Literature DB >> 29476864

A systems biology approach to predictive developmental neurotoxicity of a larvicide used in the prevention of Zika virus transmission.

Karine Audouze1, Olivier Taboureau1, Philippe Grandjean2.   

Abstract

The need to prevent developmental brain disorders has led to an increased interest in efficient neurotoxicity testing. When an epidemic of microcephaly occurred in Brazil, Zika virus infection was soon identified as the likely culprit. However, the pathogenesis appeared to be complex, and a larvicide used to control mosquitoes responsible for transmission of the virus was soon suggested as an important causative factor. Yet, it is challenging to identify relevant and efficient tests that are also in line with ethical research defined by the 3Rs rule (Replacement, Reduction and Refinement). Especially in an acute situation like the microcephaly epidemic, where little toxicity documentation is available, new and innovative alternative methods, whether in vitro or in silico, must be considered. We have developed a network-based model using an integrative systems biology approach to explore the potential developmental neurotoxicity, and we applied this method to examine the larvicide pyriproxyfen widely used in the prevention of Zika virus transmission. Our computational model covered a wide range of possible pathways providing mechanistic hypotheses between pyriproxyfen and neurological disorders via protein complexes, thus adding to the plausibility of pyriproxyfen neurotoxicity. Although providing only tentative evidence and comparisons with retinoic acid, our computational systems biology approach is rapid and inexpensive. The case study of pyriproxyfen illustrates its usefulness as an initial or screening step in the assessment of toxicity potentials of chemicals with incompletely known toxic properties.
Copyright © 2018 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Computational biology; Developmental neurotoxicity; Pesticide; Predictive toxicology; Pyriproxyfen; Systems biology; Toxicity testing

Mesh:

Substances:

Year:  2018        PMID: 29476864      PMCID: PMC6087490          DOI: 10.1016/j.taap.2018.02.014

Source DB:  PubMed          Journal:  Toxicol Appl Pharmacol        ISSN: 0041-008X            Impact factor:   4.219


  68 in total

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  4 in total

1.  Impact of pyriproxyfen on virus behavior: implications for pesticide-induced virulence and mechanism of transmission.

Authors:  Paula A Faria Waziry; Aarti Raja; Chloe Salmon; Nathalia Aldana; Sruthi Damodar; Andre Rinaldi Fukushima; Bindu S Mayi
Journal:  Virol J       Date:  2020-07-06       Impact factor: 4.099

2.  Deciphering Adverse Outcome Pathway Network Linked to Bisphenol F Using Text Mining and Systems Toxicology Approaches.

Authors:  Marylène Rugard; Xavier Coumoul; Jean-Charles Carvaillo; Robert Barouki; Karine Audouze
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