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Repeated morphine treatment influences operant and spatial learning differentially 被引量:4

Repeated morphine treatment influences operant and spatial learning differentially
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摘要 Objective To investigate whether repeated morphine exposure or prolonged withdrawal could influence operant and spatial learning differentially. Methods Animals were chronically treated with morphine or subjected to morphine withdrawal. Then, they were subjected to two kinds of learning: operant conditioning and spatial learning. Results The acquisition of both simple appetitive and cued operant learning was impaired after repeated morphine treatment. Withdrawal for 5 weeks alleviated the impairments. Single morphine exposure disrupted the retrieval of operant memory but had no effect on rats after 5-week withdrawal. Contrarily, neither chronic morphine exposure nor 5-week withdrawal influenced spatial learning task of the Morris water maze. Nevertheless, the retrieval of spatial memory was impaired by repeated morphine exposure but not by 5-week withdrawal. Conclusion These observations suggest that repeated morphine exposure can influence different types of learning at different aspects, implicating that the formation of opiate addiction may usurp memory mechanisms differentially. Objective To investigate whether repeated morphine exposure or prolonged withdrawal could influence operant and spatial learning differentially. Methods Animals were chronically treated with morphine or subjected to morphine withdrawal. Then, they were subjected to two kinds of learning: operant conditioning and spatial learning. Results The acquisition of both simple appetitive and cued operant learning was impaired after repeated morphine treatment. Withdrawal for 5 weeks alleviated the impairments. Single morphine exposure disrupted the retrieval of operant memory but had no effect on rats after 5-week withdrawal. Contrarily, neither chronic morphine exposure nor 5-week withdrawal influenced spatial learning task of the Morris water maze. Nevertheless, the retrieval of spatial memory was impaired by repeated morphine exposure but not by 5-week withdrawal. Conclusion These observations suggest that repeated morphine exposure can influence different types of learning at different aspects, implicating that the formation of opiate addiction may usurp memory mechanisms differentially.
出处 《Neuroscience Bulletin》 SCIE CAS CSCD 2006年第3期137-143,共7页 神经科学通报(英文版)
基金 This work was supported by grants from the National Natural Science Foundation of China (No. 30470549) the National Basic Research Priorities Programme (973) of China (No.2006CBS00800)
关键词 MORPHINE ADDICTION WITHDRAWAL CONDITIONING spatial learning 吗啡 治疗方法 空间学习障碍 精神因素
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  • 1Kao HT, Porton B, Czernik AJ, et al. A thini member of the synapsin gene family. Proc Natl Acad Sci USA, 1998, 95:4667-4672. 被引量:1
  • 2Hung TK, Barbara P. A third member of the synapsin gene family.Neurobiology, 1998, 5(8): 4667-4672. 被引量:1
  • 3cheetha J. The synapsins. Department of Biology College of Natural. Sciences, 2000, 1:1390-1490. 被引量:1
  • 4Cheetham JJ, Weber T, Hilfiker-Rothenfluh S, et al. Identification of domain c peptide sequences of synapsin i that insert into lipid membranes. Biochemical J, 2001,354:57-66. 被引量:1
  • 5Chin LS, Li L, Ferreira A, et al. Impairment of axonal develepment and of synaptogenesis in hippocampal neurons of synapsinl-deficient mice. Proc Natl Acad Sci USA, 1995, 92:9230-9234. 被引量:1
  • 6Ferreira A, Han HQ, Greengard P, et al. Suppression of synapsinⅡ inhibits the formation and maintenance of synapses in hippocampal culture. Proc Natl Acad Sci USA, 1995, 92:9225-9229. 被引量:1
  • 7Hall AC, Brennan A, Goold RG, et al. Valproate regulates GSK-3-mediated axonal remodeling and synapsin Ⅰ clustering in developing neurons. Nat Neurosci, 2002,5(5) :431-437. 被引量:1
  • 8Ferreria A, Kosik KS, Greengard P, et al. Aberrant neuritis and synaptic vesicle rotein deficiency in synapsinⅡ-depleted neurons.Science, 1994, 264:977-979. 被引量:1
  • 9Gomez-Pinilla F, So V, Kesslak JP. Spatial learning induces neurotrophin receptor and synapsin Ⅰ in the hippocampus Brain Res.2001,904:13-19. 被引量:1
  • 10Kesslak JP, So V, Choi J, et al. Learning upregulates brain-derived neurctrophic factor messenger ribonucleic acid: a mechanism to facilitate encoding and circuit maintenance? Behav Neurcaci,1998, 112:1012-1019. 被引量:1

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