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Non-Coding Micro RNAs and Hypoxia-Inducible Factors Are Selenium Targets for Development of a Mechanism-Based
Youcef M Rustum1,2, Sreenivasulu Chintala3, Farukh A Durrani4
1Department of Internal Medicine, University of Iowa, Iowa City, IA 52242, USA. Youcef.Rustum@Roswellpark.org.
Abstract:
Durable response, inherent or acquired resistance, and dose-limiting toxicities continue to represent major barriers in the treatment of patients with advanced clear-cell renal cell carcinoma (ccRCC). The majority of ccRCC tumors are characterized by the loss of Von Hippel⁻Lindau tumor suppressor gene function, a stable expression of hypoxia-inducible factors 1α and 2α (HIFs), an altered expression of tumor-specific oncogenic microRNAs (miRNAs), a clear cytoplasm with dense lipid content, and overexpression of thymidine phosphorylase. The aim of this manuscript was to confirm that the downregulation of specific drug-resistant biomarkers deregulated in tumor cells by a defined dose and schedule of methylselenocysteine (MSC) or seleno-l-methionine (SLM) sensitizes tumor cells to mechanism-based drug combination. The inhibition of HIFs by selenium was necessary for optimal therapeutic benefit. Durable responses were achieved only when MSC was combined with sunitinib (a vascular endothelial growth factor receptor (VEGFR)-targeted biologic), topotecan (a topoisomerase 1 poison and HIF synthesis inhibitor), and S-1 (a 5-fluorouracil prodrug). The documented synergy was selenium dose- and schedule-dependent and associated with enhanced prolyl hydroxylase-dependent HIF degradation, stabilization of tumor vasculature, downregulation of 28 oncogenic miRNAs, as well as the upregulation of 12 tumor suppressor miRNAs. The preclinical results generated provided the rationale for the development of phase 1/2 clinical trials of SLM in sequential combination with axitinib in ccRCC patients refractory to standard therapies.
Insights
Selenium compounds like methylselenocysteine (MSC) and seleno-l-methionine (SLM) can sensitize advanced clear-cell renal cell carcinoma (ccRCC) tumors to combination therapies by inhibiting hypoxia-inducible factors (HIFs). This approach shows promise for overcoming treatment resistance in ccRCC.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Advanced clear-cell renal cell carcinoma (ccRCC) presents significant treatment challenges due to resistance and toxicity.
- ccRCC tumors often exhibit Von Hippel-Lindau gene loss, stable hypoxia-inducible factors (HIFs), and altered microRNA (miRNA) expression.
Purpose of the Study:
- To investigate if methylselenocysteine (MSC) or seleno-l-methionine (SLM) can downregulate drug-resistant biomarkers in ccRCC.
- To determine if selenium compounds sensitize ccRCC cells to combination therapies by inhibiting HIFs.
Main Methods:
- Treatment of ccRCC cells with defined doses and schedules of MSC or SLM.
- Combination therapy with sunitinib, topotecan, and S-1.
- Assessment of HIF degradation, miRNA expression, and tumor vasculature.
Main Results:
- Selenium compounds inhibited HIFs, which was crucial for therapeutic benefit.
- MSC combined with sunitinib, topotecan, and S-1 achieved durable responses.
- Synergy was dependent on selenium dose and schedule, leading to HIF degradation and miRNA modulation.
Conclusions:
- Selenium compounds can sensitize ccRCC to combination therapy by targeting HIFs and specific miRNAs.
- Preclinical findings support clinical trials combining SLM with axitinib for refractory ccRCC.
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