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Updated: Aug 27, 2025

Intracellular Phosphoflow Cytometry of Acute Myeloid Leukemia Patient-Derived Xenotransplants
Published on: June 6, 2025
Discovery of druggable cancer-specific pathways with application in acute myeloid leukemia
Quang Thinh Trac1, Tingyou Zhou2, Yudi Pawitan1
1Department of Medical Epidemiology and Biostatistics, Karolinska Institutet, Nobels väg 12A, Stockholm 17177, Sweden.
Abstract:
An individualized cancer therapy is ideally chosen to target the cancer's driving biological pathways, but identifying such pathways is challenging because of their underlying heterogeneity and there is no guarantee that they are druggable. We hypothesize that a cancer with an activated druggable cancer-specific pathway (DCSP) is more likely to respond to the relevant drug. Here we develop and validate a systematic method to search for such DCSPs, by (i) introducing a pathway activation score (PAS) that integrates cancer-specific driver mutations and gene expression profile and drug-specific gene targets, (ii) applying the method to identify DCSPs from pan-cancer datasets, and (iii) analyzing the correlation between PAS and the response to relevant drugs. In total, 4,794 DCSPs from 23 different cancers have been discovered in the Genomics of Drug Sensitivity in Cancer database and validated in The Cancer Genome Atlas database. Supporting the hypothesis, for the DCSPs in acute myeloid leukemia, cancers with higher PASs are shown to have stronger drug response, and this is validated in the BeatAML cohort. All DCSPs are publicly available at https://www.meb.ki.se/shiny/truvu/DCSP/.
Insights
This study introduces a new method to find druggable cancer-specific pathways (DCSPs). Cancers with higher pathway activation scores (PAS) show better drug response, supporting targeted cancer therapy.
Area of Science:
- Oncology
- Bioinformatics
- Pharmacogenomics
Background:
- Individualized cancer therapy aims to target specific cancer pathways.
- Identifying these pathways is difficult due to heterogeneity and lack of druggability.
Purpose of the Study:
- To develop and validate a systematic method for identifying druggable cancer-specific pathways (DCSPs).
- To test the hypothesis that activated DCSPs correlate with drug response.
Main Methods:
- Introduced a pathway activation score (PAS) integrating driver mutations, gene expression, and drug targets.
- Applied the method to pan-cancer datasets.
- Analyzed the correlation between PAS and drug response.
Main Results:
- Discovered 4,794 DCSPs across 23 cancers using the Genomics of Drug Sensitivity in Cancer and The Cancer Genome Atlas databases.
- Demonstrated that higher PAS in acute myeloid leukemia correlates with stronger drug response, validated in the BeatAML cohort.
Conclusions:
- The developed method effectively identifies DCSPs.
- Higher pathway activation scores indicate increased likelihood of drug response, supporting precision medicine approaches.
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