Potential Endocrine Disruption of Cyanobacterial Toxins, Microcystins and Cylindrospermopsin: A Review

Author:

Casas-Rodriguez Antonio,Cameán Ana M.ORCID,Jos AngelesORCID

Abstract

Microcystins (MCs) and cylindrospermopsin (CYN), although classified as hepatotoxins and cytotoxins, respectively, have been shown to also induce toxic effects in many other systems and organs. Among them, their potential endocrine disruption (ED) activity has been scarcely investigated. Considering the increasing relevance of ED on humans, mammals, and aquatic organisms, this work aimed to review the state-of-the-art regarding the toxic effects of MCs and CYN at this level. It has been evidenced that MCs have been more extensively investigated than CYN. Reported results are contradictory, with the presence or absence of effects, but experimental conditions also vary to a great extent. In general, both toxins have shown ED activity mediated by very different mechanisms, such as estrogenic responses via a binding estrogen receptor (ER), pathological changes in several organs and cells (testis, ovarian cells), and a decreased gonad-somatic index. Moreover, toxic effects mediated by reactive oxygen species (ROS), changes in transcriptional responses on several endocrine axes and steroidogenesis-related genes, and changes in hormone levels have also been reported. Further research is required in a risk assessment frame because official protocols for assessment of endocrine disrupters have not been used. Moreover, the use of advanced techniques would aid in deciphering cyanotoxins dose-response relationships in relation to their ED potential.

Funder

SPANISH MINISTERIO DE CIENCIA E INNOVACIÓN

Publisher

MDPI AG

Subject

Health, Toxicology and Mutagenesis,Toxicology

Reference118 articles.

1. Knotting nets: Molecular junctions of interconnecting endocrine axes identified by application of the adverse outcome pathway concept;Licht;Environ. Toxicol. Chem.,2017

2. The Molecular Biology, Biochemistry, and Physiology of Human Steroidogenesis and Its Disorders;Miller;Endocr. Rev.,2011

3. Effects of acute exposure to microcystins on hypothalamic-pituitary-adrenal (HPA), -gonad (HPG) and -thyroid (HPT) axes of female rats;Chen;Sci. Total Environ.,2021

4. Endocrine disruption as an adverse effect of non-endocrine targeting pharmaceuticals;Sabir;Environ. Sci. Pollut. Res. Int.,2018

5. Mechanisms of endocrine disruption through nuclear receptors and related pathways;Balaguer;Curr. Opin. Endocr. Metab. Res.,2019

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