4.5 Article

A cell-free testing platform to screen chemicals of potential neurotoxic concern across twenty vertebrate species

期刊

ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY
卷 36, 期 11, 页码 3081-3090

出版社

WILEY
DOI: 10.1002/etc.3880

关键词

Risk assessment; Toxicity testing; Screening assay; Ecotoxicology; Comparative

资金

  1. USEPA's Science to Achieve Results Program [R835170]
  2. Natural Sciences and Engineering Research Council of Canada
  3. Canada Foundation for Innovation
  4. EPA [R835170, 150175] Funding Source: Federal RePORTER

向作者/读者索取更多资源

There is global demand for new in vitro testing tools for ecological risk assessment. The objective of the present study was to apply a set of cell-free neurochemical assays to screen many chemicals across many species in a relatively high-throughput manner. The platform assessed 7 receptors and enzymes that mediate neurotransmission of -aminobutyric acid, dopamine, glutamate, and acetylcholine. Each assay was optimized to work across 20 vertebrate species (5 fish, 5 birds, 7 mammalian wildlife, 3 biomedical species including humans). We tested the screening assay platform against 80 chemicals (23 pharmaceuticals and personal care products, 20 metal[loid]s, 22 polycyclic aromatic hydrocarbons and halogenated organic compounds, 15 pesticides). In total, 10 800 species-chemical-assay combinations were tested, and significant differences were found in 4041 cases. All 7 assays were significantly affected by at least one chemical in each species tested. Among the 80 chemicals tested, nearly all resulted in a significant impact on at least one species and one assay. The 5 most active chemicals were prochloraz, HgCl2, Sn, benzo[a]pyrene, and vinclozolin. Clustering analyses revealed groupings according to chemicals, species, and chemical-assay combinations. The results show that cell-free assays can screen a large number of samples in a short period of time in a cost-effective manner in a range of animals not easily studied using traditional approaches. Strengths and limitations of this approach are discussed, as well as next steps. Environ Toxicol Chem 2017;36:3081-3090. (c) 2017 SETAC

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