褪黑素在非自然时间环境下睡眠中断的生理缓解中的作用。

IF 3.3 4区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Amaan Buniyaadi, Abhilash Prabhat, Sanjay Kumar Bhardwaj, Vinod Kumar
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引用次数: 0

摘要

明亮的夜晚会降低褪黑素峰值,扰乱睡眠。以此作为本实验范式的基础,我们研究了夜间褪黑激素水平是否对昼行性脊椎动物的睡眠调节至关重要。驯化的印度家鸦(Corvus splendens)被随机分成三组,每组12只。在接下来的10 D中,一组维持12 L:12 D,与前一样(LD对照组);对于另外两组,绝对的黑暗被夜晚昏暗的灯光取代(dLAN;L = ~150勒克斯,D = ~6勒克斯)。在dLAN下,在熄灯前半小时,LD对照组和dLAN组腹腔注射200 μL载药(0.75%生理盐水),dLAN组腹腔注射200 μL载药(含褪黑素,剂量为50 μg -1 day-1)。在dLAN下,外源性褪黑激素升高夜间AANAT mRNA和血浆褪黑激素水平,诱导松果体和下丘脑生物钟基因(PER2、CRY1、BMAL1、NPAS2、REVERB)以及下丘脑褪黑激素受体(MEL1a、MEL1b)和表观遗传修饰基因(HAT1、HDAC2、HDAC4、DNMT3a)的昼夜表达变化。夜间褪黑激素水平升高可改善睡眠,并对下丘脑夜间睡眠相关基因的表达产生积极影响(细胞因子通路:TLR4、TNFα、IL-1β、NOS1;钙通路:CAMK2, SIK3)和清醒(ACHM3, EGR1, HOMER1a, OREXIN)状态,并与神经发生和突触可塑性(BDNF, EGR1, CREB)。这表明褪黑素在缓解plan引起的睡眠中断中的作用。夜间褪黑激素峰值水平是日常觉醒-睡眠模式的调控转录途径的重要组成部分,对昼行性物种的睡眠相关问题具有深远的影响,包括可能居住在光污染普遍存在的过度光照环境中的人类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of melatonin in physiological mitigation of sleep disruption in an unnatural temporal environment.

Illuminated nights reduce melatonin peak and disrupt sleep. Using this as the basis of the present experimental paradigm, we investigated whether nocturnal melatonin levels were crucial for sleep regulation in a diurnal vertebrate. Acclimated Indian house crows (Corvus splendens) were randomly segregated into three groups of 12 each. For the next 10 days, one group was maintained on 12 L:12 D, as before (LD control); for the other two groups, the absolute darkness was replaced with dim light at night (dLAN; L = ~150 lux, D = ~6 lux). Under dLAN, half an hour before light off time, the LD control and one dLAN group received intraperitoneally 200 μL of vehicle (0.75% physiological saline), while the other dLAN group received a similar 200 μL vehicle but containing melatonin at a dose of 50 μg bird-1 day-1. Under dLAN, exogenous melatonin elevated nocturnal AANAT mRNA and plasma melatonin levels and induced changes in diurnal expressions of clock genes (PER2, CRY1, BMAL1, NPAS2, REVERB) in the pineal gland and hypothalamus, and of genes encoding melatonin receptors (MEL1a, MEL1b) and epigenetic modifiers (HAT1, HDAC2, HDAC4, DNMT3a) in the hypothalamus. Elevated nocturnal melatonin levels bettered sleep with positive effects on the hypothalamic expression of genes associated with nocturnal sleep (cytokine pathway: TLR4, TNFα, IL-1β, NOS1; calcium pathway: CAMK2, SIK3) and awake (ACHM3, EGR1, HOMER1a, OREXIN) states, and with neurogenesis and synaptic plasticity (BDNF, EGR1, CREB). These suggested the role of melatonin in mitigation of the dLAN-induced sleep disruption. Nocturnal melatonin peak levels are a crucial component of the regulatory transcriptional pathways underlying the daily wake-sleep pattern, with far-reaching implications for sleep-related issues in diurnal species including perhaps humans inhabiting an over-lit environment with pervasive light pollution.

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来源期刊
Journal of Neuroendocrinology
Journal of Neuroendocrinology 医学-内分泌学与代谢
CiteScore
6.40
自引率
6.20%
发文量
137
审稿时长
4-8 weeks
期刊介绍: Journal of Neuroendocrinology provides the principal international focus for the newest ideas in classical neuroendocrinology and its expanding interface with the regulation of behavioural, cognitive, developmental, degenerative and metabolic processes. Through the rapid publication of original manuscripts and provocative review articles, it provides essential reading for basic scientists and clinicians researching in this rapidly expanding field. In determining content, the primary considerations are excellence, relevance and novelty. While Journal of Neuroendocrinology reflects the broad scientific and clinical interests of the BSN membership, the editorial team, led by Professor Julian Mercer, ensures that the journal’s ethos, authorship, content and purpose are those expected of a leading international publication.
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