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Issue Info: 
  • Year: 

    2009
  • Volume: 

    19
Measures: 
  • Views: 

    144
  • Downloads: 

    0
Keywords: 
Abstract: 

Organophosphate neurotoxicity is attributed both to their well-known cholinergic and non-cholinergic effects. In present study we compared enzymatic and morphologic changes in neurons exposed to paraoxon. Also we studied the effect of MK-801 as an antagonism of NMDA receptor and search for neuroprotective effect of MK-801.Hippocampal cells were obtained from rat neonates and cultured in Neurobasal/B27. Paraoxon with dose of 100μM was added and the exposure time was 48 hrs. The neurons were treat with MK-801 (1 μM) 15 min prior to paraoxon. Invert, electron microscopy and neurocytochemistery staining of Map-2 were used to study cell morphology. The MTS staining was used to measure viability.The results indicate that paraoxon reduced the viability and also reduced the neurite of cells and induced apparent blebs on the surface neurons, treatment of MK-801 15 min prior to paraoxon also indeuced more reduction in viability. The area of cells reduced after exposure to paraoxon and MK-801. Also there were not repair in blebs and cell neuritis after treatment with MK-801. In conclusion MK-801 did not represent neuro protection against paraoxon (100 μM) for 48 hrs exposure.

Yearly Impact:   مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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Issue Info: 
  • Year: 

    2015
  • Volume: 

    16
  • Issue: 

    1 (50)
  • Pages: 

    83-89
Measures: 
  • Citations: 

    0
  • Views: 

    324
  • Downloads: 

    143
Abstract: 

Hippocampal neural stem/progenitor cells (hipp-NS/PCs) of the adult mammalian brain are important sources of neuronal and gial cell production. In this study, the main goal is to investigate the plasticity of these cells in neuronal/astroglial differentiations. To this end, the differentiation of the hipp-NS/PCs isolated from 3-month-old Wistar rats was investigated in response to the embryonic cerebrospinal fluid (E-CSF) including E13.5, E17-CSF and the adult cerebrospinal fluid (A-CSF), all extracted from rats. CSF samples were selected based on their effects on cell behavioral parameters. Primary cell culture was performed in the presence of either normal or high levels of KCL in a culture medium. High levels of KCL cause cell depolarization, and thus the activation of quiescent NSCs. Results from immunocytochemistry (ICC) and semi-quantitative RT-PCR (sRT-PCR) techniques showed that in ECSF- treated groups, neuronal differentiation increased (E17>E13.5). In contrast, A-CSF decreased and increased neuronal and astroglial differentiations, respectively. Cell survivability and/or proliferation (S/P), evaluated by an MTT assay, increased by E13.5 CSF, but decreased by both E17 CSF and A-CSF. Based on the results, it is finally concluded that adult rat hippocampal proliferative cells are not restricted progenitors but rather show high plasticity in neuronal/astroglial differentiation according to the effects of CSF samples. In addition, using high concentrations of KCL in the primary cell culture led to an increase in the number of NSCs, which in turn resulted in the increase in neuronal or astroglial differentiations after CSF treatment.

Yearly Impact: مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

View 324

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic ResourcesDownload 143 مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic ResourcesCitation 0 مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic ResourcesRefrence 0
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