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Published on: August 25, 2021
Structurally diverse MDM2-p53 antagonists act as modulators of MDR-1 function in neuroblastoma
L Chen1, Y Zhao1, G C Halliday1
1Newcastle Cancer Centre, Northern Institute for Cancer Research, Newcastle University, Newcastle upon Tyne NE2 4HH, UK.
Background:
A frequent mechanism of acquired multidrug resistance in human cancers is overexpression of ATP-binding cassette transporters such as the Multi-Drug Resistance Protein 1 (MDR-1). Nutlin-3, an MDM2-p53 antagonist, has previously been reported to be a competitive MDR-1 inhibitor.
Methods:
This study assessed whether the structurally diverse MDM2-p53 antagonists, MI-63, NDD0005, and RG7388 are also able to modulate MDR-1 function, particularly in p53 mutant neuroblastoma cells, using XTT-based cell viability assays, western blotting, and liquid chromatography-mass spectrometry analysis.
Results:
Verapamil and the MDM2-p53 antagonists potentiated vincristine-mediated growth inhibition in a concentration-dependent manner when used in combination with high MDR-1-expressing p53 mutant neuroblastoma cell lines at concentrations that did not affect the viability of cells when given alone. Liquid chromatography-mass spectrometry analyses showed that verapamil, Nutlin-3, MI-63 and NDD0005, but not RG7388, led to increased intracellular levels of vincristine in high MDR-1-expressing cell lines.
Conclusions:
These results show that in addition to Nutlin-3, other structurally unrelated MDM2-p53 antagonists can also act as MDR-1 inhibitors and reverse MDR-1-mediated multidrug resistance in neuroblastoma cell lines in a p53-independent manner. These findings are important for future clinical trial design with MDM2-p53 antagonists when used in combination with agents that are MDR-1 substrates.
Insights
MDM2-p53 antagonists, besides Nutlin-3, can inhibit the Multi-Drug Resistance Protein 1 (MDR-1) transporter. This finding helps overcome multidrug resistance in neuroblastoma, independent of p53 status.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Multidrug resistance (MDR) in cancers often involves ATP-binding cassette transporters like Multi-Drug Resistance Protein 1 (MDR-1).
- Nutlin-3, an MDM2-p53 antagonist, has shown potential as an MDR-1 inhibitor.
Purpose of the Study:
- To investigate if other MDM2-p53 antagonists (MI-63, NDD0005, RG7388) can modulate MDR-1 function.
- To assess this modulation in p53 mutant neuroblastoma cells.
Main Methods:
- Utilized XTT-based cell viability assays.
- Employed western blotting.
- Conducted liquid chromatography-mass spectrometry analysis.
Main Results:
- MDM2-p53 antagonists potentiated vincristine's growth inhibition in MDR-1-high neuroblastoma cells.
- Verapamil, Nutlin-3, MI-63, and NDD0005 increased intracellular vincristine levels, unlike RG7388.
- These effects were observed at non-cytotoxic concentrations for the antagonists alone.
Conclusions:
- Structurally diverse MDM2-p53 antagonists can inhibit MDR-1.
- These compounds can reverse MDR-1-mediated drug resistance in neuroblastoma cells, irrespective of p53 status.
- Findings are crucial for designing clinical trials involving MDM2-p53 antagonists and MDR-1 substrates.
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