Sex steroids and potential mechanisms of non-genomic endocrine disruption in invertebrates
- 13 January 2007
- journal article
- review article
- Published by Springer Nature in Ecotoxicology
- Vol. 16 (1) , 145-160
- https://doi.org/10.1007/s10646-006-0110-4
Abstract
The review reports on the presence and metabolism of sex steroids in several invertebrate species and provides detailed information on possible mechanisms of endocrine disruption other than the interaction with nuclear receptors. The presence of most vertebrate sex steroids in invertebrate tissues has been demonstrated by liquid or gas chromatography coupled to mass spectrometry. In addition, enzymatic pathways involved in the steroidogenic pathway have been described in at least some invertebrate phyla. Some endocrine disruptors induce alterations in these metabolic pathways and might lead to changes in steroid levels. Growing evidence suggests that estradiol can act through non-genomic pathways in molluscs, and that xenobiotics can as well interfere in these signalling casacades. In spite of these recent advances, most question marks on the action and function of sex steroids in invertebrates remain to be answered.Keywords
This publication has 134 references indexed in Scilit:
- Steroids in aquatic invertebratesEcotoxicology, 2007
- Sex steroid receptor evolution and signalling in aquatic invertebratesEcotoxicology, 2007
- Triphenyltin alters androgen metabolism in the sea urchin Paracentrotus lividusAquatic Toxicology, 2006
- Effect of exogenous testosterone on the androgenic gland and testis of a marine penaeid prawn, Parapenaeopsis hardwickii (Miers) (Crustacea, Decapoda, Penaeidae)Published by Elsevier ,2003
- Testosterone metabolism in the estuarine mysid Neomysis integer (Crustacea; Mysidacea) following tributyltin exposureEnvironmental Toxicology and Chemistry, 2003
- Structure–function relationships in 3α-hydroxysteroid dehydrogenases: a comparison of the rat and human isoformsThe Journal of Steroid Biochemistry and Molecular Biology, 2003
- Evolution of adrenal and sex steroid action in vertebrates: a ligand‐based mechanism for complexityBioEssays, 2003
- A estradiol‐17β receptor in the reproductive system of the female of Octopus vulgaris: Characterization and immunolocalizationMolecular Reproduction and Development, 2002
- Ligand binding and nuclear receptor evolutionBioEssays, 2000
- Evidence of Endocrine Disruption in the Imposex-Affected Gastropod Bolinus brandarisEnvironmental Research, 1999