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◆ Veterinary research forum : an international quarterly journal2026-01-01

Protective effects of melatonin against hypoxia-induced TM3 cell damage via suppression of the TGF-β pathway.

Sahar Rashidi, Adel Saberivand, Mohammadreza Gholami, Vahideh Assadollahi, Masoud Alasvand, Maryam Saberivand, Mona Ghasemi

原始摘要(英文原文)· Original abstract
This study aimed to explore whether melatonin protects TM3 Leydig cells from cobalt (II) chloride (CoCl2)-induced hypoxia through the transforming growth factor beta (TGF-β) signaling pathway. Cells were divided into four groups: a control group without treatment (Group 1), a melatonin group (10.00 ng mL-1; Group 2), a group treated with CoCl2 (100 µM) to induce hypoxia (Group 3), and a melatonin + CoCl2 group (Group 4). After 96 hr of incubation, cell viability was assessed using the MTT assay, and transforming growth factor beta 1, activin receptor-like kinase-5, and bone morphogenetic protein 4 gene and protein expressions were measured through RT‑PCR and western blotting. The CoCl2 and melatonin + CoCl2 groups exhibited significantly diminished cell viability compared to the control. However, melatonin treatment enhanced survival in the CoCl2-exposed cells. Notably, transforming growth factor beta 1 expression was elevated in all groups. Activin receptor-like kinase-5 (gene and protein expression increased in CoCl2-treated groups but was lower in the melatonin + CoCl2 group. Melatonin treatment reduced bone morphogenetic protein 4 expression compared to the control, while CoCl2 groups showed increased bone morphogenetic protein 4 levels. These findings suggest melatonin's potential as a therapeutic agent against oxidative stress and hypoxia in TM3 cells through its antioxidant properties.
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Protective effects of melatonin against hypoxia-induced TM3 cell damage via suppression of the TGF-β pathway. — 科研速览 Science Skim