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Human Pluripotent Stem Cell Based Developmental Toxicity Assays for Chemical Safety Screening and Systems Biology Data Generation
Published on: June 17, 2015
Toward better assessments of developmental toxicity using stem cell-based in vitro embryogenesis models
1Department of Anatomy, Biochemistry and Physiology, Institute for Biogenesis Research, University of Hawaii John A. Burns School of Medicine, Honolulu, Hawaii, USA.
Abstract:
In the past few decades, pluripotent stem cells have been explored as nonanimal alternatives to assess the developmental toxicity of chemicals. To date, numerous versions of stem cell-based assays have been reported that are allegedly effective. Nonetheless, none of the assays has become the gold standard in developmental toxicity assessment. Why? This article discusses several issues in the hope of facilitating the refinement of stem cell assays and their acceptance as the cornerstone in predictive developmental toxicology. Each stem cell assay is built on a limited representation of embryogenesis, so that multiple assays are needed to detect the diverse effects of various chemicals. To validate and compare the strengths and weaknesses of individual assays, standardized lists of reference chemicals should be established. Reference lists should consist of exposures defined by toxicokinetic data, namely maternal plasma concentrations that cause embryonic death or malformations, and also by the effects on the molecular machineries that control embryogenesis. Although not entirely replacing human or animal tests, carefully selected stem cell assays should serve as practical and ethical alternatives to proactively identify chemical exposures that disturb embryogenesis. To achieve this goal, unprecedented levels of coordination and conviction are required among research and regulatory communities.
Insights
Pluripotent stem cell assays offer non-animal alternatives for developmental toxicity testing. Refinement and standardization are crucial for their acceptance as a cornerstone in predictive toxicology.
Area of Science:
- Toxicology
- Developmental Biology
- Stem Cell Biology
Background:
- Pluripotent stem cells are explored as non-animal alternatives for chemical developmental toxicity assessment.
- Numerous stem cell-based assays exist, but none have achieved gold standard status.
Purpose of the Study:
- Discuss issues hindering the acceptance of stem cell assays in developmental toxicology.
- Facilitate refinement and standardization for broader adoption.
Main Methods:
- Review of existing stem cell assay limitations.
- Discussion on the need for standardized reference chemicals.
- Emphasis on toxicokinetic data and molecular effects.
Main Results:
- Each assay represents a limited aspect of embryogenesis, necessitating multiple assays.
- Standardized reference chemicals are required for validation and comparison.
- Maternal plasma concentrations and molecular targets are key data points.
Conclusions:
- Stem cell assays can be practical and ethical alternatives for identifying developmental toxicants.
- Carefully selected assays, alongside regulatory coordination, are needed.
- Achieving this requires significant collaboration between research and regulatory bodies.

