• 文献检索
  • 文档翻译
  • 深度研究
  • 学术资讯
  • Suppr Zotero 插件Zotero 插件
  • 邀请有礼
  • 套餐&价格
  • 历史记录
应用&插件
Suppr Zotero 插件Zotero 插件浏览器插件Mac 客户端Windows 客户端微信小程序
定价
高级版会员购买积分包购买API积分包
服务
文献检索文档翻译深度研究API 文档MCP 服务
关于我们
关于 Suppr公司介绍联系我们用户协议隐私条款
关注我们

Suppr 超能文献

核心技术专利:CN118964589B侵权必究
粤ICP备2023148730 号-1Suppr @ 2026

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验

饮食缺铁对小鼠昼夜睡眠结构的影响。

The effects of dietary iron deprivation on murine circadian sleep architecture.

作者信息

Dean Terry, Allen Richard P, O'Donnell Christopher P, Earley Christopher J

机构信息

The University of Pennsylvania School of Medicine, Department of Neuroscience, USA.

出版信息

Sleep Med. 2006 Dec;7(8):634-40. doi: 10.1016/j.sleep.2006.07.002. Epub 2006 Nov 13.

DOI:10.1016/j.sleep.2006.07.002
PMID:17098470
Abstract

OBJECTIVES

Iron deficiency is considered a putative cause for restless legs syndrome (RLS), a human sensorimotor disorder characterized by a circadian presentation of symptoms during the evening hours that disrupts one's ability to sleep. We sought to evaluate the sleep-wake effects of diet-induced iron deficiency in mice as an animal model of RLS. To this end, we hypothesized that the iron-deprived mice would exhibit a sleep-wake circadian pattern characteristic of the human syndrome: increased wakefulness during the hours immediately preceding the sleep-predominant period.

METHODS

Following weaning at post-natal day (PND) 21, C57BL/6J mice were assigned to one of two dietary treatments: iron-deficient (ID, n=7) or iron-adequate (i.e., control, CTL, n=6). At PND 44, the mice were surgically instrumented for polysomnographic (PSG) recording, and data were collected at young adulthood: PNDs 59 and 60. Sleep-wake architecture was characterized for the 12-h light and dark periods and also for six consecutive 4-h blocks comprising a 24-h day.

RESULTS

The ID mice showed marked increases in wake time in the 4-h period prior to lights-on; both non-rapid eye movement (NREM) and rapid eye movement (REM) sleep were reduced. In contrast, sleep-wake activity did not differ across the 12-h light period.

CONCLUSIONS

Dietary iron deficiency in mice elicited increases in wakefulness during a particular circadian time point that corresponds to the period during which RLS symptoms would maximally disturb sleep onset and progression in humans. These data indicate that iron-deficient mice may provide a potentially useful animal model for RLS.

摘要

目的

缺铁被认为是不宁腿综合征(RLS)的一个假定病因,RLS是一种人类感觉运动障碍,其特征是在傍晚时分出现昼夜节律性症状,扰乱人的睡眠能力。我们试图评估饮食诱导的缺铁对小鼠睡眠-觉醒的影响,以此作为RLS的动物模型。为此,我们假设缺铁小鼠会表现出人类综合征特有的睡眠-觉醒昼夜节律模式:在以睡眠为主的时间段之前的几个小时内觉醒增加。

方法

在出生后第21天(PND 21)断奶后,将C57BL/6J小鼠分配到两种饮食处理之一:缺铁组(ID,n = 7)或铁充足组(即对照组,CTL,n = 6)。在PND 44时,对小鼠进行手术植入多导睡眠图(PSG)记录设备,并在成年早期(PND 59和60)收集数据。对12小时光照和黑暗周期以及包括24小时一天的连续六个4小时时间段的睡眠-觉醒结构进行了表征。

结果

ID组小鼠在熄灯前的4小时内觉醒时间显著增加;非快速眼动(NREM)睡眠和快速眼动(REM)睡眠均减少。相比之下,在12小时光照期间,睡眠-觉醒活动没有差异。

结论

小鼠饮食缺铁会在特定的昼夜节律时间点引起觉醒增加,这与RLS症状在人类中最大程度干扰睡眠开始和进程的时间段相对应。这些数据表明,缺铁小鼠可能为RLS提供一个潜在有用的动物模型。

相似文献

1
The effects of dietary iron deprivation on murine circadian sleep architecture.饮食缺铁对小鼠昼夜睡眠结构的影响。
Sleep Med. 2006 Dec;7(8):634-40. doi: 10.1016/j.sleep.2006.07.002. Epub 2006 Nov 13.
2
Spinal cord dopamine receptor expression and function in mice with 6-OHDA lesion of the A11 nucleus and dietary iron deprivation.A11核6-羟基多巴胺损伤及饮食铁缺乏小鼠脊髓多巴胺受体的表达与功能
J Neurosci Res. 2007 Apr;85(5):1065-76. doi: 10.1002/jnr.21207.
3
Diurnal variation of lipopolysaccharide-induced alterations in sleep and body temperature of interleukin-6-deficient mice.脂多糖诱导的白细胞介素-6缺陷小鼠睡眠和体温变化的昼夜节律
Brain Behav Immun. 2005 Jan;19(1):40-51. doi: 10.1016/j.bbi.2004.04.001.
4
Restless legs syndrome: pathophysiology and the role of iron and folate.不宁腿综合征:病理生理学以及铁和叶酸的作用
Altern Med Rev. 2007 Jun;12(2):101-12.
5
Locomotion is increased in a11-lesioned mice with iron deprivation: a possible animal model for restless legs syndrome.铁缺乏的A11损伤小鼠运动增加:一种可能的不宁腿综合征动物模型。
J Neuropathol Exp Neurol. 2007 May;66(5):383-8. doi: 10.1097/nen.0b013e3180517b5f.
6
Compensatory sleep responses to wakefulness induced by the dopamine autoreceptor antagonist (-)DS121.多巴胺自身受体拮抗剂(-)DS121诱导清醒后的代偿性睡眠反应。
J Pharmacol Exp Ther. 1998 Jun;285(3):1073-83.
7
Circadian variation in restless legs syndrome.不宁腿综合征的昼夜节律变化。
Sleep Med. 2007 Sep;8(6):645-50. doi: 10.1016/j.sleep.2006.10.011. Epub 2007 Mar 26.
8
[Diagnosis and symptom rating scale of restless legs syndrome].[不安腿综合征的诊断与症状评定量表]
Brain Nerve. 2009 May;61(5):533-8.
9
Sleep homeostasis in the rat in the light and dark period.大鼠在明期和暗期的睡眠稳态
Brain Res Bull. 2007 Sep 14;74(1-3):37-44. doi: 10.1016/j.brainresbull.2007.05.001. Epub 2007 May 24.
10
Disruptions in sleep time and sleep architecture in a mouse model of repeated ethanol withdrawal.反复乙醇戒断小鼠模型中的睡眠时间和睡眠结构紊乱。
Alcohol Clin Exp Res. 2006 Jul;30(7):1214-22. doi: 10.1111/j.1530-0277.2006.00134.x.

引用本文的文献

1
Putative Animal Models of Restless Legs Syndrome: A Systematic Review and Evaluation of Their Face and Construct Validity.疑似不宁腿综合征的动物模型:系统评价及其对其表面和结构效度的评估。
Neurotherapeutics. 2023 Jan;20(1):154-178. doi: 10.1007/s13311-022-01334-4. Epub 2022 Dec 19.
2
Striatal histamine mechanism in the pathogenesis of restless legs syndrome.纹状体组胺机制与不宁腿综合征发病机制的关系。
Sleep. 2020 Feb 13;43(2). doi: 10.1093/sleep/zsz223.
3
Adenosine mechanisms and hypersensitive corticostriatal terminals in restless legs syndrome. Rationale for the use of inhibitors of adenosine transport.
不安腿综合征中腺苷机制与超敏皮质纹状体终末。使用腺苷转运抑制剂的理论依据。
Adv Pharmacol. 2019;84:3-19. doi: 10.1016/bs.apha.2018.12.005. Epub 2019 Jan 18.
4
Sleep and Tibialis Anterior Muscle Activity in Mice With Mild Hypoxia and Iron Deficiency: Implications for the Restless Legs Syndrome.轻度缺氧和缺铁小鼠的睡眠与胫前肌活动:对不宁腿综合征的启示
Front Physiol. 2018 Dec 17;9:1818. doi: 10.3389/fphys.2018.01818. eCollection 2018.
5
Iron in Restless Legs Syndrome.不安腿综合征中的铁元素。
Mov Disord Clin Pract. 2014 Jun 12;1(3):161-172. doi: 10.1002/mdc3.12047. eCollection 2014 Sep.
6
Sleep phenotype in the Townes mouse model of sickle cell disease.镰状细胞病 Townes 鼠模型中的睡眠表型。
Sleep Breath. 2019 Mar;23(1):333-339. doi: 10.1007/s11325-018-1711-x. Epub 2018 Aug 29.
7
New Insights into the Neurobiology of Restless Legs Syndrome.对不宁腿综合征神经生物学的新认识。
Neuroscientist. 2019 Apr;25(2):113-125. doi: 10.1177/1073858418791763. Epub 2018 Jul 26.
8
Pivotal Role of Adenosine Neurotransmission in Restless Legs Syndrome.腺苷神经传递在不宁腿综合征中的关键作用。
Front Neurosci. 2018 Jan 8;11:722. doi: 10.3389/fnins.2017.00722. eCollection 2017.
9
Motor hyperactivity of the iron-deficient rat - an animal model of restless legs syndrome.缺铁型大鼠的运动过度——不宁腿综合征的动物模型。
Mov Disord. 2017 Dec;32(12):1687-1693. doi: 10.1002/mds.27133. Epub 2017 Aug 26.
10
Iron, dopamine, genetics, and hormones in the pathophysiology of restless legs syndrome.铁、多巴胺、遗传学和激素在不宁腿综合征的病理生理学中的作用。
J Neurol. 2017 Aug;264(8):1634-1641. doi: 10.1007/s00415-017-8431-1. Epub 2017 Feb 24.