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Updated: Jan 24, 2026

Dual Effects of Melanoma Cell-derived Factors on Bone Marrow Adipocytes Differentiation
Published on: August 23, 2018
Expression Signatures of Cisplatin- and Trametinib-Treated Early-Stage Medaka Melanomas
Barbara Klotz1, Susanne Kneitz1, Yuan Lu2
1Physiological Chemistry, Biocenter, University of Wuerzburg, 97074 Wuerzburg, Germany.
Abstract:
Small aquarium fish models provide useful systems not only for a better understanding of the molecular basis of many human diseases, but also for first-line screening to identify new drug candidates. For testing new chemical substances, current strategies mostly rely on easy to perform and efficient embryonic screens. Cancer, however, is a disease that develops mainly during juvenile and adult stage. Long-term treatment and the challenge to monitor changes in tumor phenotype make testing of large chemical libraries in juvenile and adult animals cost prohibitive. We hypothesized that changes in the gene expression profile should occur early during anti-tumor treatment, and the disease-associated transcriptional change should provide a reliable readout that can be utilized to evaluate drug-induced effects. For the current study, we used a previously established medaka melanoma model. As proof of principle, we showed that exposure of melanoma developing fish to the drugs cisplatin or trametinib, known cancer therapies, for a period of seven days is sufficient to detect treatment-induced changes in gene expression. By examining whole body transcriptome responses we provide a novel route toward gene panels that recapitulate anti-tumor outcomes thus allowing a screening of thousands of drugs using a whole-body vertebrate model. Our results suggest that using disease-associated transcriptional change to screen therapeutic molecules in small fish model is viable and may be applied to pre-clinical research and development stages in new drug discovery.
Insights
Small fish models can screen cancer drugs by analyzing gene expression changes. This approach offers a viable, cost-effective method for early-stage drug discovery and development.
Area of Science:
- Comparative genomics
- Aquatic toxicology
- Cancer research
Background:
- Small fish models are valuable for studying human diseases and drug discovery.
- Current drug screening relies on embryonic models, which are unsuitable for cancer research.
- Long-term cancer studies in juvenile/adult animals are cost-prohibitive.
Purpose of the Study:
- To test the hypothesis that gene expression changes early in anti-tumor treatment can serve as a reliable drug efficacy readout.
- To establish a whole-body vertebrate model for screening anti-cancer therapeutics.
- To develop gene panels that reflect anti-tumor outcomes for drug screening.
Main Methods:
- Utilized a medaka melanoma model for drug testing.
- Exposed melanoma-bearing fish to cisplatin and trametinib for seven days.
- Analyzed whole-body transcriptome responses to detect gene expression changes.
Main Results:
- Seven-day drug exposure (cisplatin, trametinib) induced detectable gene expression changes in melanoma fish.
- Identified treatment-induced transcriptional changes as a reliable indicator of drug effects.
- Demonstrated the potential for gene panels to recapitulate anti-tumor outcomes.
Conclusions:
- Disease-associated transcriptional changes in small fish models are a viable method for screening therapeutic molecules.
- This approach enables cost-effective, large-scale drug screening using vertebrate models.
- The method is applicable to pre-clinical research and development in drug discovery.
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