Potential antidiabetic activity of probiotic and Garcinia kola-yoghurt and its role in regulation of male fertility-stimulating hormones in high-fat diet/low dose streptozotocin-treated rats


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Potential antidiabetic activity of probiotic and Garcinia kola-yoghurt and its role in regulation of male fertility-stimulating hormones in high-fat diet/low dose streptozotocin-treated rats

Garcinia kola Heckel seed is widely used in the African traditional medicine as a aphrodisiac and male fertility enhancer. Probiotics can reestablish glucose homeostasis and improve blood lipid profiles by altering the composition of the intestinal flora. The study was planned to assess the efficacy of co-administration of Garcinia kola seed aqueous infusion and probiotic yoghurt in the management of diabetes and associated male fertility-stimulating hormones abnormalities. G. kola seed infusion was prepared, assessed for radical scavenging capacity, total phenolic content and phenolic profile using HPLC. Fermented yoghurt was prepared and inoculated with probiotic mixture. Rats were given a high-fat diet for four weeks and received an intraperitoneal injection of streptozotocin (30 mg/kg) to induce type 2 diabetes. Diabetic rats were received 200 mg/kg freeze-dried infusion of G. kola seed, probiotics yoghurt, and probiotic yoghurt mixed with G. kola once a day for fou r weeks. The levels of glucose, insulin, testosterone, follicle-stimulating hormone, luteinizing hormone, inflammatory indicators, oxidative markers, lipid profiles and liver as well as kidney biochemical indicators were measured. The administration of G. kola seed, probiotic yoghurt, or their combination to diabetic rats demonstrated potential anti-diabetic effects as evidenced by the down-regulation in glucose, insulin, lipid profile, oxidative markers, and inflammatory markers simultaneously with an up-regulation in testosterone, FSH, and LH levels compared to diabetic rats. G. kola seed, probiotic yoghurt, or their combination increased testosterone, FSH, and LH levels and are thought to have therapeutic promise for T2DM and its related oxidative stress. Graphical Abstract: (Figure presented.) © The Author(s) 2024.

Authors : Mohamed R.S.; Fouda K.; Zaghloul A.H.; Abdel-Salam A.M.

Source : BioMed Central Ltd

Article Information

Year 2024
Type Article
DOI 10.1186/s43014-024-00229-5
ISSN 26618974
Volume 6

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