Literature DB >> 31017555

Neuroprotective and long term potentiation improving effects of vitamin E in juvenile hypothyroid rats.

Yousef Baghcheghi1, Somaieh Mansouri2, Farimah Beheshti3,4, Mohammad Naser Shafei4, Hossien Salmani1, Parham Reisi5, Akbar Anaeigoudari6, Alireza Ebrahimzadeh Bideskan7, Mahmoud Hosseini8.   

Abstract

Protective effects of vitamin E (Vit E) on long term potentiation (LTP) impairment, neuronal apoptosis and increase of nitric oxide (NO) metabolites in the hippocampus of juvenile rats were examined. The rats were grouped (n=13) as: (1) control; (2) hypothyroid (Hypo) and (3) Hypo-Vit E. Propylthiouracil (PTU) was given in drinking water (0.05%) during 6 weeks. Vit E (20 mg/ kg) was daily injected (IP). To evaluate synaptic plasticity, LTP from the CA1 area of the hippocampus followed by high frequency stimulation to the ipsilateral Schafer collateral pathway was carried out. The cortical and hippocampal tissues were then removed to measure NO metabolites. The brains of 5 animals in each group were removed for apoptosis study. The hypothyroidism status decreased the slope, 10-90% slope and amplitude of field excitatory post synaptic potential (fEPSP) compared to the control group (P<0.01-P<0.001). Injection of Vit E increased the slope, 10-90% slope and amplitude of the fEPSP in the Hypo-Vit E group in comparison to the Hypo group (P<0.05-P<0.01). TUNEL positive neurons and NO metabolites were higher in the hippocampus of the Hypo rats, as compared to those in the hippocampus of the control ones (P<0.001). Treatment of the Hypo rats by Vit E decreased apoptotic neurons (P<0.01-P<0.001) and NO metabolites (P<0.001) in the hippocampus compared to the Hypo rats. The results of the present study showed that Vit E prevented the LTP impairment and neuronal apoptosis in the hippocampus of juvenile hypothyroid rats.

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Keywords:  Apoptosis; Hippocampus Vitamin E; Hypothyroidism; Long term potentiation; Nitric oxide

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Year:  2019        PMID: 31017555     DOI: 10.1024/0300-9831/a000533

Source DB:  PubMed          Journal:  Int J Vitam Nutr Res        ISSN: 0300-9831            Impact factor:   1.784


  2 in total

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Journal:  Metab Brain Dis       Date:  2022-09-09       Impact factor: 3.655

2.  Folic acid attenuated learning and memory impairment via inhibition of oxidative damage and acetylcholinesterase activity in hypothyroid rats.

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  2 in total

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