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Published on: March 23, 2016
Clinical Utility of an Ex Vivo Functional Test in Personalized Cancer Treatment
Vered Bar1, Adi Zundelevich1, Nancy Gavert2
1Curesponse, Ltd., Rehovot 7670101, Israel.
Abstract:
Background/Objectives: Providing optimized and accurate treatment to cancer patients remains a major challenge in oncology care. The emergence of precision medicine tools to match the correct therapy to the patient has significantly advanced treatment modalities in the last few years. While genomics has been shown to be critical in selecting targeted therapies for a specific somatic mutation, the overall clinical benefit of broad genomic sequencing has been found lacking. Here, we evaluate the utility of our previously clinically validated ex vivo functional assay across different treatment scenarios, demonstrating its ability to transform predicted non-responders into predicted responders, rule out ineffective treatments, provide multiple treatment options, and validate physician choices. Methods: The evaluation was performed on a post-market surveillance study analyzing 312 patients, from which 278 patients had successful test reports (an 89.1% test success rate), with clinical outcomes available from 45 of those patients. Results: We show that in the group of patients with clinical response data, the tests yield a PPV of 91.18% and NPV of 90.91% with clinical utility impacting physician decision in 51.1% of cases. Further analysis of the entire cohort showed the potential of clinical utility to reach up to 59.3% on a large group of patients. Conclusions: The accurate prediction of patient response using the test suggests the potential for the platform to improve patient treatment in clinical practice by reducing ineffective drug use and optimizing personalized patient drug regiments.
Insights
This study shows an ex vivo functional assay can accurately predict cancer patient response to treatments, transforming non-responders into responders and improving personalized medicine. The assay demonstrated high predictive values and clinical utility in guiding treatment decisions.
Area of Science:
- Oncology
- Precision Medicine
- Cancer Genomics
Background:
- Optimized cancer treatment is challenging, despite advances in precision medicine.
- Genomic sequencing's clinical benefit for targeted therapy selection is often limited.
- An ex vivo functional assay was evaluated for its utility in cancer treatment selection.
Purpose of the Study:
- To evaluate the clinical utility of a validated ex vivo functional assay.
- To assess the assay's ability to predict patient response to various cancer therapies.
- To demonstrate the assay's potential to optimize personalized treatment regimens.
Main Methods:
- A post-market surveillance study analyzed 312 cancer patients.
- Clinical outcomes were available for 45 patients with successful test reports (89.1% success rate).
- The assay's predictive accuracy (PPV, NPV) and clinical utility were assessed.
Main Results:
- The assay achieved a positive predictive value (PPV) of 91.18% and a negative predictive value (NPV) of 90.91% in patients with clinical response data.
- Clinical utility impacted physician decisions in 51.1% of cases.
- Potential clinical utility across the entire cohort was estimated at 59.3%.
Conclusions:
- The ex vivo functional assay accurately predicts patient response to cancer treatments.
- The platform shows potential to improve patient outcomes by reducing ineffective drug use.
- The assay can optimize personalized drug regimens in clinical practice.

