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Identification of low-dose multidrug combinations for sunitinib-naive and pre-treated renal cell carcinoma
Magdalena Rausch1,2, Andrea Weiss1, Joanna Achkhanian1
1Molecular Pharmacology Group, Institute of Pharmaceutical Sciences of Western Switzerland, 1 Rue Michel-Servet, 1211, Geneva 4, Switzerland.
Background:
Combinations of drugs can improve the efficacy of cancer treatment, enable the reduction of side effects and the occurrence of acquired drug resistance.
Methods:
We approached this challenge mathematically by using the validated technology called the Therapeutically Guided Multidrug Optimization (TGMO) method. In a set of genetically distinct human renal cell carcinoma (RCC) cell lines, either treated chronically with sunitinib (-ST) or sunitinib-naive, we identified cell line-specific low-dose-optimised drug combinations (ODC).
Results:
Six cell-type-specific low-dose drug combinations for three sunitinib-naive as well as three sunitinib pre-treated cells were established. These ODCs effectively inhibited the RCC cell metabolic activity while being ineffective in non-cancerous cells. Based on a single screening test and three searches, starting with ten drugs, we identified highly efficacious drug mixtures containing four drugs. All ODCs contained AZD4547 (FGFR signalling pathway inhibitor) and pictilisib (pan-phosphatidylinositol 3-kinase inhibitor), but varied in the third and fourth drug. ODC treatment significantly decreased cell metabolic activity (up to 70%) and induced apoptosis, independent of the pretreatment with sunitinib. The ODCs outperformed sunitinib, the standard care for RCC. Moreover, short-term starvation potentiated the ODC activity. The translation of the 2D-based results to 3D heterotypic co-culture models revealed significant inhibition of the spheroid growth (up to 95%).
Conclusion:
We demonstrate a promising low-dose drug combination development to obtain drug combinations effective in naive as well as resistant tumours. Nevertheless, we emphasise the need for further mechanistic investigation and preclinical development.
Insights
Optimized drug combinations effectively treat renal cell carcinoma (RCC) in both naive and sunitinib-resistant models. These low-dose combinations, identified using the TGMO method, show superior efficacy to sunitinib alone.
Area of Science:
- Oncology
- Pharmacology
- Biotechnology
Background:
- Drug combinations can enhance cancer treatment efficacy and reduce resistance.
- Acquired drug resistance and side effects are challenges in cancer therapy.
Purpose of the Study:
- To identify novel, low-dose drug combinations for renal cell carcinoma (RCC) using a mathematical approach.
- To develop optimized drug combinations (ODCs) effective against both sunitinib-naive and sunitinib-resistant RCC.
Main Methods:
- Utilized the Therapeutically Guided Multidrug Optimization (TGMO) method for mathematical modeling.
- Screened and identified cell line-specific, low-dose drug combinations in distinct human RCC cell lines.
- Validated ODCs in 2D cell cultures and 3D co-culture models, assessing metabolic activity, apoptosis, and spheroid growth.
Main Results:
- Established six distinct low-dose ODCs, each containing AZD4547 and pictilisib, effective against RCC cells but not normal cells.
- ODCs significantly reduced RCC cell metabolic activity (up to 70%) and induced apoptosis, outperforming sunitinib.
- ODCs demonstrated efficacy in 3D models, inhibiting spheroid growth by up to 95%, with potentiated activity under short-term starvation.
Conclusions:
- Demonstrated a viable strategy for developing low-dose drug combinations effective against both naive and resistant tumors.
- Highlighted the potential of ODCs as a promising therapeutic approach for RCC.
- Emphasized the need for further mechanistic studies and preclinical development for clinical translation.
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