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Drug screening in human physiologic medium identifies uric acid as an inhibitor of rigosertib efficacy
Vipin Rawat1, Patrick DeLear2, Prarthana Prashanth1
1Department of Physiology and Biophysics, University of Illinois College of Medicine, University of Illinois Cancer Center, Chicago, Illinois, USA.
Abstract:
The nonphysiological nutrient levels found in traditional culture media have been shown to affect numerous aspects of cancer cell physiology, including how cells respond to certain therapeutic agents. Here, we comprehensively evaluated how physiological nutrient levels affect therapeutic response by performing drug screening in human plasma-like medium. We observed dramatic nutrient-dependent changes in sensitivity to a variety of FDA-approved and clinically trialed compounds, including rigosertib, an experimental cancer therapeutic that recently failed in phase III clinical trials. Mechanistically, we found that the ability of rigosertib to destabilize microtubules is strongly inhibited by the purine metabolism end product uric acid, which is uniquely abundant in humans relative to traditional in vitro and in vivo cancer models. These results demonstrate the broad and dramatic effects nutrient levels can have on drug response and how incorporation of human-specific physiological nutrient medium might help identify compounds whose efficacy could be influenced in humans.
Insights
Cancer drug effectiveness dramatically changes with nutrient levels. Physiological conditions, like human plasma, revealed new insights into drug response, potentially improving future cancer therapeutics.
Area of Science:
- Cancer Biology
- Pharmacology
- Cellular Physiology
Background:
- Traditional cell culture media use nonphysiological nutrient levels.
- These nutrient levels can alter cancer cell responses to therapies.
Purpose of the Study:
- To evaluate how physiological nutrient levels impact cancer therapeutic response.
- To identify nutrient-dependent drug sensitivities using human plasma-like medium.
Main Methods:
- Performed drug screening using a human plasma-like medium.
- Assessed sensitivity changes to various FDA-approved and clinically trialed compounds.
Main Results:
- Observed significant nutrient-dependent alterations in drug sensitivity.
- Identified uric acid (a purine metabolism product) inhibiting rigosertib's microtubule destabilization.
- Rigosertib efficacy was influenced by human-specific physiological nutrient levels.
Conclusions:
- Nutrient levels profoundly affect cancer drug response.
- Human-specific physiological media can reveal drug efficacies relevant to human patients.
- This approach may help identify compounds whose efficacy is influenced by human physiology.
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