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Assessing Teratogenic Changes in a Zebrafish Model of Fetal Alcohol Exposure
Published on: March 20, 2012
Identification of an adverse outcome pathway (AOP) for chemical-induced craniofacial anomalies using the transgenic
Shujie Liu1, Toru Kawanishi2,3, Atsuko Shimada2
1R&D, Safety Science Research, Kao Corporation, Tochigi 321-3497, Japan.
Abstract:
Craniofacial anomalies are one of the most frequent birth defects worldwide and are often caused by genetic and environmental factors such as pharmaceuticals and chemical agents. Although identifying adverse outcome pathways (AOPs) is a central issue for evaluating the teratogenicity, the AOP causing craniofacial anomalies has not been identified. Recently, zebrafish has gained interest as an emerging model for predicting teratogenicity because of high throughput, cost-effectiveness and availability of various tools for examining teratogenic mechanisms. Here, we established zebrafish sox10-EGFP reporter lines to visualize cranial neural crest cells (CNCCs) and have identified the AOPs for craniofacial anomalies. When we exposed the transgenic embryos to teratogens that were reported to cause craniofacial anomalies in mammals, CNCC migration and subsequent morphogenesis of the first pharyngeal arch were impaired at 24 hours post-fertilization. We also found that cell proliferation and apoptosis of the migratory CNCCs were disturbed, which would be key events of the AOP. From these results, we propose that our sox10-EGFP reporter lines serve as a valuable model for detecting craniofacial skeletal abnormalities, from early to late developmental stages. Given that the developmental process of CNCCs around this stage is highly conserved between zebrafish and mammals, our findings can be extrapolated to mammalian craniofacial development and thus help in predicting craniofacial anomalies in human.
Insights
Researchers developed zebrafish reporter lines to visualize cranial neural crest cells (CNCCs), identifying adverse outcome pathways (AOPs) for craniofacial anomalies. This model aids in predicting birth defects caused by teratogens.
Area of Science:
- Developmental Biology
- Toxicology
- Genetics
Background:
- Craniofacial anomalies are common birth defects with diverse causes.
- Identifying teratogenic adverse outcome pathways (AOPs) is crucial for risk assessment.
- Zebrafish offer a high-throughput, cost-effective model for teratogenicity studies.
Purpose of the Study:
- To establish zebrafish reporter lines for visualizing cranial neural crest cells (CNCCs).
- To identify AOPs underlying craniofacial anomalies using the reporter lines.
- To evaluate the utility of this model for predicting mammalian craniofacial defects.
Main Methods:
- Established sox10-EGFP transgenic zebrafish embryos.
- Exposed embryos to known mammalian teratogens.
- Monitored CNCC migration and pharyngeal arch morphogenesis.
- Assessed cell proliferation and apoptosis in migratory CNCCs.
Main Results:
- Teratogen exposure impaired CNCC migration and first pharyngeal arch morphogenesis.
- Disturbed cell proliferation and apoptosis in migratory CNCCs were observed.
- The sox10-EGFP reporter lines effectively visualized these developmental disruptions.
Conclusions:
- Zebrafish sox10-EGFP reporter lines are valuable for identifying AOPs of craniofacial anomalies.
- The model can detect craniofacial skeletal abnormalities from early to late developmental stages.
- Findings are relevant to mammalian development, aiding prediction of human craniofacial defects.

