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首页> 外文期刊>Journal of neuroendocrinology >The ultradian and circadian rhythms of free corticosterone in the brain are not affected by gender: an in vivo microdialysis study in Wistar rats.
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The ultradian and circadian rhythms of free corticosterone in the brain are not affected by gender: an in vivo microdialysis study in Wistar rats.

机译:大脑中游离皮质酮的超昼夜节律不受性别的影响:一项在Wistar大鼠体内进行的微透析研究。

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摘要

Recently, we described that free corticosterone levels in the brain of male Wistar rats, as assessed by in vivo microdialysis, show an ultradian rhythm with a pulse frequency of 1.2 pulses/h. To establish whether gender influences brain free corticosterone rhythms, we studied free corticosterone levels in the female Wistar rat under baseline and stressful conditions using microdialysis in the hippocampus. Analysis of the data with the PULSAR algorithm revealed that hippocampal free corticosterone levels show a clear ultradian pattern in female rats with a pulse frequency of 1.16+/-0.05 pulses/h between 09.00 h and 21.00 h. Further analysis showed that the pulse amplitude is significantly higher during the late afternoon/early night (15.00-21.00 h) than during the morning/early afternoon (09.00-15.00 h) phase (0.13+/-0.03 versus 0.07+/-0.01 microg/dl, respectively, P < 0.05). Pulse characteristics were extremely reproducible as demonstrated by the almost identical pulse parameters derived from two consecutive 24-h periods [pulse frequency: 1.13+/-0.09 and 1.19+/-0.08 pulses/h; pulse amplitude: 0.11+/-0.05 and 0.10+/-0.02 microg/dl for day 1 and day 2 (09.00-21.00 h) respectively, P > 0.05]. Both exposure to a novel environment and forced swim stress increased hippocampal free corticosterone levels. However, the stress-induced rise reached higher levels and was more prolonged after forced swimming (area under the curve: 46.84+/-9.25 and 12.08+/-1.69 arbitrary units for forced swimming and novelty stress respectively, P = 0.01). Importantly, the ultradian rhythm was rapidly restored after termination of the stress response. This is the first demonstration that the female rat brain is exposed to free corticosterone levels that follow a circadian as well as an ultradian pattern and show almost identical pulse characteristics as recently reported in male animals. These observations are of significance for further investigations into the dynamics of glucocorticoid action in the brain of both genders.
机译:最近,我们描述了通过体内微透析评估的雄性Wistar大鼠大脑中的游离皮质酮水平,显示出超脉搏节律,脉冲频率为1.2脉冲/小时。为了确定性别是否影响大脑游离皮质酮的节律,我们使用海马体微透析研究了基线和压力条件下雌性Wistar大鼠的游离皮质酮水平。使用PULSAR算法对数据进行分析后发现,雌性大鼠海马中游离皮质酮水平呈明显的超白模式,脉冲频率在09.00 h至21.00 h之间为1.16 +/- 0.05 pulses / h。进一步的分析表明,在午后/清晨(15.00-21.00 h)的脉冲幅度显着高于早/午后(09.00-15.00 h)阶段的脉冲幅度(0.13 +/- 0.03对0.07 +/- 0.01 microg / dl分别为P <0.05)。从两个连续的24小时周期中得出的几乎相同的脉冲参数证明了脉冲特性具有极高的可重复性[脉冲频率:1.13 +/- 0.09和1.19 +/- 0.08脉冲/小时;第1天和第2天(09.00-21.00小时)的脉冲幅度:分别为0.11 +/- 0.05和0.10 +/- 0.02 microg / dl,P> 0.05]。暴露在新环境中和强迫游泳都增加了海马游离皮质酮水平。但是,在强迫游泳后,由压力引起的上升达到更高的水平,并延长了更长的时间(曲线下的面积:强迫游泳和新奇压力分别为46.84 +/- 9.25和12.08 +/- 1.69个任意单位,P = 0.01)。重要的是,在压力反应终止后,超音速节律迅速恢复。这是首次证明雌性大鼠大脑暴露于遵循昼夜节律和超昼夜模式的游离皮质酮水平,并显示出与最近在雄性动物中几乎相同的脉搏特征。这些观察对于进一步研究男女大脑中糖皮质激素作用的动力学具有重要意义。

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