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Published on: October 30, 2013
Bladder Cancer Metastasis Induced by Chronic Everolimus Application Can Be Counteracted by Sulforaphane In Vitro
Saira Justin1, Jochen Rutz1, Sebastian Maxeiner1
1Department of Urology, Goethe-University, 60323 Frankfurt am Main, Germany.
Abstract:
Chronic treatment with the mTOR inhibitor, everolimus, fails long-term in preventing tumor growth and dissemination in cancer patients. Thus, patients experiencing treatment resistance seek complementary measures, hoping to improve therapeutic efficacy. This study investigated metastatic characteristics of bladder carcinoma cells exposed to everolimus combined with the isothiocyanate sulforaphane (SFN), which has been shown to exert cancer inhibiting properties. RT112, UMUC3, or TCCSUP bladder carcinoma cells were exposed short- (24 h) or long-term (8 weeks) to everolimus (0.5 nM) or SFN (2.5 µM), alone or in combination. Adhesion and chemotaxis along with profiling details of CD44 receptor variants (v) and integrin α and β subtypes were evaluated. The functional impact of CD44 and integrins was explored by blocking studies and siRNA knock-down. Long-term exposure to everolimus enhanced chemotactic activity, whereas long-term exposure to SFN or the SFN-everolimus combination diminished chemotaxis. CD44v4 and v7 increased on RT112 cells following exposure to SFN or SFN-everolimus. Up-regulation of the integrins α6, αV, and β1 and down-regulation of β4 that was present with everolimus alone could be prevented by combining SFN and everolimus. Down-regulation of αV, β1, and β4 reduced chemotactic activity, whereas knock-down of CD44 correlated with enhanced chemotaxis. SFN could, therefore, inhibit resistance-related tumor dissemination during everolimus-based bladder cancer treatment.
Insights
Sulforaphane (SFN) combined with everolimus may overcome treatment resistance in bladder cancer. SFN inhibits tumor cell chemotaxis and dissemination, potentially improving therapeutic outcomes when everolimus therapy fails long-term.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Chronic mTOR inhibitor (everolimus) treatment often fails long-term in cancer patients due to resistance.
- Patients seek complementary therapies to enhance the efficacy of existing treatments.
Purpose of the Study:
- To investigate the metastatic characteristics of bladder carcinoma cells treated with everolimus and sulforaphane (SFN).
- To evaluate the combined effects of everolimus and SFN on cell adhesion, chemotaxis, and receptor expression.
Main Methods:
- Bladder carcinoma cell lines (RT112, UMUC3, TCCSUP) were exposed short- and long-term to everolimus, SFN, or their combination.
- Assessed cell adhesion, chemotaxis, CD44 variants, and integrin subtypes.
- Utilized blocking studies and siRNA knock-down to explore functional impacts.
Main Results:
- Long-term everolimus increased cell chemotaxis; SFN and SFN-everolimus combination decreased it.
- SFN or SFN-everolimus increased CD44v4 and v7 expression.
- SFN-everolimus prevented everolimus-induced integrin up/down-regulation, mitigating reduced chemotaxis.
Conclusions:
- SFN can inhibit resistance-related tumor dissemination in bladder cancer during everolimus treatment.
- Combining SFN with everolimus shows potential to overcome treatment resistance and improve therapeutic efficacy.

