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Anti-fertility effect of hydro-alcoholic extract of fennel (Foeniculum vulgare Mill) seed in male Wistar rats
2016
Introduction: The study aimed to investigate the anti-fertility effect of fennel (Foeniculim vulgare Mill) seed extract in male rats.Material and Methods: Forty Wistar rats were divided into five equal groups. The control group received distilled water and the experimental groups were orally administered 1 ml of hydro-alcoholic extract of fennel seed in four doses of 35, 70, 140, and 280 mg/kg/b.w. daily for 60 days. After the last gavage, the rats were anaesthetised and the caudal part of the right epididymis was used for sperm counting. After fixation of the testes, microscopic sections were prepared and histological changes were evaluated.Results: The number of spermatogonia after doses of 140 and 280 mg/kg and Sertoli cells after a dose of 140 mg/kg decreased significantly as compared with the control group (P < 0.05). The number of primary spermatocytes and sperm count decreased significantly in the experimental groups (70, 140, and 280 mg/kg) when compared to the control group (P < 0.05). Furthermore, thickening of the basement membrane, cell apoptosis, and irregular arrangement of the germinal epithelium were observed in the experimental groups.Conclusion: Hydro-alcoholic fennel seed extract at these doses could reduce reproductivity and has anti-fertility activity in male rats.
اظهر المزيد [+] اقل [-]Effect of fennel (Foeniculum vulgare) on some pathophysiological alterations in induced hyperlipidemic male Albino Rats
2024
Walaa S. El-Din Raslan | Yasmeen Magdy | Mohamed. M.S. Gaballa | Maha Mamdouh | Shimaa A.E. Atwa | Mona M. Abdel Mohsen | Amgad kadah
Obesity alters lipid profile, blood glucose, liver enzymes, oxidative stress, and hormonal balance. Fennel has shown anti-obesity effects in preliminary studies, but its role in ameliorative metabolic complications of obesity needs further research. This study assessed the provisional influences of fennel extract against high-fat diet-provoked metabolic deviations in rats. Forty male albino rats were allocated into standard diet control, obese control, low dose fennel (100 mg/kg) and high dose fennel (300 mg/kg) groups. Obesity was triggered by 4 weeks of high-fat nourishment. Fennel extract was applied orally for 6 weeks. Parameters considered were body weight, lipid profile, blood glucose, liver enzymes, anti-oxidant status, thyroid hormones, leptin, and hepatic insulin receptor gene expression. Fennel significantly diminished body weight, total cholesterol, triglycerides, LDL-cholesterol, liver enzymes, glucose, and leptin while increasing HDL-cholesterol, anti-oxidant enzymes, and thyroid stimulating hormone compared to obese controls. Histological examination has shown alleviation of fat accumulation and intracellular changes in the liver. Insulin receptor gene expression was also significantly increased by fennel extract. This study demonstrated that fennel extract reverses obesity-induced metabolic syndrome, oxidative stress, endocrine disruption, and histopathological change in the liver of rats. The hypolipidemic, hypoglycemic, anti-oxidant, and hepatoprotective properties of fennel may be beneficial in managing obesity-associated metabolic complications.
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