浏览全部资源
扫码关注微信
1.北京中医药大学 中医学院,北京 102488
2.北京中医药大学 护理学院,北京 102488
Received:15 February 2022,
Published Online:23 May 2022,
Published:20 November 2022
移动端阅览
王若冲,戴宁,李儒婷等.平台水环境法构建人类疾病动物模型的应用与思考[J].中国实验方剂学杂志,2022,28(22):205-213.
WANG Ruochong,DAI Ning,LI Ruting,et al.Application and Thinking of Platform Method in Construction of Animal Model of Human Disease[J].Chinese Journal of Experimental Traditional Medical Formulae,2022,28(22):205-213.
王若冲,戴宁,李儒婷等.平台水环境法构建人类疾病动物模型的应用与思考[J].中国实验方剂学杂志,2022,28(22):205-213. DOI: 10.13422/j.cnki.syfjx.20222293.
WANG Ruochong,DAI Ning,LI Ruting,et al.Application and Thinking of Platform Method in Construction of Animal Model of Human Disease[J].Chinese Journal of Experimental Traditional Medical Formulae,2022,28(22):205-213. DOI: 10.13422/j.cnki.syfjx.20222293.
平台水环境法是利用啮齿类动物畏水的特点,强迫实验动物长时间站台而无法休息的一种造模方法。此方法可根据不同类型动物模型的需求,调整其应用的时间与节点进行模型构建。目前,平台水环境法的研究热点集中于睡眠剥夺、焦虑抑郁等精神类疾病及疲劳相关动物模型研究中。近年来,随着中医药现代化的发展,此方法也逐渐应用于以“心”“肝”“脾”为中心的中医证候模型与中医病证结合研究中。因为平台水环境法应用的广泛性与造模疾病的多样性,目前仍缺乏此方法的系统论述。本课题组系统归纳国内、外研究,从发展过程、应用现状及问题与发展3个维度探讨平台水环境法在人类疾病动物模型中的应用,并通过分析热点研究的睡眠剥夺、精神类疾病、疲劳、中医证候模型及中医病证结合模型等不同领域,有针对性的深入讨论平台水环境法在各动物模型建立中的构建思路与具体应用,以期为研究者提供有益参考,进而促进研究者对此进一步的探索与研究。
Platform method is a modeling method that forces experimental animals to stand on the platforms for a long time without rest by taking advantage of the rodent's fear of water. The application time and node of platform method in model construction can be adjusted according to the needs of different types of animal models. At present, the research hotspot of platform method focuses on constructing animal models of sleep deprivation, anxiety and depression and other mental diseases as well as fatigue. In recent years, with the development of the modernization of traditional Chinese medicine (TCM), this method has been gradually applied to the study of TCM syndrome model and TCM disease and syndrome combination model with "heart","liver" and "spleen" as the centers. Due to the extensive application of platform method and the diversity of modeling diseases, there is still a lack of systematic discussion on this method as the core. This paper systematically summarized the research in China and abroad and explored the application of platform method in animal models of human diseases from three dimensions: its development process, current application and problems and future development. In addition, through the analysis of the research hotspots on sleep deprivation, mental diseases, fatigue, TCM syndrome model and TCM disease and syndrome combination model,the ideas and specific applications of platform method in construction of various animal models were discussed. This paper was expected to provide reference for researchers and promote further exploration and research of this modeling method.
VAN HULZEN Z J , COENEN A M . Paradoxical sleep deprivation and locomotor activity in rats [J]. Physiol Behav , 1981 , 27 ( 4 ): 741 - 744 .
DEMENT W C . Recent studies on the biological role of rapid eye movement sleep [J]. Am J Psychiatry , 1965 , 122 ( 4 ): 404 - 408 .
MACHADO R B , HIPÓLIDE D C , BENEDITO-SILVA A A , et al . Sleep deprivation induced by the modified multiple platform technique:Quantification of sleep loss and recovery [J]. Brain Res , 2004 , 1004 ( 1/2 ): 45 - 51 .
COHEN H B , DEMENT W C . Sleep:Changes in threshold to electroconvulsive shock in rats after deprivation of "paradoxical" phase [J]. Science , 1965 , 150 ( 3701 ): 1318 - 1319 .
郭兴道 , 李炜 , 张癸荣 , 等 . 睡眠剥夺对学习记忆及中枢神经系统相关分子的影响 [J]. 神经药理学报 , 2014 , 4 ( 1 ): 34 - 51 .
魏砚君 , 卞宏生 , 叶晓楠 , 等 . 睡眠剥夺动物模型及其在中医药改善睡眠研究中的应用 [J]. 中国实验方剂学杂志 , 2018 , 24 ( 10 ): 227 - 234 .
ZHANG W Y , ZHANG W , DAI N , et al . A rat model of central fatigue using a modified multiple platform method [J]. J Vis Exp , 2018 , doi: 10.3791/57362 http://dx.doi.org/10.3791/57362 .
LEDOUX M . Animal models of movement disorders [M]. Amsterdam : Elsevier Academic Press , 2005 : 55 - 71 .
JOEL D . Current animal models of obsessive compulsive disorder:A critical review [J]. Prog Neuropsychopharmacol Biol Psychiatry , 2006 , 30 ( 3 ): 374 - 388 .
LANCEL M , KERKHOF G A . Effects of repeated sleep deprivation in the dark- or light-period on sleep in rats [J]. Physiol Behav , 1989 , 45 ( 2 ): 289 - 297 .
TANG X , YANG L , SANFORD L D . Individual variation in sleep and motor activity in rats [J]. Behav Brain Res , 2007 , 180 ( 1 ): 62 - 68 .
SHARMA B , SENGUPTA T , CHANDRA VISHWAKARMA L , et al . Muscle temperature is least altered during total sleep deprivation in rats [J]. J Therm Biol , 2021 , 98 : 102910 .
WANG L , SONG Y , LI F , et al . Effects of Wen Dan Tang on insomnia-related anxiety and levels of the brain-gut peptide Ghrelin [J]. Neural Regen Res , 2014 , 9 ( 2 ): 205 - 212 .
BECKER M , PINHASOV A , ORNOY A . Animal models of depression:What can they teach us about the human disease? [J]. Diagnostics (Basel) , 2021 , 11 ( 1 ): 123 .
RIEMANN D , KRONE L B , WULFF K , et al . Sleep,insomnia,and depression [J]. Neuropsychopharmacology , 2020 , 45 ( 1 ): 74 - 89 .
PENNINX B , EIKELENBOOM M , GILTAY E J , et al . Cohort profile of the longitudinal Netherlands Study of Depression and Anxiety (NESDA) on etiology, course and consequences of depressive and anxiety disorders [J]. J Affect Disord , 2021 , 287 : 69 - 77 .
ANTYPA N , VOGELZANGS N , MEESTERS Y , et al . Chronotype associations with depression and anxiety disorders in a large cohort study [J]. Depress Anxiety , 2016 , 33 ( 1 ): 75 - 83 .
ANDERSEN M L , HOSHINO K , TUFIK S . Increased susceptibility to development of anhedonia in rats with chronic peripheral nerve injury:Involvement of sleep deprivation? [J]. Prog Neuropsychopharmacol Biol Psychiatry , 2009 , 33 ( 6 ): 960 - 966 .
MOON E J , KO I G , KIM S E , et al . Dexmedetomidine ameliorates sleep deprivation-induced depressive behaviors in mice [J]. Int Neurourol J , 2018 , 22 ( Suppl 3 ): S139 - S146 .
MA W , SONG J , WANG H , et al . Chronic paradoxical sleep deprivation-induced depression-like behavior, energy metabolism and microbial changes in rats [J]. Life Sci , 2019 , 225 : 88 - 97 .
SILVA R H , KAMEDA S R , CARVALHO R C , et al . Anxiogenic effect of sleep deprivation in the elevated plus-maze test in mice [J]. Psychopharmacology (Berl) , 2004 , 176 ( 2 ): 115 - 122 .
PIRES G N , TUFIK S , ANDERSEN M L . Grooming analysis algorithm:Use in the relationship between sleep deprivation and anxiety-like behavior [J]. Prog Neuropsychopharmacol Biol Psychiatry , 2013 , 41 : 6 - 10 .
KALUEFF A V , TUOHIMAA P . The grooming analysis algorithm discriminates between different levels of anxiety in rats:Potential utility for neurobehavioural stress research [J]. J Neurosci Methods , 2005 , 143 ( 2 ): 169 - 177 .
XIE J F , SHAO Y F , WANG H L , et al . Neuropeptide S counteracts paradoxical sleep deprivation-induced anxiety-like behavior and sleep disturbances [J]. Front Cell Neurosci , 2018 , 12 : 64 .
ROUBALOVÁ L , VOŠAHLÍKOVÁ M , SLANINOVÁ J , et al . Tissue-specific protective properties of lithium:Comparison of rat kidney, erythrocytes and brain [J]. Naunyn Schmiedebergs Arch Pharmacol , 2021 , 394 ( 5 ): 955 - 965 .
KANAZAWA L , VECCHIA D D , WENDLER E M , et al . Quercetin reduces manic-like behavior and brain oxidative stress induced by paradoxical sleep deprivation in mice [J]. Free Radic Biol Med , 2016 , 99 : 79 - 86 .
BENEDETTI F , FRESI F , MACCIONI P , et al . Behavioural sensitization to repeated sleep deprivation in a mice model of mania [J]. Behav Brain Res , 2008 , 187 ( 2 ): 221 - 227 .
ARMANI F , ANDERSEN M L , ANDREATINI R , et al . Successful combined therapy with tamoxifen and lithium in a paradoxical sleep deprivation-induced mania model [J]. CNS Neurosci Ther , 2012 , 18 ( 2 ): 119 - 125 .
VALVASSORI S S , RESENDE W R , DAL-PONT G , et al . Lithium ameliorates sleep deprivation-induced mania-like behavior, hypothalamic-pituitary-adrenal (HPA) axis alterations, oxidative stress and elevations of cytokine concentrations in the brain and serum of mice [J]. Bipolar Disord , 2017 , 19 ( 4 ): 246 - 258 .
TWOMEY R , ABOODARDA S J , KRUGER R , et al . Neuromuscular fatigue during exercise:Methodological considerations, etiology and potential role in chronic fatigue [J]. Neurophysiol Clin , 2017 , 47 ( 2 ): 95 - 110 .
ENOKA R M , DUCHATEAU J . Translating fatigue to human performance [J]. Med Sci Sports Exerc , 2016 , 48 ( 11 ): 2228 - 2238 .
HAN C X , LI F , MA J , et al . Review of CENTRAL FATIGUE [J]. Prog Mod Biomed , 2016 , 16 ( 20 ): 3908,3986 - 3988 .
YAMASHITA M , YAMAMOTO T . Tryptophan and kynurenic acid may produce an amplified effect in central fatigue induced by chronic sleep disorder [J]. Int J Tryptophan Res , 2014 , 7 : 9 - 14 .
HAN C , LI F , MA J , et al . Distinct behavioral and brain changes after different durations of the modified multiple platform method on rats:An animal model of central fatigue [J]. PLoS One , 2017 , 12 ( 5 ): e0176850 .
VAN CUTSEM J , MARCORA S , DE PAUW K , et al . The Effects of mental fatigue on physical performance:A systematic review [J]. Sports Med , 2017 , 47 ( 8 ): 1569 - 1588 .
郭思媛 . 体复康加减方对心理疲劳模型大鼠认知功能影响的机制研究 [D]. 北京 : 北京中医药大学 , 2016 .
于姣姣 . 薰衣草精油干预心理疲劳大鼠的疗效观察和生物学基础研究 [D]. 北京 : 北京中医药大学 , 2020 .
于姣姣 , 郭理想 , 戴宁 , 等 . 薰衣草精油对睡眠剥夺大鼠行为学及血清中胃饥饿素、瘦素含量的影响 [J]. 现代中医临床 , 2020 , 27 ( 3 ): 49 - 55 .
关羽茜 , 吴晓青 . 综合疗养措施对长航海勤人员疲劳状况的干预效果 [J]. 实用医药杂志 , 2020 , 37 ( 6 ): 575 - 576 .
陈斗 . 基于动物实验的长航疲劳中医证候研究及相关负面情绪探讨 [D]. 北京 : 北京中医药大学 , 2017 .
李灿东 , 吴承玉 . 中医诊断学 [M]. 北京 : 中国中医药出版社 , 2012 : 8 .
孙福立 , 李德明 . 试用睡眠剥夺方法建立心虚证的动物模型 [J]. 中西医结合杂志 , 1987 ( 1 ): 6,35 - 37 .
于成瑶 , 赵明镜 , 王硕仁 , 等 . 水环境站台睡眠剥夺心虚证大鼠模型的再研究 [J]. 山东中医杂志 , 2005 , 24 ( 5 ): 297 - 300 .
章忱 , 盛学仕 , 吕嵘 , 等 . 动物心肌缺血中医证型规范化标准化研究(二) [J]. 上海中医药杂志 , 2003 , 37 ( 3 ): 42 - 45 .
杨鸣 , 王达洋 , 龚嫒媛 , 等 . 气阴两虚型心衰病证结合小鼠模型的构建与评价 [J]. 中国中医急症 , 2015 , 24 ( 12 ): 2076 - 2078,2092 .
杨茜 , 李峰 , 马捷 , 等 . 水环境小平台建立脾虚证大鼠模型及其评价 [J]. 山东中医杂志 , 2016 , 35 ( 5 ): 452 - 457 .
白世敬 , 李峰 , 唐旭东 , 等 . 功能性腹泻脾虚证动物模型制作方法 [J]. 辽宁中医药大学学报 , 2015 , 17 ( 1 ): 86 - 88 .
刘艳阳 , 李峰 , 刘晶 , 等 . 内脏敏感增高型功能性消化不良脾虚证动物模型的建立 [J]. 辽宁中医杂志 , 2015 , 42 ( 11 ): 2218 - 2220 .
何青鋆 , 戴宁 , 马捷 , 等 . 脾虚1号方对功能性消化不良大鼠CGRP、CCK和VIP的影响 [J]. 时珍国医国药 , 2021 , 32 ( 2 ): 298 - 301 .
卢岩 , 刘振华 , 于晓华 , 等 . 疏肝调神针法针刺对睡眠剥夺模型大鼠神经递质的影响 [J]. 山东中医杂志 , 2017 , 36 ( 4 ): 322 - 325 .
马捷 , 刘晶 , 刘燕 , 等 . 四逆散对水环境小平台站立法大鼠模型的影响 [J]. 中医学报 , 2015 , 30 ( 6 ): 843 - 845 .
韩晨霞 . 基于线粒体生物合成探讨中枢疲劳的中医证候及生物学机制 [D]. 北京 : 北京中医药大学 , 2017 .
HAN C , LI F , LIU Y , et al . Modified Si-Ni-San Decoction ameliorates central fatigue by improving mitochondrial biogenesis in the rat hippocampus [J]. Evid Based Complement Alternat Med , 2018 , 2018 : 9452127 .
ARORA S , DHARAVATH R N , BANSAL Y , et al . Neurobehavioral alterations in a mouse model of chronic partial sleep deprivation [J]. Metab Brain Dis , 2021 , 36 ( 6 ): 1315 - 1330 .
常静 , 陈畅 , 陈婷 , 等 . 丙泊酚对异相睡眠剥夺小鼠结肠能量代谢的影响 [J]. 中华麻醉学杂志 , 2020 , 40 ( 11 ): 1345 - 1348 .
王帆 , 张媛 , 陈钊 , 等 . 完全睡眠剥夺对大鼠糖代谢的影响及其机制研究 [J]. 中国慢性病预防与控制 , 2015 , 23 ( 5 ): 354 - 356 .
钟森杰 , 李静 , 李琳 , 等 . 病证结合动物模型研究思路述评 [J]. 中国中医药信息杂志 , 2021 , 28 ( 8 ): 141 - 144 .
彭丹虹 , 王燕萍 , 刘晓琪 , 等 . 中医病证结合动物模型评价体系的现状分析 [J]. 中华中医药学刊 , 2017 , 35 ( 8 ): 2027 - 2030 .
全世建 , 焦蒙蒙 , 黑赏艳 , 等 . 交泰丸对睡眠剥夺大鼠下丘脑Orexin A及 γ- 氨基丁酸的影响 [J]. 广州中医药大学学报 , 2015 , 32 ( 1 ): 103 - 105 .
ZAGER A , ANDERSEN M L , RUIZ F S , et al . Effects of acute and chronic sleep loss on immune modulation of rats [J]. Am J Physiol Regul Integr Comp Physiol , 2007 , 293 ( 1 ): R504 - R509 .
王欢 . 高湿度环境对大鼠体能的影响 [D]. 武汉 : 武汉体育学院 , 2021 .
徐霞 , 王玮玮 , 张文彤 , 等 . 基于UPLC-Q-TOF/MS的脾虚湿困型溃疡性结肠炎大鼠造模及参苓白术散给药不同阶段的血浆代谢组学分析 [J]. 中国实验方剂学杂志 , 2022 , 28 ( 15 ): 111 - 119 .
魏盛 , 孙鹏 , 张惠云 . 证候动物模型质量考核的思路与方法 [J]. 中华中医药杂志 , 2012 , 27 ( 10 ): 2607 - 2610 .
方肇勤 , 潘志强 , 卢文丽 , 等 . 大鼠/小鼠是证候研究的主要模式生物 [J]. 中国中医基础医学杂志 , 2009 , 15 ( 5 ): 352 - 353 .
0
Views
23
下载量
3
CSCD
Publicity Resources
Related Articles
Related Author
Related Institution