| Literature DB >> 24250386 |
Nima Naderi1, Nida Akhavan, Farzad Aziz Ahari, Nina Zamani, Mohammad Kamalinejad, Mohammad Shokrzadeh, Nematollah Ahangar, Fereshteh Motamedi.
Abstract
Salvia verticillata is one of the salvia species which possesses remarkable antioxidant activity. In the present study, we investigated the possible effects of hydro-alcoholic extract from Salvia verticillata plant (SVE) in various models of anxiety, depression and seizure in mice. Mice were randomly divided into control (saline), SVE-treated and standard treatment groups. The SVE-treated groups received oral administration of various doses of SVE. As a standard treatment, diazepam and imipramine were used orally for anxiety/seizure and depression tests, respectively. The results of the study revealed that the plant extract produced significant anticonvulsant activity in maximal electroshock and pentylenetetrazol induced seizure models. Moreover, in forced swim test and tail suspension test of depression, SVE produced significant antidepressant effect in mice compared to control group. However, SVE did not show any effects on anxiety-like behavior of mice in elevated plus maze and light-dark tests. These results suggest potential therapeutic effects of the plant extract in seizure and depression.Entities:
Keywords: Anxiety; Depression; Mice; Salvia verticillata; Seizure
Year: 2011 PMID: 24250386 PMCID: PMC3813044
Source DB: PubMed Journal: Iran J Pharm Res ISSN: 1726-6882 Impact factor: 1.696
Figure 1Spontaneous locomotor activity of mice treated with various doses of SVE and diazepam. Each group contains 10 mice. The test was performed 30 min after treatment. Total distance moved (cm) in 5 min trial was measured by Ethovision® software. Data are expressed as mean + SEM
Figure 2Effect of oral administration of SVE or diazepam on anxiety-like behaviour of mice in the elevated plus maze test. SVE or diazepam was administered 30 min before the test. Control group received saline 30 min before the test. The animal behaviour was evaluated for a period of 5 min. Columns represent the means + SEM of (A) percentage of time spent in open arms, (B) percentage of open arm entries and (C) number of close arm entries in 10 mice. ** p < 0.01, *** p < 0.001 significantly different from control group (Dunnett’s test).
Figure 3Effect of oral administration of SVE or diazepam on the behaviour of mice in Light–dark test. SVE or diazepam was administered 30 min before the test. Control group received saline 30 min before the test. The animal behaviour was evaluated for a period of 5 min. The upper (A) and lower (B) panels depict the effects of SVE or diazepam (DZP) on time spent and number of entrance into light chamber, respectively. Each bar represents the mean value + SEM of 10 mice. * P < 0.05 significantly different from control group (Dunnett’s test).
Figure 4SVE reduced immobility time in the mouse forced swim test (A) and tail suspension test (B). This reduction was similar to that produced by acute administration of imipramine. Mice were pretreated orally with either imipramine or various doses of SVE, 30 min prior to being subjected to test. Bars represent mean + SEM of 10 animals per group. * p < 0.05, ** p < 0.01, *** p < 0.001 significantly different from control group (Dunnette’s test).
Anticonvulsant effects of oral administration of SVE or diazepam on PTZ-induced seizures. The test was performed 30 min after drug administration to mice. Mice in control group were treated with saline. Data represent the percentage of mice which did not show tonic-clonic seizure during 60 min after PTZ administration (n = 10)
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| 1 | 60 |
| 2 | 80 |
Anticonvulsant effects of oral administration of SVE or diazepam on electroshock-induced seizure. The test was performed 30 min after drug administration to mice. Mice in control group were treated with saline. Data represent the percentage of mice which did not show hind-limb tonic extension (HLTE) after MES (n = 10
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| 2.5 | 100 |