• Brain research · Jan 2012

    Impulse noise exposure in rats causes cognitive deficits and changes in hippocampal neurotransmitter signaling and tau phosphorylation.

    • Bo Cui, Mingquan Wu, Xiaojun She, and Hongtao Liu.
    • Department of Occupational Hygiene, Institute of Health and Environmental Medicine, Academy of Military Medical Sciences, Tianjin, PR China.
    • Brain Res. 2012 Jan 3;1427:35-43.

    AbstractNoise exposure has been characterized as a stressor, and its non-auditory effects on the central nervous system have been established both epidemiologically and experimentally. Little is known about the impact of impulse noise on the brain, however. In this study, we examined the effects of impulse noise stress on spatial learning and memory and on associated changes in the hippocampus. Rats were exposed to 20 sound impulses with a peak sound pressure of 165 dB and duration of 100 ms. Impulse noise stress led to a temporary decrease in cognitive function as evidenced by poor spatial memory in the Morris water maze (MWM). Effects of noise on the glutamate (Glu)-N-methyl-D-aspartic acid receptor (NMDAR) signaling system and hippocampal tau phosphorylation were investigated by high performance liquid chromatography, Western blotting, and immunohistochemistry. The concentrations of Glu and aspirate (Asp) in the hippocampus were increased at 30 min after exposure and remained elevated for the entire observation period (24 h), while the content of glycine (Gly) was stable for several hours following noise but also increased by 24 h after noise stress. Impulse noise stress also caused a significant increase in NMDAR 2B subunit (NR2B) expression and a two-phase increase in tau phosphorylation in hippocampus. Immunohistochemistry confirmed tau hyperphosphorylation in hippocampus that was most prominent in the dentate gyrus (DG) and CA1 region. These findings demonstrate that impulse noise stress impairs early spatial memory, possibly by disrupting Glu-NMDAR signaling and triggering aberrant tau hyperphosphorylation in hippocampus.Copyright © 2011 Elsevier B.V. All rights reserved.

      Pubmed     Full text   Copy Citation     Plaintext  

      Add institutional full text...

    Notes

     
    Knowledge, pearl, summary or comment to share?
    300 characters remaining
    help        
    You can also include formatting, links, images and footnotes in your notes
    • Simple formatting can be added to notes, such as *italics*, _underline_ or **bold**.
    • Superscript can be denoted by <sup>text</sup> and subscript <sub>text</sub>.
    • Numbered or bulleted lists can be created using either numbered lines 1. 2. 3., hyphens - or asterisks *.
    • Links can be included with: [my link to pubmed](http://pubmed.com)
    • Images can be included with: ![alt text](https://bestmedicaljournal.com/study_graph.jpg "Image Title Text")
    • For footnotes use [^1](This is a footnote.) inline.
    • Or use an inline reference [^1] to refer to a longer footnote elseweher in the document [^1]: This is a long footnote..

    hide…

Want more great medical articles?

Keep up to date with a free trial of metajournal, personalized for your practice.
1,694,794 articles already indexed!

We guarantee your privacy. Your email address will not be shared.