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Therapeutically Induced Changes in HER2, HER3, and EGFR Protein Expression for Treatment Guidance
Shankar Sellappan1, Adele Blackler1, Wei-Li Liao1
1NantOmics, LLC, Rockville, Maryland
Abstract:
Protein-targeted therapies are expected to selectively kill tumor cells that express the targeted protein biomarker. Although a tumor mass may initially respond to targeted therapies based on expression of the targeted protein, all cells within a tumor may not express the targeted protein above a critical threshold level; therefore, those cells that do not express, or that downregulate expression of, the targeted protein may not be responsive to therapy. The ability to monitor the dynamic expression of these protein biomarkers throughout the course of therapy may allow for treatment to be personalized in real-time in response to the evolving nature of the tumor. This report demonstrates, by monitoring a single patient through multiple therapies, how targeted mass spectrometry is an effective, quantitative method that provides real-time analysis of multiple therapeutically associated targeted proteins that can be used to personalize a patient's treatment strategy throughout the course of care.
Insights
Targeted therapies can fail if tumors change protein expression. Targeted mass spectrometry offers real-time monitoring of protein biomarkers, enabling personalized cancer treatment strategies for improved patient outcomes.
Area of Science:
- Oncology
- Biomarker Discovery
- Proteomics
Background:
- Protein-targeted therapies aim to eliminate tumor cells expressing specific biomarkers.
- Tumor cell heterogeneity can lead to resistance as not all cells express the target protein at sufficient levels.
Observation:
- Tumor cell populations can downregulate or lose expression of targeted proteins during therapy.
- Dynamic monitoring of protein biomarker expression is crucial for understanding treatment response.
Findings:
- Targeted mass spectrometry provides a quantitative, real-time analysis of multiple therapeutic protein biomarkers.
- This method was demonstrated effectively in a single patient undergoing multiple treatment regimens.
Implications:
- Real-time protein biomarker monitoring allows for dynamic, personalized treatment adjustments.
- Targeted mass spectrometry can guide adaptive therapeutic strategies in oncology.
- This approach has the potential to improve patient outcomes by overcoming treatment resistance.
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