• Title of article

    Protective effects of Nigella sativa on synaptic plasticity impairment induced ‎by lipopolysaccharide

  • Author/Authors

    Anaeigoudari ، Akbar - Jiroft University of Medical Sciences , Norouzi ، Fatemeh - Esfarayan Faculty of Medical Sciences , Abareshi ، Azam - Mashhad University of Medical Sciences , Beheshti ، Farimah - Torbat Heydariyeh University of Medical Sciences , Aaghaei ، Azita - Mashhad University of Medical Sciences , Shafei ، Mohammad Naser - Mashhad University of Medical Sciences , Gholamnezhad ، Zahra - Mashhad University of Medical Sciences , Hosseini ، Mahmoud - Mashhad University of Medical Sciences

  • Pages
    7
  • From page
    27
  • To page
    33
  • Abstract
    In the present study the protective effect of Nigella sativa (N. sativa) on synaptic plasticity impairment induced by lipopolysaccharide (LPS) in rats was investigated. Fifty-eight rats were grouped and treated as follows: 1) control (saline), 2) LPS, 3) LPS-N. sativa, and 4) N. sativa. In a Morris water maze test, the escape latency and traveled path to find the platform as well as time spent and the traveled distance in target quadrant (Q1) were measured. Long term potentiation (LTP) from CA1 area of hippocampus followed by high frequency stimulation to Schafer collateral was studied and slope, slope 10-90% and amplitude of field excitatory field potential (fEPSP) were calculated. The escape latency and traveled path in LPS group were significantly higher than those in the control group while, in LPS-N. sativa group these parameters were significantly lower than those in LPS group. The rats in LPS group spent less time and traveled shorter distance in Q1 than the rats in the control group while, in LPS-N. sativa group the rats spent more time and traveled longer distance than the rats in LPS group. LPS significantly decreased slope, slope 10-90% and amplitude of fEPSP while, in LPS-N. sativa group these parameters increased compared to LPS group. The results indicated that the hydro-alcohol extract of N. sativa protected against synaptic plasticity and spatial learning and memory impairment induced by LPS in rats.
  • Keywords
    Lipopolysaccharide , Long term potentiation , Nigella sativa L , Spatial memory , Synaptic plasticity
  • Journal title
    Veterinary Research Forum
  • Serial Year
    2018
  • Journal title
    Veterinary Research Forum
  • Record number

    2465919