Examining effects of a novel estrogenic perfluoro‐alcohol, 1H,1H,8H,8H‐Perfluorooctane‐1,8‐diol (FC8‐diol), using the fathead minnow EcoToxChip

Author:

Santana Rodriguez Kelvin J.1,Villeneuve Daniel L.2ORCID,Cavallin Jenna E.2ORCID,Blackwell Brett R.2ORCID,Hoang John1,Hofer Rachel N.2,Jensen Kathleen M.2,Kahl Michael D.2,Kutsi Robin N.1,Stacy Emma2,Morshead Mackenzie L.1,Ankley Gerald T.2

Affiliation:

1. Great Lakes Toxicology and Ecology Division Oak Ridge Institute for Science and Education, US Environmental Protection Agency Duluth Minnesota

2. Great Lakes Toxicology and Ecology Division US Environmental Protection Agency Duluth Minnesota

Abstract

AbstractIn a previous in vivo study, adult male fathead minnows (Pimephales promelas) were exposed via water for 4 days to 1H,1H,8H,8H‐perfluorooctane‐1,8‐diol (FC8‐diol). The present study expands on the evaluation of molecular responses to this perfluoro‐alcohol by analyzing 26 male fathead minnow liver RNA samples from that study (five from each test concentration: 0, 0.018, 0.051, 0.171, and 0.463 mg FC8‐diol/L) using fathead minnow EcoToxChips Ver. 1.0. EcoToxChips are a quantitative polymerase chain reaction array that allows for simultaneous measurement of >375 species‐specific genes of toxicological interest. Data were analyzed with the online tool EcoToxXplorer. Among the genes analyzed, 62 and 96 were significantly up‐ and downregulated, respectively, by one or more FC8‐diol treatments. Gene expression results from the previous study were validated, showing an upregulation of vitellogenin mRNA (vtg) and downregulation of insulin‐like growth factor 1 mRNA (igf1). Additional genes related to estrogen receptor activation including esr2a (estrogen receptor 2a) and esrrb (estrogen related receptor beta) were also affected, providing further confirmation of the estrogenic nature of FC8‐diol. Furthermore, genes involved in biological pathways related to lipid and carbohydrate metabolism, innate immune response, endocrine reproduction, and endocrine thyroid were significantly affected. These results both add confidence in the use of the EcoToxChip tool for inferring chemical mode(s) of action and provide further insights into the possible biological effects of FC8‐diol. Environ Toxicol Chem 2024;00:1–9. © 2024 SETAC. This article has been contributed to by U.S. Government employees and their work is in the public domain in the USA.

Publisher

Wiley

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