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Protective effects of Astragalus microcephalus polysaccharides combined with vitamin E and selenium against mercury-induced ovarian toxicity in female rats.

Created on 08 Sep 2026

Authors

Kurt Begum, Sahin Mahmut, Kumru Alper S, Kara Haki, Ozkaraca Mustafa

Published in

Pakistan journal of pharmaceutical sciences. Volume 39. Issue 12. Pages 3814-3824. Dec 01, 2026.

Abstract

Exposure to mercury (Hg) is well-established to induce menstrual cycle disorders and disrupt sex hormone functions. Astragalus species, characterized by their potent antioxidant and anti-apoptotic properties, have shown potential in mitigating these adverse effects by promoting folliculogenesis and restoring hormonal balance.
This study aimed to evaluate the protective effects of Astragalus microcephalus polysaccharides (APS), both alone and in combination with vitamin E and selenium (Vit E+Se), against ovarian damage and oxidative stress induced by mercuric chloride toxicity in rats.
Thirty-six female Wistar rats were synchronized via vaginal smear and randomly assigned to six groups: Control, Mercury (0.43 mg/kg HgCl2), APS (2.7 g/kg), Vit E+Se, Mercury+APS and Mercury+Vit E+Se. Following a 15-day subacute exposure period, serum levels of estradiol, LH and FSH were measured. Oxidative stress markers and ovarian histopathology were evaluated. Apoptotic and inflammatory pathways were assessed through immunohistochemical staining of Caspase-3, AIF and NF-κB.
Hg-induced reductions in hormone levels were significantly restored to near control levels in the APS-treated groups and antioxidant levels were notably elevated in these groups, indicating mitigation of oxidative stress. Furthermore, immunohistochemical analysis revealed a significant reduction in stromal and follicular degeneration and a decrease in apoptotic activity in the ovaries of rats treated with APS.
APS exerts a significant protective effect against mercury-induced ovarian toxicity. This protection is mediated through the attenuation of oxidative stress, inflammation and apoptosis, as evidenced by the modulation of Caspase-3, AIF and NF-κB pathways. The results suggest that APS, particularly in synergy with vitamin E and selenium, offers a potential therapeutic strategy for managing heavy metal-induced reproductive damage.

PMID:
42708787
Bibliographic data and abstract were imported from PubMed on 08 Sep 2026.

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