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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Serotonergic potentiation of dark pulse-induced phase-shifting effects at midday in hamsters.
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Serotonergic potentiation of dark pulse-induced phase-shifting effects at midday in hamsters.

机译:仓鼠中午时暗脉冲诱导的相移效应的血清素能增强。

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In mammals, resetting of the suprachiasmatic clock (SCN) by behavioral activation or serotonin (5-HT) agonists is mimicked by dark pulses, presented during subjective day in constant light (LL). Because behavioral resetting may be mediated in part by 5-HT inputs to the SCN, here we determined whether 5-HT system can modulate dark-induced phase-shifts in Syrian hamsters housed in LL. Two hours of darkness at mid-subjective day (circadian time 6; CT-6) resulted in increased concentrations of 5-HT in the SCN tissue and induction of c-FOS expression in the raphe nuclei. Injections of the 5-HT(1A/7) agonist +8-OH-DPAT or dark pulses at CT-6 induced phase-advances of the wheel-running activity rhythm and down-regulated the expression of the clock genes Per1-2 and c-FOS in the SCN in a similar way. The combination of both treatments [+8-OH-DPAT + dark pulses], however, resulted in larger phase-advances, while associated molecular changes were not significantly modified, except for the gene Dbp, in comparison to +8-OH-DPAT or dark pulses alone. Dark resetting was blocked by pre-treatment with a 5-HT(7) antagonist, but not with a 5-HT(1A) antagonist. The additive phase-shifts of two different cues to reset the SCN clock open wide the gateway for non-photic shifting, leading to new strategies in chronotherapy.
机译:在哺乳动物中,通过行为激活或5-羟色胺(5-HT)激动剂重置视交叉上时钟(SCN)的过程是由在主观白天在恒定光照(LL)下呈现的暗脉冲模拟的。因为行为重置可能部分由SCN的5-HT输入介导,所以在此我们确定5-HT系统是否可以调节LL内叙利亚仓鼠的黑暗诱导相移。在主观的中间一天(昼夜节律时间6; CT-6)两小时的黑暗导致SCN组织中5-HT的浓度增加,并在缝核中诱导c-FOS表达。在CT-6处注入5-HT(1A / 7)激动剂+ 8-OH-DPAT或暗脉冲会引起车轮行驶活动节奏的相位提前,并下调时钟基因Per1-2和SCN中的c-FOS以类似的方式。然而,与+ 8-OH-DPAT相比,两种处理[+ 8-OH-DPAT +暗脉冲]的组合导致了较大的相位前移,而相关的分子变化除基因Dbp以外没有明显的改变。或仅暗脉冲。通过用5-HT(7)拮抗剂进行预处理可以阻止暗淡复位,但不能通过5-HT(1A)拮抗剂进行预处理。重置SCN时钟的两种不同线索的相加相移为非光移打开了广阔的大门,从而催生了计时疗法的新策略。

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