Abstract
Developmental toxicity can be caused through a multitude of mechanisms and can therefore not be captured through a single simple mechanistic paradigm. However, it may be possible to define a selected group of overarching mechanisms that might allow detection of the vast majority of developmental toxicants. Against this background, we have explored the usefulness of retinoic acid mediated regulation of neural tube and axial patterning as a general mechanism that, when perturbed, may result in manifestations of developmental toxicity that may cover a large part of malformations known to occur in experimental animals and in man. Through a literature survey, we have identified key genes in the regulation of retinoic acid homeostasis, as well as marker genes of neural tube and axial patterning, that may be used to detect developmental toxicants in in vitro systems. A retinoic acid-neural tube/axial patterning adverse outcome pathway (RA-NTA AOP) framework was designed. The framework was tested against existing data of flusilazole exposure in the rat whole embryo culture, the zebrafish embryotoxicity test, and the embryonic stem cell test. Flusilazole is known to interact with retinoic acid homeostasis, and induced common and unique NTA marker gene changes in the three test systems. Flusilazole-induced changes were similar in directionality to gene expression responses after retinoic acid exposure. It is suggested that the RA-NTA framework may provide a general tool to define mechanistic pathways and biomarkers of developmental toxicity that may be used in alternative in vitro assays for the detection of embryotoxic compounds. (C) 2014 Elsevier Inc. All rights reserved.
Original language | English |
---|---|
Pages (from-to) | 104-113 |
Number of pages | 10 |
Journal | Reproductive Toxicology |
Volume | 55 |
DOIs | |
Publication status | Published - 1 Aug 2015 |
Funding
This work was supported by the Netherlands Genomics Initiative (NGI)/Netherlands Organization for Scientific Research (NWO) [grant number 050-060-510] and the Ministry of Infrastructure and the Environment. This work was carried out with financial support from the Commission of the European Communities, the collaborative project ChemScreen (GA244236).
Keywords
- Retinoic acid
- Embryogenesis
- Developmental toxicity
- Malformations
- Neural tube patterning
- Axial patterning
- Biomarkers
- Gene expression
- WHOLE-EMBRYO CULTURE
- ZEBRAFISH EMBRYOTOXICITY TEST
- DIFFERENTIAL GENE-EXPRESSION
- STEM-CELL TEST
- DEVELOPMENTAL TOXICITY
- VALPROIC ACID
- IN-VIVO
- VERTEBRATE SEGMENTATION
- TRANSCRIPTOMIC ANALYSIS
- MOUSE EMBRYOGENESIS