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Utilizing Functional Genomics Screening to Identify Potentially Novel Drug Targets in Cancer Cell Spheroid Cultures
Published on: December 26, 2016
High content phenotypic screening identifies serotonin receptor modulators with selective activity upon breast cancer
Scott J Warchal1, John C Dawson1, Emelie Shepherd1
1Cancer Research UK Edinburgh Centre, MRC Institute of Genetics and Molecular Medicine, University of Edinburgh, EH4 2XR Edinburgh, United Kingdom.
Abstract:
Heterogeneity in disease mechanisms between genetically distinct patients contributes to high attrition rates in late stage clinical drug development. New personalized medicine strategies aim to identify predictive biomarkers which stratify patients most likely to respond to a particular therapy. However, for complex multifactorial diseases not characterized by a single genetic driver, empirical approaches to identifying predictive biomarkers and the most promising therapies for personalized medicine are required. In vitro pharmacogenomics seeks to correlate in vitro drug sensitivity testing across panels of genetically distinct cell models with genomic, gene expression or proteomic data to identify predictive biomarkers of drug response. However, the vast majority of in vitro pharmacogenomic studies performed to date are limited to dose-response screening upon a single viability assay endpoint. In this article we describe the application of multiparametric high content phenotypic screening and the theta comparative cell scoring method to quantify and rank compound hits, screened at a single concentration, which induce a broad variety of divergent phenotypic responses between distinct breast cancer cell lines. High content screening followed by transcriptomic pathway analysis identified serotonin receptor modulators which display selective activity upon breast cancer cell cycle and cytokine signaling pathways correlating with inhibition of cell growth and survival. These methods describe a new evidence-led approach to rapidly identify compounds which display distinct response between different cell types. The results presented also warrant further investigation of the selective activity of serotonin receptor modulators upon breast cancer cell growth and survival as a potential drug repurposing opportunity.
Insights
New methods rapidly identify potential personalized cancer medicines by analyzing diverse cell responses to compounds. Serotonin receptor modulators show promise for repurposing in breast cancer treatment.
Area of Science:
- Pharmacogenomics and personalized medicine
- Cancer biology and drug discovery
Background:
- Genetic heterogeneity in patients drives high attrition rates in clinical drug development.
- Personalized medicine requires predictive biomarkers for complex diseases, often necessitating empirical approaches.
- Current in vitro pharmacogenomics studies are limited by single viability endpoints.
Purpose of the Study:
- To apply multiparametric high-content phenotypic screening and comparative cell scoring to identify predictive biomarkers for personalized medicine.
- To discover compounds inducing divergent phenotypic responses in distinct breast cancer cell lines.
- To explore serotonin receptor modulators as potential drug repurposing candidates for breast cancer.
Main Methods:
- Utilized multiparametric high-content phenotypic screening on genetically distinct breast cancer cell lines.
- Applied the theta comparative cell scoring method to quantify and rank compound hits at a single concentration.
- Conducted transcriptomic pathway analysis on high-content screening data.
Main Results:
- Identified serotonin receptor modulators exhibiting selective activity on breast cancer cell cycle and cytokine signaling pathways.
- Observed correlation between pathway modulation and inhibition of cell growth and survival.
- Demonstrated a novel evidence-led approach for rapid compound identification based on differential cellular responses.
Conclusions:
- The developed methods enable rapid identification of compounds with distinct responses across different cell types.
- Serotonin receptor modulators represent a potential drug repurposing opportunity for breast cancer therapy.
- Further investigation into serotonin receptor modulators' selective activity on breast cancer is warranted.
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