大脑代谢能力性别差异的研究,该区域在前额叶皮质等区域可能相对于女性而言处于代谢不足的状态。

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