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Potential oestrogenic effects (following the OECD test guideline 440) and thyroid dysfunction induced by pure cyanotoxins (microcystin-LR, cylindrospermopsin) in rats. | LitMetric

AI Article Synopsis

  • The study investigates the potential endocrine-disrupting effects of cyanotoxins, specifically microcystin-LR (MC-LR) and cylindrospermopsin (CYN), using a uterotrophic bioassay in ovariectomized rats to assess their oestrogenic properties.
  • Results showed no significant changes in uterine weight or hormone levels indicating oestrogenic activity, but there was a notable dose-dependent increase in progesterone levels in rats exposed to MC-LR.
  • Histological changes in the thyroid and elevated thyroid hormone levels (T3 and T4) were observed in both toxin-exposed groups, suggesting possible thyroid disruption effects, despite the lack of oestrogenic activity.

Article Abstract

Potential endocrine-disrupting properties of cyanotoxins, such as microcystin-LR (MC-LR) and cylindrospermopsin (CYN) are of concern due to their increasing occurrence, the scarcity of reports on the topic (particularly for CYN) and the impact of human's health at different levels. Thus, this work performed for the first time the uterotrophic bioassay in rats, following the Organization for Economic Cooperation and Development (OECD) Test Guideline 440, to explore the oestrogenic properties of CYN and MC-LR (75, 150, 300 μg/kg b.w./day) in ovariectomized (OVX) rats. Results revealed neither changes in the wet and blotted uterus weights nor in the morphometric study of uteri. Moreover, among the steroid hormones analysed in serum, the most remarkable effect was the dose-dependent increase in progesterone (P) levels in rats exposed to MC-LR. Additionally, a histopathology study of thyroids and serum levels of thyroids hormones were determined. Tissue affectation (follicular hypertrophy, exfoliated epithelium, hyperplasia) was observed, as well as increased T3 and T4 levels in rats exposed to both toxins. Taken together, these results point out that CYN and MC-LR are not oestrogenic compounds at the conditions tested in the uterotrophic assay in OVX rats, but, however, thyroid disruption effects cannot be discarded.

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Source
http://dx.doi.org/10.1016/j.envres.2023.115671DOI Listing

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