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Quantitative Measurement of Functional Activity of the PI3K Signaling Pathway in Cancer
1Precision Diagnostics, Philips Research, High Tech Campus, 5656AE Eindhoven, The Netherlands. anja.van.de.stolpe@philips.com.
Abstract:
The phosphoinositide 3-kinase (PI3K) growth factor signaling pathway plays an important role in embryonic development and in many physiological processes, for example the generation of an immune response. The pathway is frequently activated in cancer, driving cell division and influencing the activity of other signaling pathways, such as the MAPK, JAK-STAT and TGFβ pathways, to enhance tumor growth, metastasis, and therapy resistance. Drugs that inhibit the pathway at various locations, e.g., receptor tyrosine kinase (RTK), PI3K, AKT and mTOR inhibitors, are clinically available. To predict drug response versus resistance, tests that measure PI3K pathway activity in a patient sample, preferably in combination with measuring the activity of other signaling pathways to identify potential resistance pathways, are needed. However, tests for signaling pathway activity are lacking, hampering optimal clinical application of these drugs. We recently reported the development and biological validation of a test that provides a quantitative PI3K pathway activity score for individual cell and tissue samples across cancer types, based on measuring Forkhead Box O (FOXO) transcription factor target gene mRNA levels in combination with a Bayesian computational interpretation model. A similar approach has been used to develop tests for other signaling pathways (e.g., estrogen and androgen receptor, Hedgehog, TGFβ, Wnt and NFκB pathways). The potential utility of the test is discussed, e.g., to predict response and resistance to targeted drugs, immunotherapy, radiation and chemotherapy, as well as (pre-) clinical research and drug development.
Insights
A new test quantifies phosphoinositide 3-kinase (PI3K) pathway activity in cancer. This assay measures Forkhead Box O (FOXO) target genes to predict drug response and resistance.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The phosphoinositide 3-kinase (PI3K) pathway is crucial for embryonic development and immune responses.
- Aberrant PI3K pathway activation drives cancer progression, metastasis, and therapy resistance.
- Targeted inhibitors of the PI3K pathway are clinically available, but predicting patient response remains challenging.
Purpose of the Study:
- To address the lack of tests for signaling pathway activity.
- To develop a quantitative assay for PI3K pathway activity in patient samples.
- To enable prediction of drug response and resistance in cancer patients.
Main Methods:
- Developed a test measuring Forkhead Box O (FOXO) transcription factor target gene mRNA levels.
- Utilized a Bayesian computational model for quantitative interpretation of pathway activity.
- Validated the test across various cancer types and sample sources.
Main Results:
- Established a quantitative PI3K pathway activity score for individual cell and tissue samples.
- Demonstrated the test's ability to measure pathway activity across different cancer types.
- Showcased potential for predicting response and resistance to various cancer therapies.
Conclusions:
- The developed test provides a much-needed tool for assessing PI3K pathway activity.
- This assay can aid in optimizing clinical application of PI3K inhibitors.
- The approach holds promise for personalized medicine, clinical research, and drug development.
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