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« Previous Abstract"Chiral synthesis of (Z)-3-cis-6,7-cis-9,10-diepoxyhenicosenes, sex pheromone components of the satin moth, Leucoma salicis"    Next AbstractDifferential mRNA expression of neuroimmune markers in the hippocampus of infant mice following toluene exposure during brain developmental period »

J UOEH


Title:Establishment of a mouse model to assess brain neurotransmitter level and learning performance simultaneously following toxic chemical exposure: using in vivo microdialysis and schedule-controlled operant behavior
Author(s):Win-Shwe TT; Hojo R; Mitsushima D; Nakajima D; Yamamoto S; Fujimaki H;
Address:"Research Center for Environmental Risk, National Institute for Environmental Studies, Onogawa, Tsukuba, Ibaraki 305-8506, Japan"
Journal Title:J UOEH
Year:2009
Volume:31
Issue:1
Page Number:1 - 11
DOI: 10.7888/juoeh.31.1
ISSN/ISBN:0387-821X (Print) 0387-821X (Linking)
Abstract:"Most of the volatile organic compounds used in industrial and household products are reported to be toxic. While the effects of toxic chemicals on pulmonary and other systemic functions have been studied substantially, little is known about their effects on higher brain functions, particularly on the events in learning performance. From the particular perspective of environmental health, it is necessary to examine the toxic effects of environmental chemicals on higher brain functions. The aim of the present study is to establish a mouse model for simultaneous assessment of the effect of toluene (150 mg/kg, i.p.) on extracellular glutamate level in the hippocampus, using in vivo microdialysis and learning performance with a procedure of schedule-controlled operant behavior (SCOB). Different patterns of hippocampal glutamate level were observed in control and toluene-treated mice during learning performance. During learning performance in an operant chamber, control mice showed a saturated and persistent increased glutamate level with good learning performance, while toluene-treated mice showed a decreased glutamate level with poor learning performance. This is the first time to establish a new method to assess the effect of environmental chemical exposure on the brain neurotransmitter level during learning performance in an animal model"
Keywords:"Animals Conditioning, Operant/drug effects Glutamates/analysis Hippocampus/chemistry Learning/*drug effects Male Mice Mice, Inbred BALB C Microdialysis *Models, Animal Neurotransmitter Agents/*analysis Toluene/*toxicity;"
Notes:"MedlineWin-shwe, Tin-Tin Hojo, Rieko Mitsushima, Dai Nakajima, Daisuke Yamamoto, Shoji Fujimaki, Hidekazu eng Research Support, Non-U.S. Gov't Japan 2009/03/21 J UOEH. 2009 Mar 1; 31(1):1-11. doi: 10.7888/juoeh.31.1"

 
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