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A Platform for Rapid, Quantitative Assessment of Multiple Drug Combinations Simultaneously in Solid Tumors In Vivo
Joyoti Dey1, William S Kerwin1, Marc O Grenley1
1Presage Biosciences, Inc., Seattle, Washington, United States of America.
Abstract:
While advances in high-throughput screening have resulted in increased ability to identify synergistic anti-cancer drug combinations, validation of drug synergy in the in vivo setting and prioritization of combinations for clinical development remain low-throughput and resource intensive. Furthermore, there is currently no viable method for prospectively assessing drug synergy directly in human patients in order to potentially tailor therapies. To address these issues we have employed the previously described CIVO platform and developed a quantitative approach for investigating multiple combination hypotheses simultaneously in single living tumors. This platform provides a rapid, quantitative and cost effective approach to compare and prioritize drug combinations based on evidence of synergistic tumor cell killing in the live tumor context. Using a gemcitabine resistant model of pancreatic cancer, we efficiently investigated nine rationally selected Abraxane-based combinations employing only 19 xenografted mice. Among the drugs tested, the BCL2/BCLxL inhibitor ABT-263 was identified as the one agent that synergized with Abraxane® to enhance acute induction of localized apoptosis in this model of human pancreatic cancer. Importantly, results obtained with CIVO accurately predicted the outcome of systemic dosing studies in the same model where superior tumor regression induced by the Abraxane/ABT-263 combination was observed compared to that induced by either single agent. This supports expanded use of CIVO as an in vivo platform for expedited in vivo drug combination validation and sets the stage for performing toxicity-sparing drug combination studies directly in cancer patients with solid malignancies.
Insights
Researchers developed a new platform to rapidly test anti-cancer drug combinations in living tumors. This approach identified a synergistic combination of Abraxane and ABT-263 for pancreatic cancer, accelerating drug validation.
Area of Science:
- Oncology
- Pharmacology
- Biotechnology
Background:
- Identifying synergistic anti-cancer drug combinations is crucial but challenging.
- Current methods for in vivo validation and clinical prioritization are slow and costly.
- There's a need for prospective methods to assess drug synergy in patients.
Purpose of the Study:
- To develop a rapid, quantitative, and cost-effective platform for in vivo drug combination testing.
- To investigate multiple combination hypotheses simultaneously in single living tumors.
- To validate drug synergy and prioritize combinations for clinical development.
Main Methods:
- Utilized the CIVO platform for simultaneous investigation of drug combinations in vivo.
- Tested nine Abraxane-based combinations in a gemcitabine-resistant pancreatic cancer xenograft model.
- Assessed synergistic tumor cell killing and induction of apoptosis.
Main Results:
- Identified a synergistic combination of Abraxane and the BCL2/BCLxL inhibitor ABT-263.
- Demonstrated enhanced acute induction of localized apoptosis in pancreatic cancer models.
- CIVO results accurately predicted superior tumor regression in systemic dosing studies.
Conclusions:
- The CIVO platform offers an expedited approach for in vivo drug combination validation.
- This method can prioritize drug combinations for clinical development.
- The platform may enable toxicity-sparing drug combination studies directly in cancer patients.
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