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Anti-depressant Effect of Betaine Mediates via Nitrergic and Serotoninergic Systems in Ovariectomized Mice
P Haramipour1, A Asghari2, Sh Hassanpour3
1Faculty of Veterinary Medicine, Science and Research Branch, Islamic Azad University, Tehran, Iran.
Abstract:
This study aimed to determine the anti-depressant effect of betaine (BT) in ovariectomized mice and its possible interaction with nitrergic and serotoninergic systems. In experiment 1, the mice were divided into control and sham groups, ovariectomy (OVX), OVX+BT (12.5mg/kg), OVX+BT (25 mg/kg), and OVX+BT (50mg/kg) groups. In experiment 2, the mice were assigned into control and sham, OVX, OVX+BT (50mg/kg), OVX+L-NAME (10 mg/kg), as well as OVX+injection of the BT and L-NAME. Experiments 3-5 were similar to experiment 2, except for L-Arginine (50 mg/kg), Fluoxetine (5 mg/kg), and Cyproheptadine (4 mg/kg) that were injected instead of the L-NAME. Subsequently, forced swimming test (FST), tail suspension test (TST), and open field test (OFT) were performed in this study. Moreover, this study determined serum Malondialdehyde (MDA), Superoxide dismutase (SOD), Glutathione peroxidase (GPx), and total antioxidant status levels. According to the findings, OVX increased immobility time, compared to the control group (P<0.05). In addition, BT (50mg/kg) decreased depression-induced immobility time, compared to the OVX group (P<0.05). The co-injection of the BT+L-NAME decreased depression-induced immobility time in TST and FST, followed by an increase in the number of crossing in OFT(P<0.05).Moreover, the co-injection of the BT+L-Arginine significantly diminished the antidepressant activity of BT on immobility time and decreased positive effect of BT on the number of crossing (P<0.05). The co-injection of the BT+Fluoxetine significantly amplified the antidepressant activity of BT on immobility time and number of crossing (P<0.05). Furthermore, the co-injection of the BT+Cyproheptadine decreased antidepressant activity of BT on immobility time and number of crossing (P<0.05). The BT (25 and 50mg/kg) reduced the MDA; however, it elevated SOD and GPx levels in OVX mice (P<0.05). It seems that antidepressant activity of BT mediates via nitrergic and serotoninergic systems in OVX mice.
Insights
Betaine (BT) shows antidepressant effects in ovariectomized mice, reducing depression-like behaviors. Its activity is mediated through interactions with the nitrergic and serotoninergic systems, offering potential therapeutic insights.
Area of Science:
- Neuroscience
- Pharmacology
- Biochemistry
Background:
- Ovariectomy (OVX) in mice is associated with increased immobility time, indicative of depression-like behaviors.
- Betaine (BT) is a compound with potential therapeutic properties that warrants investigation for its effects on mood disorders.
Purpose of the Study:
- To investigate the antidepressant effects of betaine (BT) in an ovariectomized (OVX) mouse model.
- To explore the potential interaction of betaine with the nitrergic and serotoninergic systems in mediating its antidepressant activity.
Main Methods:
- Ovariectomized mice were treated with varying doses of betaine (BT).
- Interactions were assessed by co-administering BT with L-NAME (nitric oxide synthase inhibitor), L-Arginine (nitric oxide precursor), Fluoxetine (serotonin reuptake inhibitor), and Cyproheptadine (serotonin antagonist).
- Behavioral tests included the forced swimming test (FST), tail suspension test (TST), and open field test (OFT). Serum antioxidant markers (MDA, SOD, GPx) were also analyzed.
Main Results:
- Ovariectomy significantly increased immobility time in FST and TST.
- Betaine (50 mg/kg) administration reduced immobility time and increased locomotion in OVX mice.
- Co-administration of BT with L-NAME or Fluoxetine enhanced antidepressant effects, while co-administration with L-Arginine or Cyproheptadine diminished them.
- Betaine treatment also modulated antioxidant status by reducing MDA and increasing SOD and GPx levels.
Conclusions:
- Betaine exhibits significant antidepressant effects in ovariectomized mice.
- The antidepressant activity of betaine appears to be mediated, at least in part, by its interactions with both the nitrergic and serotoninergic systems.
- Betaine may also exert neuroprotective effects through its antioxidant properties in OVX mice.
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