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Updated: Jul 7, 2026

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
ADAM15 supports prostate cancer metastasis by modulating tumor cell-endothelial cell interaction
Abdo J Najy1, Kathleen C Day, Mark L Day
1Department of Urology, Program in Cellular and Molecular Biology, University of Michigan, Ann Arbor, Michigan 48109-0944, USA.
Abstract:
Using human tumor and cDNA microarray technology, we have recently shown that the ADAM15 disintegrin is significantly overexpressed during the metastatic progression of human prostate cancer. In the current study, we used lentiviral-based short hairpin RNA (shRNA) technology to down-regulate ADAM15 in the metastatic prostate cancer cell line, PC-3. ADAM15 down-regulation dramatically attenuated many of the malignant characteristics of PC-3 cells in vitro and prevented the s.c. growth of PC-3 cells in severe combined immunodeficient (SCID) mice. By inhibiting the expression of ADAM15 in PC-3 cells, we showed decreased cell migration and adhesion to specific extracellular matrix proteins. This was accompanied by a reduction in the cleavage of N-cadherin by ADAM15 at the cell surface. Fluorescence-activated cell sorting analysis revealed reduced cell surface expression of the metastasis-associated proteins alpha(v) integrin and CD44. Furthermore, matrix metalloproteinase 9 secretion and activity were abrogated in response to ADAM15 reduction. In an in vitro model of vascular invasion, loss of ADAM15 reduced PC-3 adhesion to, and migration through, vascular endothelial cell monolayers. Using an SCID mouse model of human prostate cancer metastasis, we found that the loss of ADAM15 significantly attenuated the metastatic spread of PC-3 cells to bone. Taken together, these data strongly support a functional role for ADAM15 in prostate tumor cell interaction with vascular endothelium and the metastatic progression of human prostate cancer.
Insights
ADAM15 (ADAM15) overexpression drives prostate cancer metastasis. Inhibiting ADAM15 reduces tumor cell migration, adhesion, and spread to bone, suggesting it is a key driver of prostate cancer progression.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- ADAM15 (ADAM15) disintegrin is overexpressed in metastatic prostate cancer.
- This overexpression correlates with disease progression.
Purpose of the Study:
- To investigate the functional role of ADAM15 in prostate cancer metastasis.
- To determine if down-regulating ADAM15 can inhibit cancer cell malignancy and metastasis.
Main Methods:
- Used lentiviral-based short hairpin RNA (shRNA) to down-regulate ADAM15 in PC-3 prostate cancer cells.
- Assessed effects on cell migration, adhesion, N-cadherin cleavage, integrin and CD44 expression, MMP-9 activity, and vascular invasion in vitro.
- Evaluated metastatic spread in severe combined immunodeficient (SCID) mice models.
Main Results:
- ADAM15 down-regulation attenuated PC-3 cell malignancy in vitro, reducing migration and adhesion.
- Inhibition of ADAM15 decreased N-cadherin cleavage and cell surface expression of alpha(v) integrin and CD44.
- Reduced ADAM15 abrogated matrix metalloproteinase 9 secretion and activity, inhibited vascular invasion, and significantly attenuated bone metastasis in SCID mice.
Conclusions:
- ADAM15 plays a crucial role in prostate cancer cell interaction with vascular endothelium.
- ADAM15 is a significant driver of prostate cancer metastasis, particularly to bone.
- Targeting ADAM15 may represent a therapeutic strategy for inhibiting prostate cancer progression.
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