Resveratrol fails to affect cocaine conditioned place preference behavior, but alleviates anxiety-like behaviors in cocaine withdrawn rats
详细信息    查看全文
  • 作者:Panpan Hu ; Wei Zhu ; Chao Zhu ; Lai Jin ; Yun Guan ; Xiaowei Guan
  • 关键词:Cocaine ; Resveratrol ; Withdrawal ; Conditioned place preference ; Anxiety ; SIRT1
  • 刊名:Psychopharmacology
  • 出版年:2016
  • 出版时间:April 2016
  • 年:2016
  • 卷:233
  • 期:7
  • 页码:1279-1287
  • 全文大小:1,310 KB
  • 参考文献:Ali SH, Madhana RM, Athira KV, Kasala ER, Bodduluru LN, Pitta S, Mahareddy JR, Lahkar M (2015) Resveratrol ameliorates depressive-like behavior in repeated corticosterone-induced depression in mice. Steroids 101:37–42CrossRef PubMed
    Alvaro-Bartolomé M, La Harpe R, Callado LF, Meana JJ, García-Sevilla JA (2011) Molecular adaptations of apoptotic pathways and signaling partners in the cerebral cortex of human cocaine addicts and cocaine-treated rats. Neuroscience 196:1–15CrossRef PubMed
    Aujla H, Martin-Fardon R, Weiss F (2008) Rats with extended access to cocaine exhibit increased stress reactivity and sensitivity to the anxiolytic-like effects of the mGluR 2/3 agonist LY379268 during abstinence. Neuropsychopharmacology 33:1818–1826CrossRef PubMed
    Bhat KPL, Kosmeder JW 2nd, Pezzuto JM (2001) Biological effects of resveratrol. Antioxid Redox Signal 3:1041–1064CrossRef PubMed
    Blanchet J, Longpré F, Bureau G, Morissette M, DiPaolo T, Bronchti G, Martinoli MG (2008) Resveratrol, a red wine polyphenol, protects dopaminergic neurons in MPTP-treated mice. Prog Neuropsychopharmacol Biol Psychiatry 32:1243–1250CrossRef PubMed
    Bordo D (2013) Structure and evolution of human sirtuins. Curr Drug Targets 14:662–665CrossRef PubMed
    Damián JP, Acosta V, Da Cuña M, Ramírez I, Oddone N, Zambrana A, Bervejillo V, Benech JC (2014) Effect of resveratrol on behavioral performance of streptozotocin-induced diabetic mice in anxiety tests. Exp Anim 63:277–287CrossRef PubMed PubMedCentral
    Della-Morte D, Dave KR, DeFazio RA, Bao YC, Raval AP, Perez-Pinzon MA (2009) Resveratrol pretreatment protects rat brain from cerebral ischemic damage via a sirtuin 1-uncoupling protein 2 pathway. Neuroscience 159:993–1002CrossRef PubMed PubMedCentral
    Donmez G, Outeiro TF (2013) SIRT1 and SIRT2: emerging targets in neurodegeneration. EMBO Mol Med 5:344–352CrossRef PubMed PubMedCentral
    El Hage C, Rappeneau V, Etievant A, Morel A-L, Scarna H, Zimmer L, Bérod A (2012) Enhanced anxiety observed in cocaine withdrawn rats is associated with altered reactivity of the dorsomedial prefrontal cortex. PLoS One 7, e43535CrossRef PubMed PubMedCentral
    Ferguson D, Koo JW, Feng J, Heller E, Rabkin J, Heshmati M, Renthal W, Neve R, Liu X, Shao N, Sartorelli V, Shen L, Nestler EJ (2013) Essential role of SIRT1 signaling in the nucleus accumbens in cocaine and morphine action. J Neurosci 33:16088–16098CrossRef PubMed PubMedCentral
    Ferguson D, Shao N, Heller E, Feng J, Neve R, Kim HD, Call T, Magazu S, Shen L, Nestler EJ (2015) SIRT1-FOXO3a regulate cocaine actions in the nucleus accumbens. J Neurosci 35:3100–3111CrossRef PubMed PubMedCentral
    Gawin FH (1991) Cocaine addiction: psychology and neurophysiology. Science 251:1580–1586CrossRef PubMed
    Gawin FH, Kleber HD (1986) Abstinence symptomatology and psychiatric diagnosis in cocaine abusers: clinical observations. Arch Gen Psychiatry 43:107–113CrossRef PubMed
    Gupta YK, Chaudhary G, Sinha K, Srivastava AK (2001) Protective effect of resveratrol against intracortical FeCl3-induced model of posttraumatic seizures in rats. Methods Find Exp Clin Pharmacol 23:241–244CrossRef PubMed
    Herranz D, Serrano M (2010) SIRT1: recent lessons from mouse models. Nat Rev Cancer 10:819–823CrossRef PubMed PubMedCentral
    Levandowski ML, Viola TW, Wearick-Silva LE, Wieck A, Tractenberg SG, Brietzke E, Bauer ME, Teixeira AL, Grassi-Oliveira R (2014) Early life stress and tumor necrosis factor superfamily in crack cocaine withdrawal. J Psychiatr Res 53:180–186CrossRef PubMed
    Liu GS, Zhang ZS, Yang B, He W (2012) Resveratrol attenuates oxidative damage and ameliorates cognitive impairment in the brain of senescence-accelerated mice. Life Sci 91:872–877CrossRef PubMed
    Ma CY, Yao MJ, Zhai QW, Jiao JW, Yuan XB, Poo MM (2014) SIRT1 suppresses self-renewal of adult hippocampal neural stem cells. Development 141:4697–4709CrossRef PubMed
    Miller DK, Oelrichs CE, Sage AS, Sun GY, Simonyi A (2013) Repeated resveratrol treatment attenuates methamphetamine-induced hyperactivity and [3H]dopamine overflow in rodents. Neurosci Lett 554:53–58CrossRef PubMed
    Naifeh JA, Tull MT, Gratz KL (2012) Anxiety sensitivity, emotional avoidance, and PTSD symptom severity among crack/cocaine dependent patients in residential treatment. Cognit Ther Res 36:247–257CrossRef PubMed PubMedCentral
    O’Leary TA, Rohsenow DJ, Martin R, Colby SM, Eaton CA, Monti PM (2000) The relationship between anxiety levels and outcome of cocaine abuse treatment. Am J Drug Alcohol Abuse 26:179–194CrossRef PubMed
    Orozco-Solis R, Ramadori G, Coppari R, Sassone-Corsi P (2015) SIRT1 relays nutritional inputs to the circadian clock through the Sf1 neurons of the ventromedial hypothalamus. Endocrinology 156:2174–2184CrossRef PubMed
    Perrine SA, Sheikh IS, Nwaneshiudu CA, Schroeder JA, Unterwald EM (2008) Withdrawal from chronic administration of cocaine decreases delta opioid receptor signaling and increases anxiety- and depression-like behaviors in the rat. Neuropharmacology 54:355–364CrossRef PubMed PubMedCentral
    Perry JL, Joseph JE, Jiang Y, Zimmerman RS, Kelly TH, Darna M, Huettl P, Dwoskin LP, Bardo MT (2011) Prefrontal cortex and drug abuse vulnerability: translation to prevention and treatment interventions. Brain Res Rev 65:124–149CrossRef PubMed PubMedCentral
    Peters J, Kalivas PW, Quirk GJ (2009) Extinction circuits for fear and addiction overlap in prefrontal cortex. Learn Mem 16:279–288CrossRef PubMed PubMedCentral
    Pomierny-Chamioło L, Moniczewski A, Wydra K, Suder A, Filip M (2013) Oxidative stress biomarkers in some rat brain structures and peripheral organs underwent cocaine. Neurotox Res 23:92–102CrossRef PubMed PubMedCentral
    Renthal W, Kumar A, Xiao G, Wilkinson M, Covington HE 3rd, Maze I, Sikder D, Robison AJ, LaPlant Q, Dietz DM, Russo SJ, Vialou V, Chakravarty S, Kodadek TJ, Stack A, Kabbaj M, Nestler EJ (2009) Genome-wide analysis of chromatin regulation by cocaine reveals a role for sirtuins. Neuron 62:335–348CrossRef PubMed PubMedCentral
    Rogers JL, See RE (2007) Selective inactivation of the ventral hippocampus attenuates cue-induced and cocaine-primed reinstatement of drug-seeking in rats. Neurobiol Learn Mem 87:688–692CrossRef PubMed PubMedCentral
    Shetty AK (2011) Promise of resveratrol for easing status epilepticus and epilepsy. Pharmacol Ther 131:269–286CrossRef PubMed PubMedCentral
    Shuto T, Kuroiwa M, Koga Y, Kawahara Y, Sotogaku N, Toyomasu K, Nishi A (2013) Acute effects of resveratrol to enhance cocaine-induced dopamine neurotransmission in the striatum. Neurosci Lett 542:107–112CrossRef PubMed
    Singleton RH, Yan HQ, Fellows-Mayle W, Dixon CE (2010) Resveratrol attenuates behavioral impairments and reduces cortical and hippocampal loss in a rat controlled cortical impact model of traumatic brain injury. J Neurotrauma 27:1091–1099CrossRef PubMed PubMedCentral
    Sinha R (2001) How does stress increase risk of drug abuse and relapse? Psychopharmacology (Berl) 158:343–359CrossRef
    Sun AY, Wang Q, Simonyi A, Sun GY (2010) Resveratrol as a therapeutic agent for neurodegenerative diseases. Mol Neurobiol 41:375–383CrossRef PubMed PubMedCentral
    Valzachi MC, Teodorov E, Marcourakis T, Bailey A, Camarini R (2013) Enhancement of behavioral sensitization, anxiety-like behavior, and Hippocampal and frontal cortical CREB levels following cocaine abstinence in mice exposed to cocaine during adolescence. PLoS One 8, e78317CrossRef PubMed PubMedCentral
    Wight RD, Tull CA, Deel MW, Stroope BL, Eubanks AG, Chavis JA, Drew PD, Hensley LL (2012) Resveratrol effects on astrocyte function: relevance to neurodegenerative diseases. Biochem Biophys Res Commun 426:112–115CrossRef PubMed PubMedCentral
    Zaparte A, Viola TW, Grassi-Oliveira R, da Silva Morrone M, Moreira JC, Bauer ME (2015) Early abstinence of crack-cocaine is effective to attenuate oxidative stress and to improve antioxidant defences. Psychopharmacology (Berl) 232:1405–1413CrossRef
    Zhao YN, Li WF, Li F, Zhang Z, Dai YD, Xu AL, Qi C, Gao JM, Gao J (2013) Resveratrol improves learning and memory in normally aged mice through microRNA-CREB pathway. Biochem Biophys Res Commun 435:597–602CrossRef PubMed
  • 作者单位:Panpan Hu (1)
    Wei Zhu (1)
    Chao Zhu (2)
    Lai Jin (2)
    Yun Guan (3)
    Xiaowei Guan (1)

    1. Department of Human Anatomy, Nanjing Medical University, 140 Hanzhong Road, Nanjing, 210029, China
    2. Department of Pharmacology, Nanjing Medical University, Nanjing, China
    3. Department of Anesthesiology and Critical Care Medicine, Johns Hopkins University School of Medicine, Baltimore, MD, USA
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Biomedicine
    Pharmacology and Toxicology
    Psychiatry
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1432-2072
文摘
Rationale Resveratrol participates in regulating abnormal behaviors in psychostimulant-exposed animals.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700