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Temporal phase relation of circadian neural oscillations as the basis of testicular maturation in mice: A test of a coincidence model

机译:昼夜节律性神经振荡的时相关系作为小鼠睾丸成熟的基础:符合模型的检验

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摘要

To study the underlying mechanism of gonadal growth during the attainment of puberty and to test a coincidence model, 7 experimental groups of 2-week-old male mice, Mus musculus, were administered the serotonin precursor, 5-hydroxytryptophan, followed by the dopamine precursor, l-dihydroxyphenylalanine at hourly intervals of 6, 7, 8, 9, 10, 11 and 12 h (5 mg/100 g body weight per day for 13 days). At 11 days post-treatment, a suppression of gonadal activity was seen in the 7-h mice and a maximum suppression in the 8-h mice, along with a significantly increased degree of gonadal development in the 12-h mice, as compared with the controls. In addition to its known regulation of seasonal gonadal cycles, the relative position of two circadian neural oscillations may also affect the rate of gonadal development during the attainment of puberty in mice. Moreover, the present study provides an experimental paradigm to test the coincidence model of circadian oscillations.
机译:为了研究青春期发育过程中性腺生长的潜在机制并测试一个巧合模型,对7个实验组的2周龄雄性小鼠Mus mus分别给予了5-羟色氨酸,5-羟色胺和多巴胺前体1-二羟基苯丙氨酸,每小时间隔6、7、8、9、10、11和12小时(每天5毫克/ 100克体重,持续13天)。与治疗相比,在治疗后11天,在7小时小鼠中观察到性腺活性受到抑制,在8小时小鼠中受到了最大抑制,并且在12小时小鼠中发生了性腺发育的明显增加。控件。除了已知的季节性性腺周期调控之外,两个昼夜节律性神经振荡的相对位置也可能影响小鼠青春期发育过程中性腺的发育速度。此外,本研究提供了实验范式来测试昼夜节律振荡的符合模型。

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