Literature DB >> 28355063

Quantitative Adverse Outcome Pathways and Their Application to Predictive Toxicology.

Rory B Conolly1, Gerald T Ankley2, WanYun Cheng1, Michael L Mayo3, David H Miller4, Edward J Perkins3, Daniel L Villeneuve2, Karen H Watanabe5.   

Abstract

A quantitative adverse outcome pathway (qAOP) consists of one or more biologically based, computational models describing key event relationships linking a molecular initiating event (MIE) to an adverse outcome. A qAOP provides quantitative, dose-response, and time-course predictions that can support regulatory decision-making. Herein we describe several facets of qAOPs, including (a) motivation for development, (b) technical considerations, (c) evaluation of confidence, and (d) potential applications. The qAOP used as an illustrative example for these points describes the linkage between inhibition of cytochrome P450 19A aromatase (the MIE) and population-level decreases in the fathead minnow (FHM; Pimephales promelas). The qAOP consists of three linked computational models for the following: (a) the hypothalamic-pitutitary-gonadal axis in female FHMs, where aromatase inhibition decreases the conversion of testosterone to 17β-estradiol (E2), thereby reducing E2-dependent vitellogenin (VTG; egg yolk protein precursor) synthesis, (b) VTG-dependent egg development and spawning (fecundity), and (c) fecundity-dependent population trajectory. While development of the example qAOP was based on experiments with FHMs exposed to the aromatase inhibitor fadrozole, we also show how a toxic equivalence (TEQ) calculation allows use of the qAOP to predict effects of another, untested aromatase inhibitor, iprodione. While qAOP development can be resource-intensive, the quantitative predictions obtained, and TEQ-based application to multiple chemicals, may be sufficient to justify the cost for some applications in regulatory decision-making.

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Year:  2017        PMID: 28355063      PMCID: PMC6134852          DOI: 10.1021/acs.est.6b06230

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  41 in total

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10.  Direct effects, compensation, and recovery in female fathead minnows exposed to a model aromatase inhibitor.

Authors:  Daniel L Villeneuve; Nathaniel D Mueller; Dalma Martinović; Elizabeth A Makynen; Michael D Kahl; Kathleen M Jensen; Elizabeth J Durhan; Jenna E Cavallin; David Bencic; Gerald T Ankley
Journal:  Environ Health Perspect       Date:  2008-12-12       Impact factor: 9.031

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  41 in total

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2.  Gene Expression Thresholds Derived From Short-term Exposures Identify Rat Liver Tumorigens.

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3.  Advancing the adverse outcome pathway framework-An international horizon scanning approach.

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Journal:  Environ Toxicol Chem       Date:  2018-07-19       Impact factor: 3.742

Review 5.  Skin and respiratory chemical allergy: confluence and divergence in a hybrid adverse outcome pathway.

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6.  Adverse outcome pathway networks II: Network analytics.

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7.  A framework for linking population model development with ecological risk assessment objectives.

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8.  The Adverse Outcome Pathway: A Multifaceted Framework Supporting 21st Century Toxicology.

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9.  Reconnaissance of Mixed Organic and Inorganic Chemicals in Private and Public Supply Tapwaters at Selected Residential and Workplace Sites in the United States.

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10.  Editor's Highlight: Mechanistic Toxicity Tests Based on an Adverse Outcome Pathway Network for Hepatic Steatosis.

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