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Induction of Invasive Transitional Cell Bladder Carcinoma in Immune Intact Human MUC1 Transgenic Mice: A Model for Immunotherapy Development
Published on: October 30, 2013
Blocking integrin β1 decreases adhesion in chemoresistant urothelial cancer cell lines
Stefan Vallo1,2, Jochen Rutz2, Miriam Kautsch1,2
1Institute of Medical Virology, University Hospital Frankfurt, D-60596 Frankfurt am Main, Germany.
Abstract:
Treatment failure in metastatic bladder cancer is commonly caused by acquisition of resistance to chemotherapy in association with tumor progression. Since alterations of integrins can influence the adhesive and invasive behaviors of urothelial bladder cancer cell lines, the present study aimed to evaluate the role of integrins in bladder cancer cells with acquired resistance to standard first-line chemotherapy with gemcitabine, and cisplatin. Therefore, four gemcitabine- and four cisplatin-resistant sublines out of a panel of four parental urothelial bladder cancer cell lines (TCC-SUP, HT1376, T24, and 5637) were used. Expression of integrin subunits α3, α5, α6, β1, β3, and β4 was detected using flow cytometry. Adhesion and chemotaxis were analyzed. For functional assays, integrin β1 was attenuated with a blocking antibody. In untreated cells, chemotaxis was upregulated in 3/4 gemcitabine-resistant sublines. In cisplatin-resistant cells, chemotaxis was enhanced in 2/4 cell lines. Acquired chemoresistance induced the upregulation of integrin β1 in all four tested gemcitabine-resistant sublines, as well as an upregulation in 3/4 cisplatin-resistant sublines compared with parental cell lines. Following the inhibition of integrin β1, adhesion to extracellular matrix components was downregulated in 3/4 gemcitabine-resistant sublines and in all four tested cisplatin-resistant sublines. Since integrin β1 is frequently upregulated in chemoresistant urothelial cancer cell lines and inhibition of integrin β1 may influence adhesion, further studies are warranted to evaluate integrin β1 as a potential therapeutic target for bladder cancer in vivo.
Insights
Acquired chemoresistance in bladder cancer cells increases integrin β1 expression, affecting cell adhesion and migration. Targeting integrin β1 may offer a new therapeutic strategy for resistant urothelial cancers.
Area of Science:
- Oncology
- Cell Biology
- Cancer Research
Background:
- Metastatic bladder cancer treatment failure is often due to chemotherapy resistance and tumor progression.
- Integrin alterations impact the adhesive and invasive properties of urothelial bladder cancer cells.
Purpose of the Study:
- To investigate the role of integrins in bladder cancer cells that have developed resistance to gemcitabine and cisplatin chemotherapy.
- To evaluate how acquired chemoresistance influences integrin expression, cell adhesion, and chemotaxis.
Main Methods:
- Generated gemcitabine- and cisplatin-resistant sublines from four parental urothelial bladder cancer cell lines.
- Analyzed expression of integrin subunits (α3, α5, α6, β1, β3, β4) via flow cytometry.
- Assessed cell adhesion and chemotaxis, and inhibited integrin β1 using a blocking antibody.
Main Results:
- Chemoresistance upregulated chemotaxis in some resistant sublines.
- Integrin β1 was upregulated in all gemcitabine-resistant and most cisplatin-resistant sublines.
- Inhibiting integrin β1 reduced adhesion to extracellular matrix components in resistant cells.
Conclusions:
- Acquired chemoresistance in urothelial cancer cells is associated with increased integrin β1 expression.
- Integrin β1 inhibition impacts cell adhesion, suggesting its potential as a therapeutic target.
- Further in vivo studies are needed to validate integrin β1 as a therapeutic target for bladder cancer.
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