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Abstract

Background and Purpose: Despite widespread research on epilepsy, the mechanism of its insidnece is still unknown. Since the activity of ATPase plays a vital role in changing ATP into AMP, and this substance can later turn into adenosine which is the most important endogenous anticonvulsant agent in brain, the effect of inhibition of ATPase on perforant path kindling was investigated in the present study. Methods and Materials: In this experimental study, animals were kindled by electrical stimulations of the perforant path (12 times a day with a frequency of 50 Hz and pulse duration of 1 millisecond). Upon kindling, behavioral and electrophysiologic measures of convulsions and filed potentials were recorded. For investigating the role of ATPase in animal groups, FPL 67156 was injected as the inhibitor of the ATPase after kindling stimulations ended each day. Kindled animals were 6, and there were 4 rats in other groups. Repeated measures ANOVA and Bonferoni test were used to compare the statistical quantities of fEPSP and PS of epilepsy creation in different groups of the study. Comparing the difference of paired pulses between groups was conducted by Bonferoni test. The five-stage convulsion of the groups was compared through Kruskall Wallis and Mann Whitney U tests. Statistical analyses were conducted in Prism 5. Results: The results indicated that ATPase inhibition (by injecting FPL 67156) causes no change in various behavioral stages of convulsion and daily afterdischarge duration following kindling (P>0.05); however, it affects synapsis formation, so that PS increases in comparison with the kindled group (P

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