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Imaging the immediate non-genomic effects of stress hormone on brain activity.

机译:成像应激激素对大脑活动的直接非基因组影响。

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摘要

The stress hormones, glucocorticoids, bind to intracellular receptor proteins and act as transcription factors affecting gene activity. These genomic effects occur over hours and even days producing long-term changes in synaptic plasticity and neural transmission. In addition to this classic genomic pathway, there is evidence that stress hormones can have immediate, non-genomic effects on brain function. Using non-invasive functional magnetic resonance imaging, awake, adrenalectomized rats were given intravenous doses of corticosterone mimicking blood levels of hormone achieved with modest and intense stress. The dose of corticosterone mimicking high stress caused a significant increase in functional activity in the hippocampus, forebrain cortex and lateral hypothalamus within minutes of administration. This finding shows that stress hormones can have non-genomic effects on brain activity potentially affecting the immediate cognitive and behavioral response to a highly emotional experience.
机译:应激激素糖皮质激素与细胞内受体蛋白结合,并作为影响基因活性的转录因子。这些基因组效应会持续数小时甚至数天,从而使突触可塑性和神经传递产生长期变化。除了这种经典的基因组途径外,有证据表明应激激素可对脑功能产生直接的非基因组影响。使用非侵入性功能磁共振成像,给清醒,肾上腺切除的大鼠静脉内注射皮质酮,以模拟在中等和强烈压力下所达到的激素水平。模仿高压力的皮质酮剂量在给药后几分钟内导致海马,前脑皮质和下丘脑外侧的功能活动显着增加。这一发现表明,压力荷尔蒙对大脑活动可能具有非基因组影响,可能影响对高度情感体验的即时认知和行为反应。

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