Lauric acid and levodopa attenuate manganese-induced ovarian toxicity in balb/c mice via antioxidative, anti-inflammatory, and steroidogenic pathways
Résumé fourni par la source
Environmental exposure to heavy metals such as manganese (Mn) is associated with reproductive toxicity, particularly in females. Mn-induced ovarian dysfunction involves oxidative stress, hormonal imbalance, inflammation, and disruption of steroidogenesis. Lauric acid (LA) and levodopa (LD) are bioactive compounds with known antioxidant and anti-inflammatory properties. This study investigated the protective effects of LA and LD against Mn-induced ovarian toxicity in female BALB/c mice. Thirty female BALB/c mice were randomly assigned to five groups (n = 6 per group): control, Mn-only, Mn + LA, Mn + LD, and Mn + LA + LD. Treatments were administered orally for 45 days. Biochemical assays and ELISA were used to evaluate ovarian oxidative stress markers (GSH and MDA), reproductive hormones (progesterone, estradiol, FSH, and LH), proinflammatory interleukins (IL-8-like cytokine, IL-12, IL-15, and IL-18), and the activities of key steroidogenic enzymes (3β-HSD1, 11β-HSD1, and 17β-HSD1). The data were analysed via one-way ANOVA followed by Tukey’s post hoc test (p < 0.05). Mn exposure significantly increased oxidative stress and inflammatory cytokines while disrupting hormonal profiles and steroidogenic enzyme activity. Treatment with LA or LD independently alleviated these changes. Notably, coadministration of LA and LD enhanced protection by restoring oxidative balance, reducing proinflammatory interleukins, and normalizing steroid hormone levels and hydroxysteroid dehydrogenase activities. Lauric acid and levodopa attenuate Mn-induced ovarian toxicity through antioxidant, anti-inflammatory, and steroidogenic regulatory mechanisms. The combined treatment offers synergistic benefits, suggesting a potential therapeutic strategy for mitigating heavy metal-induced reproductive dysfunction. Schematic illustration of manganese-induced ovarian toxicity and protective effects of lauric acid and levodopa in a mouse model. The potential of lauric acid and levodopa in mitigating Mn-induced ovarian toxicity was demonstrated. Both treatments significantly restored glutathione levels and reduced malondialdehyde levels. Both treatments effectively ameliorated disruptions in progesterone, estradiol, FSH, and LH levels. The combined treatment reduced the levels of proinflammatory interleukins. Treatments restored the activities of 3β-HSD1, 11β-HSD1, and 17β-HSD1.