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Updated: Mar 24, 2026

An Orthotopic Bladder Cancer Model for Gene Delivery Studies
Published on: December 1, 2013
ADAM15 Is Functionally Associated with the Metastatic Progression of Human Bladder Cancer
Guadalupe Lorenzatti Hiles1,2,3, Amanda Bucheit4, John R Rubin1,2,3
1Division of Urologic Oncology, Department of Urology, University of Michigan, Ann Arbor, Michigan, United States of America.
Abstract:
ADAM15 is a member of a family of catalytically active disintegrin membrane metalloproteinases that function as molecular signaling switches, shed membrane bound growth factors and/or cleave and inactivate cell adhesion molecules. Aberrant metalloproteinase function of ADAM15 may contribute to tumor progression through the release of growth factors or disruption of cell adhesion. In this study, we utilized human bladder cancer tissues and cell lines to evaluate the expression and function of ADAM15 in the progression of human bladder cancer. Examination of genome and transcriptome databases revealed that ADAM15 ranked in the top 5% of amplified genes and its mRNA was significantly overexpressed in invasive and metastatic bladder cancer compared to noninvasive disease. Immunostaining of a bladder tumor tissue array designed to evaluate disease progression revealed increased ADAM15 immunoreactivity associated with increasing cancer stage and exhibited significantly stronger staining in metastatic samples. About half of the invasive tumors and the majority of the metastatic cases exhibited high ADAM15 staining index, while all low grade and noninvasive cases exhibited negative or low staining. The knockdown of ADAM15 mRNA expression significantly inhibited bladder tumor cell migration and reduced the invasive capacity of bladder tumor cells through MatrigelTM and monolayers of vascular endothelium. The knockdown of ADAM15 in a human xenograft model of bladder cancer inhibited tumor growth by 45% compared to controls. Structural modeling of the catalytic domain led to the design of a novel ADAM15-specific sulfonamide inhibitor that demonstrated bioactivity and significantly reduced the viability of bladder cancer cells in vitro and in human bladder cancer xenografts. Taken together, the results revealed an undescribed role of ADAM15 in the invasion of human bladder cancer and suggested that the ADAM15 catalytic domain may represent a viable therapeutic target in patients with advanced disease.
Insights
ADAM15 (a metalloproteinase) is overexpressed in invasive bladder cancer, promoting tumor cell migration and growth. Inhibiting ADAM15 significantly reduced tumor progression and viability, suggesting it as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- ADAM15 is a metalloproteinase involved in cell signaling and adhesion.
- Aberrant ADAM15 function may drive tumor progression by releasing growth factors or disrupting cell adhesion.
Purpose of the Study:
- To investigate the role of ADAM15 in human bladder cancer progression.
- To evaluate ADAM15 as a potential therapeutic target for bladder cancer.
Main Methods:
- Analysis of ADAM15 expression in human bladder cancer tissues and cell lines using genome/transcriptome databases and immunostaining.
- Knockdown of ADAM15 mRNA to assess its effect on cell migration and invasion.
- Development and testing of an ADAM15-specific inhibitor in vitro and in vivo.
Main Results:
- ADAM15 mRNA was significantly overexpressed in invasive and metastatic bladder cancer.
- Increased ADAM15 immunoreactivity correlated with higher cancer stage and metastasis.
- ADAM15 knockdown inhibited bladder tumor cell migration and invasion.
- ADAM15 inhibition reduced tumor growth in a xenograft model and decreased cancer cell viability.
Conclusions:
- ADAM15 plays a significant role in human bladder cancer invasion and progression.
- The ADAM15 catalytic domain is a potential therapeutic target for advanced bladder cancer.
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