• Title of article

    Fibroblast glutamate transport in aging and in AD: correlations with disease severity

  • Author/Authors

    Chiara P. Zoia، نويسنده , , Elena Tagliabue، نويسنده , , Valeria Isella، نويسنده , , Barbara Begni، نويسنده , , Lorenzo Fumagalli، نويسنده , , Laura Brighina، نويسنده , , Ildebrando Appollonio، نويسنده , , Marco Racchi، نويسنده , , Carlo Ferrarese، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    8
  • From page
    825
  • To page
    832
  • Abstract
    Altered glutamate transport and aberrant EAAT1 expression were shown in Alzheimerʹs disease (AD) brains. It is presently unknown whether these modifications are a consequence of neurodegeneration or play a pathogenetic role. However, recent findings of decreased glutamate uptake, EAAT1 protein and mRNA in AD platelets suggest that glutamate transporter modifications may be systemic and might explain the decreased glutamate uptake. We now used primary fibroblast cultures from 10 AD patients to further investigate the specific involvement of glutamate transporters in this disorder and in normal aging. Decreased glutamate uptake (p < 0.001), EAAT1 expression (p < 0.05) and mRNA (p < 0.01) were observed in aged people, compared to younger controls. In AD fibroblasts, compared to age-matched controls, we observed further reductions of glutamate uptake (p < 0.0005) and EAAT1 expression (p < 0.005), while EAAT1 mRNA increase (p < 0.001) was shown. EAAT1 parameters were mutually correlated (p < 0.01) and correlations were shown with dementia severity (p < 0.05 MMSE-expression, p < 0.005 MMSE-mRNA). We suggest fibroblast cultures as possible ex vivo peripheral model to study the glutamate involvement and possible molecular and therapeutic targets in AD.
  • Keywords
    Glutamate uptake , Peripheral markers in Alzheimer’s disease , EAAT1 protein and mRNA correlate with MMSE , Fibroblast cultures to study molecular and therapeutictargets in AD
  • Journal title
    Neurobiology of Aging
  • Serial Year
    2005
  • Journal title
    Neurobiology of Aging
  • Record number

    820635