Literature DB >> 32827657

The multi-dimensional embryonic zebrafish platform predicts flame retardant bioactivity.

Lisa Truong1, Skylar Marvel2, David M Reif2, Dennis G Thomas3, Paritosh Pande3, Subham Dasgupta1, Michael T Simonich1, Katrina M Waters4, Robyn L Tanguay5.   

Abstract

Flame retardant chemicals (FRCs) commonly added to many consumer products present a human exposure burden associated with adverse health effects. Under pressure from consumers, FRC manufacturers have adopted some purportedly safer replacements for first-generation brominated diphenyl ethers (BDEs). In contrast, second and third-generation organophosphates and other alternative chemistries have limited bioactivity data available to estimate their hazard potential. In order to evaluate the toxicity of existing and potential replacement FRCs, we need efficient screening methods. We built a 61-FRC library in which we systemically assessed developmental toxicity and potential neurotoxicity effects in the embryonic zebrafish model. Data were compared to publicly available data generated in a battery of cell-based in vitro assays from ToxCast, Tox21, and other alternative models. Of the 61 FRCs, 19 of 45 that were tested in the ToxCast assays were bioactive in our zebrafish model. The zebrafish assays detected bioactivity for 10 of the 12 previously classified developmental neurotoxic FRCs. Developmental zebrafish were sufficiently sensitive at detecting FRC structure-bioactivity impacts that we were able to build a classification model using 13 physicochemical properties and 3 embryonic zebrafish assays that achieved a balanced accuracy of 91.7%. This work illustrates the power of a multi-dimensional in vivo platform to expand our ability to predict the hazard potential of new compounds based on structural relatedness, ultimately leading to reliable toxicity predictions based on chemical structure.
Copyright © 2020 The Author(s). Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Benchmark dose; Classification model; Developmental toxicity; Flame retardants; Lowest effect concentration; Neurotoxicity

Mesh:

Substances:

Year:  2020        PMID: 32827657      PMCID: PMC7892636          DOI: 10.1016/j.reprotox.2020.08.007

Source DB:  PubMed          Journal:  Reprod Toxicol        ISSN: 0890-6238            Impact factor:   3.143


  39 in total

1.  Effects of tris(1,3-dichloro-2-propyl) phosphate and tris(1-chloropropyl) phosphate on cytotoxicity and mRNA expression in primary cultures of avian hepatocytes and neuronal cells.

Authors:  Doug Crump; Suzanne Chiu; Sean W Kennedy
Journal:  Toxicol Sci       Date:  2012-01-19       Impact factor: 4.849

2.  Crosstalk between AhR and wnt/β-catenin signal pathways in the cardiac developmental toxicity of PM2.5 in zebrafish embryos.

Authors:  Hang Zhang; Yugang Yao; Yang Chen; Cong Yue; Jiahong Chen; Jian Tong; Yan Jiang; Tao Chen
Journal:  Toxicology       Date:  2016-05-20       Impact factor: 4.221

3.  Time-dependent behavioral data from zebrafish reveals novel signatures of chemical toxicity using point of departure analysis.

Authors:  Dennis G Thomas; Harish Shankaran; Lisa Truong; Robert L Tanguay; Katrina M Waters
Journal:  Comput Toxicol       Date:  2018-11-10

4.  Diphenyl Phosphate-Induced Toxicity During Embryonic Development.

Authors:  Constance A Mitchell; Aalekhya Reddam; Subham Dasgupta; Sharon Zhang; Heather M Stapleton; David C Volz
Journal:  Environ Sci Technol       Date:  2019-03-20       Impact factor: 9.028

5.  Metabolites of organophosphate flame retardants and 2-ethylhexyl tetrabromobenzoate in urine from paired mothers and toddlers.

Authors:  Craig M Butt; Johanna Congleton; Kate Hoffman; Mingliang Fang; Heather M Stapleton
Journal:  Environ Sci Technol       Date:  2014-08-13       Impact factor: 9.028

Review 6.  Towards a comprehensive catalog of zebrafish behavior 1.0 and beyond.

Authors:  Allan V Kalueff; Michael Gebhardt; Adam Michael Stewart; Jonathan M Cachat; Mallorie Brimmer; Jonathan S Chawla; Cassandra Craddock; Evan J Kyzar; Andrew Roth; Samuel Landsman; Siddharth Gaikwad; Kyle Robinson; Erik Baatrup; Keith Tierney; Angela Shamchuk; William Norton; Noam Miller; Teresa Nicolson; Oliver Braubach; Charles P Gilman; Julian Pittman; Denis B Rosemberg; Robert Gerlai; David Echevarria; Elisabeth Lamb; Stephan C F Neuhauss; Wei Weng; Laure Bally-Cuif; Henning Schneider
Journal:  Zebrafish       Date:  2013-03       Impact factor: 1.985

7.  Acute and developmental behavioral effects of flame retardants and related chemicals in zebrafish.

Authors:  Kimberly A Jarema; Deborah L Hunter; Rachel M Shaffer; Mamta Behl; Stephanie Padilla
Journal:  Neurotoxicol Teratol       Date:  2015-09-05       Impact factor: 3.763

8.  Endocrine profiling and prioritization of environmental chemicals using ToxCast data.

Authors:  David M Reif; Matthew T Martin; Shirlee W Tan; Keith A Houck; Richard S Judson; Ann M Richard; Thomas B Knudsen; David J Dix; Robert J Kavlock
Journal:  Environ Health Perspect       Date:  2010-09-08       Impact factor: 9.031

9.  A New Statistical Approach to Characterize Chemical-Elicited Behavioral Effects in High-Throughput Studies Using Zebrafish.

Authors:  Guozhu Zhang; Lisa Truong; Robert L Tanguay; David M Reif
Journal:  PLoS One       Date:  2017-01-18       Impact factor: 3.240

10.  ToxPi Graphical User Interface 2.0: Dynamic exploration, visualization, and sharing of integrated data models.

Authors:  Skylar W Marvel; Kimberly To; Fabian A Grimm; Fred A Wright; Ivan Rusyn; David M Reif
Journal:  BMC Bioinformatics       Date:  2018-03-05       Impact factor: 3.169

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  4 in total

1.  Diisopropylfluorophosphate (DFP) volatizes and cross-contaminates wells in a common 96-well plate format used in zebrafish larvae toxicology studies.

Authors:  Paige C Mundy; Rosalia Mendieta; Pamela J Lein
Journal:  J Pharmacol Toxicol Methods       Date:  2022-05-08       Impact factor: 2.285

Review 2.  Uncovering Evidence for Endocrine-Disrupting Chemicals That Elicit Differential Susceptibility through Gene-Environment Interactions.

Authors:  Dylan J Wallis; Lisa Truong; Jane La Du; Robyn L Tanguay; David M Reif
Journal:  Toxics       Date:  2021-04-06

3.  Sulfonamide functional head on short-chain perfluorinated substance drives developmental toxicity.

Authors:  Yvonne Rericha; Dunping Cao; Lisa Truong; Michael T Simonich; Jennifer A Field; Robyn L Tanguay
Journal:  iScience       Date:  2022-01-18

4.  A Comparative Multi-System Approach to Characterizing Bioactivity of Commonly Occurring Chemicals.

Authors:  Brianna N Rivera; Lindsay B Wilson; Doo Nam Kim; Paritosh Pande; Kim A Anderson; Susan C Tilton; Robyn L Tanguay
Journal:  Int J Environ Res Public Health       Date:  2022-03-23       Impact factor: 3.390

  4 in total

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