Related Experiment Video
Updated: Jun 17, 2026

Microprobe Capillary Electrophoresis Mass Spectrometry for Single-cell Metabolomics in Live Frog (Xenopus laevis) Embryos
Published on: December 22, 2017
Peering into molecular mechanisms of action with frogSCOPE
Caren C Helbing1, Stacey K Maher, Jun Han
1Department of Biochemistry & Microbiology, University of Victoria, P.O. Box 3055 Stn CSC, Victoria, BC, Canada. chelbing@uvic.ca
Abstract:
Exposure of critical life stages to harmful chemicals at low, environmentally-relevant concentrations can alter how hormones function, and change metabolic pathways or developmental processes that impact reproduction, behavior, or susceptibility to disease later in life. These alterations can be captured through evaluation of changes to transcriptomes, proteomes, and metabolomes occurring at those critical life stages thereby enabling more effective and earlier identification of mechanism of action, individual susceptibilities and adaptation, and prediction of detrimental sublethal effects. Amphibians are "wet canaries in the coalmine" as indicators for environmental health. There are more than 6000 species living in a variety of ecological niches worldwide yet limited 'omics resources and approaches exist. To provide for a means of addressing this challenge, frogSCOPE (frog Sentinel species Comparative "Omics" for the Environment) combines transcriptomics, proteomics, and metabolomics together to form the foundation for the identification of biological response indicators of harmful effects on a species of wild frog (Rana catesbeiana) at a sensitive tadpole stage. Various exposure and sampling methodologies are possible including standard in vivo exposures, tail fin biopsies, and the C-fin assay. frogSCOPE establishes methodological and analytical approaches applicable to wildlife by using a uniquely-designed frog cDNA array developed to accommodate cross-species hybridization and quantitative real-time polymerase chain reaction (QPCR) assays on poorly genetically-characterized wildlife species. Combination with proteomics (isobaric tags for relative and absolute protein quantitation; iTRAQ) and metabolomics (mass spectrometry) enable the generation of molecular fingerprints to identify mechanisms of action in a more comprehensive fashion to better define suitable indicators of deleterious biological outcomes to wildlife.
Insights
Environmental chemicals can disrupt amphibian development and health. The frogSCOPE approach uses
Area of Science:
- Environmental toxicology and molecular biology
- Wildlife ecotoxicology and biomarker discovery
Background:
- Low-dose chemical exposures during critical life stages can disrupt endocrine function, metabolism, and development, impacting long-term health and reproduction.
- Amphibians serve as sensitive indicators of environmental health, but limited 'omics resources hinder their use in toxicological studies.
- Identifying early biological response indicators is crucial for predicting adverse effects in wildlife.
Purpose of the Study:
- To develop and validate a comprehensive 'omics approach (frogSCOPE) for assessing chemical impacts on wildlife.
- To establish a foundation for identifying biological response indicators in a sentinel amphibian species.
- To enable earlier and more effective identification of mechanisms of action and sublethal effects.
Main Methods:
- Combined transcriptomics, proteomics (iTRAQ), and metabolomics (mass spectrometry) in Rana catesbeiana tadpoles.
- Utilized a novel frog cDNA array for cross-species hybridization and quantitative real-time polymerase chain reaction (QPCR) assays.
- Employed various exposure and sampling methodologies, including in vivo exposures and C-fin assays.
Main Results:
- Developed methodological and analytical approaches applicable to wildlife, even with limited genetic characterization.
- Generated molecular fingerprints by integrating multi-omics data.
- Demonstrated the potential for identifying mechanisms of action and suitable biomarkers for deleterious biological outcomes.
Conclusions:
- frogSCOPE provides a powerful, integrated 'omics framework for wildlife ecotoxicology.
- This approach facilitates the identification of sensitive biomarkers for environmental chemical exposure.
- The study establishes a foundation for improved risk assessment and conservation of amphibian populations.

