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Silybin counteracts doxorubicin resistance by inhibiting GLUT1 expression
Daniela Catanzaro1, Daniela Gabbia1, Veronica Cocetta1
1Department of Pharmaceutical and Pharmacological Sciences, University of Padova, 35131 Padova, Italy.
Abstract:
Despite significant advances in the diagnosis and treatment of cancer, the development of drug resistance still remains one of the principal causes that hampers the effectiveness of the therapy. Emerging evidences support the idea that the dysregulated metabolism could be related to drug resistance. The major goal of this study was to target cancer metabolic pathways using new pharmacological approaches coming from natural sources in order to possibly prevent or overcome this phenomenon. Firstly, the metabolic profile of human colorectal adenocarcinoma cells sensitive (LoVo WT) and resistant to doxorubicin (LoVo DOX) was delineated demonstrating that resistant cells remodel their metabolism toward a glycolytic phenotype. In particular it was observed that doxorubicin-resistant cancer cells exhibit an increased dependency from glucose for their survival, associated with overexpression of the glycolytic pathway. Moreover, both GLUT1 mRNA and protein expression significantly increased in LoVo DOX cells. Given the results about the metabolic profile, silybin, modulator of GLUTs, was selected as potential candidate to overcome doxorubicin resistance and, intriguingly, data revealed not only that silybin is more active in resistant cells than in wild type cells, but also that the combined treatment with doxorubicin and silybin presents a synergistic effect in LoVo DOX cells. Although many unanswered questions still remain about the molecular mechanism of silybin, these data suggest that targeting GLUTs may be a good strategy to restore doxorubicin sensitivity and elude drug resistance.
Insights
Drug-resistant cancer cells exhibit altered metabolism, relying more on glucose. Silybin, a natural compound, shows promise in overcoming doxorubicin resistance by targeting glucose transporters (GLUTs).
Area of Science:
- Oncology
- Cancer Metabolism
- Pharmacology
Background:
- Drug resistance significantly limits cancer therapy effectiveness.
- Dysregulated cellular metabolism is increasingly linked to cancer drug resistance.
- Targeting metabolic pathways offers a potential strategy to overcome resistance.
Purpose of the Study:
- To investigate the metabolic profile of doxorubicin-resistant colorectal cancer cells.
- To explore natural compounds as pharmacological agents to combat drug resistance.
- To evaluate silybin's potential in overcoming doxorubicin resistance.
Main Methods:
- Metabolic profiling of sensitive (LoVo WT) and doxorubicin-resistant (LoVo DOX) colorectal adenocarcinoma cells.
- Analysis of glucose dependency and glycolytic pathway gene expression.
- Assessment of silybin's activity alone and in combination with doxorubicin.
Main Results:
- Resistant cells displayed a shift towards a glycolytic phenotype with increased glucose dependency.
- Doxorubicin-resistant cells showed overexpression of glucose transporter 1 (GLUT1) mRNA and protein.
- Silybin demonstrated higher activity in resistant cells and synergized with doxorubicin to overcome resistance.
Conclusions:
- Targeting glucose metabolism, specifically GLUTs, may restore sensitivity to doxorubicin.
- Silybin represents a potential therapeutic agent for overcoming drug resistance in colorectal cancer.
- Further research is needed to elucidate the precise molecular mechanisms of silybin's action.