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.

G3 (Bethesda, Md.)
|May 19, 2019
PubMed

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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