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Integrative Multiomics and Drug Sensitivity Profiling Reveal Potential Biomarkers and Therapeutic Strategies in
Dina ElHarouni1,2,3, Rosa Hernansaiz-Ballesteros4, Heike Peterziel1,5
1Hopp Children's Cancer Center Heidelberg (KiTZ), Heidelberg, Germany.
Abstract:
Cure rates for childhood malignancies using established therapy protocols have increased to an average of 80% but have reached a plateau. Moreover, survival rates are particularly low for some pediatric tumors-such as high-risk group 3 medulloblastomas, osteosarcomas, Ewing sarcomas, high-risk neuroblastomas, and high-grade gliomas-and dismal for patients with relapsed malignancies. A functional drug response profiling platform for pediatric solid and brain tumors has been established within the INFORM program to identify patient-specific vulnerabilities and biomarkers and to unravel molecular mechanisms associated with drug response profiles for clinical translation. In this study, we performed a multiomics analysis using drug sensitivity profiles, as well as genomic and transcriptomic data, of 81 pediatric solid tumor samples. The integrative analysis suggested two multiomics signatures associated with drug sensitivity. One signature distinguished neuroblastoma samples with sensitivity to navitoclax, a BCL2 family inhibitor. A second signature was specific to a subset of Wilms tumors harboring the SIX1 (Q177R) hotspot mutation that displayed high expression of MGAM, PTPN14, STAT4, and KDM2B and high sensitivity to MEK inhibitors. A patient-specific causal interaction network analysis suggested possible molecular interactions between MEK inhibitors and the SIX1 mutation in Wilms tumor samples. In conclusion, the integration of drug sensitivity profiling and multiomics data revealed potential biomarkers that may be associated with drug sensitivity in pediatric solid tumors. Patient-specific causal interaction network analysis further elucidated the interaction between inhibitors and signature biomarkers, providing insights that may inform clinical translation.
Significance:
The combination of multiomics analysis and drug sensitivity profiling identified two signatures related to drug sensitivity in pediatric solid tumors, contributing to the advancement of functional precision medicine and personalized treatment strategies. This article is part of a special series: Driving Cancer Discoveries with Computational Research, Data Science, and Machine Learning/AI .
Insights
Multiomics analysis and drug sensitivity profiling identified two key signatures in pediatric solid tumors. These findings advance precision medicine by revealing patient-specific vulnerabilities and potential biomarkers for targeted therapies.
Area of Science:
- Oncology
- Genomics
- Pharmacology
Background:
- Childhood cancer cure rates have plateaued around 80%, with poor survival for specific aggressive and relapsed tumors.
- Established therapies are insufficient for certain high-risk pediatric malignancies, necessitating novel treatment strategies.
Purpose of the Study:
- To integrate multiomics data with drug sensitivity profiles in pediatric solid tumors.
- To identify patient-specific vulnerabilities, biomarkers, and molecular mechanisms for clinical translation.
Main Methods:
- Performed multiomics analysis (genomic, transcriptomic, drug sensitivity) on 81 pediatric solid tumor samples.
- Utilized integrative analysis to identify multiomics signatures linked to drug sensitivity.
- Employed patient-specific causal interaction network analysis to explore molecular interactions.
Main Results:
- Identified two multiomics signatures associated with drug sensitivity.
- One signature linked neuroblastoma sensitivity to navitoclax (BCL2 inhibitor).
- A second signature identified Wilms tumors with a SIX1 mutation sensitive to MEK inhibitors.
Conclusions:
- Integration of drug sensitivity profiling and multiomics data reveals potential biomarkers for pediatric solid tumors.
- Patient-specific network analysis provides insights into drug-target interactions, informing clinical translation and precision medicine approaches.
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