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Forced Desynchrony Reveals Independent Contributions of Suprachiasmatic Oscillators to the Daily Plasma Corticosterone Rhythm in Male Rats

机译:强迫不同步揭示了雄性大鼠超视交叉振荡器对每日血浆皮质类固醇节律的独立贡献。

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摘要

The suprachiasmatic nucleus (SCN) is required for the daily rhythm of plasma glucocorticoids; however, the independent contributions from oscillators within the different subregions of the SCN to the glucocorticoid rhythm remain unclear. Here, we use genetically and neurologically intact, forced desynchronized rats to test the hypothesis that the daily rhythm of the glucocorticoid, corticosterone, is regulated by both light responsive and light-dissociated circadian oscillators in the ventrolateral (vl-) and dorsomedial (dm-) SCN, respectively. We show that when the vlSCN and dmSCN are in maximum phase misalignment, the peak of the plasma corticosterone rhythm is shifted and the amplitude reduced; whereas, the peak of the plasma adrenocorticotropic hormone (ACTH) rhythm is also reduced, the phase is dissociated from that of the corticosterone rhythm. These data support previous studies suggesting an ACTH-independent pathway contributes to the corticosterone rhythm. To determine if either SCN subregion independently regulates corticosterone through the sympathetic nervous system, we compared unilateral adrenalectomized, desynchronized rats that had undergone either transection of the thoracic splanchnic nerve or sham transection to the remaining adrenal. Splanchnicectomy reduced and phase advanced the peak of both the corticosterone and ACTH rhythms. These data suggest that both the vlSCN and dmSCN contribute to the corticosterone rhythm by both reducing plasma ACTH and differentially regulating plasma corticosterone through an ACTH- and sympathetic nervous system-independent pathway.
机译:血浆糖皮质激素的每日节律需要视交叉上核(SCN)。然而,尚不清楚SCN的不同子区域内的振荡器对糖皮质激素节律的独立影响。在这里,我们使用遗传和神经学上完整的,强迫失步的大鼠来检验以下假设:在腹侧(vl-)和背侧(dm- )分别。我们显示,当vlSCN和dmSCN处于最大相位失准时,血浆皮质酮节律的峰移动并且振幅减小;而血浆促肾上腺皮质激素(ACTH)节律的峰值也降低了,该相与皮质酮节律的相分离。这些数据支持先前的研究,表明ACTH依赖性途径有助于皮质酮的节律。为了确定任一SCN子区域是否通过交感神经系统独立调节皮质酮,我们将单侧经肾上腺切除或假性横切的肾上腺切除,不同步的大鼠与其余的肾上腺进行了比较。内脏切除术使皮质酮和ACTH节律的峰值减少并且阶段提前。这些数据表明,vlSCN和dmSCN均通过降低血浆ACTH并通过独立于ACTH和交感神经系统的途径差异调节血浆皮质酮而有助于皮质酮节律。

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