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Updated: May 12, 2026

Identification and Characterization of Metastatic Factors by Gene Transfer into the Novel RIP-Tag; RIP-tva Murine Model
Published on: October 16, 2017
Inhibition of c-Met reduces lymphatic metastasis in RIP-Tag2 transgenic mice
Barbara Sennino1, Toshina Ishiguro-Oonuma, Brian J Schriver
1Department of Anatomy, Comprehensive Cancer Center, Cardiovascular Research Institute, University of California-San Francisco, San Francisco, CA 94143, USA.
Abstract:
Inhibition of VEGF signaling can promote lymph node metastasis in preclinical models, but the mechanism is not fully understood, and successful methods of prevention have not been found. Signaling of hepatocyte growth factor (HGF) and its receptor c-Met can promote the growth of lymphatics and metastasis of some tumors. We sought to explore the contributions of c-Met signaling to lymph node metastasis after inhibition of VEGF signaling. In particular, we examined whether c-Met is upregulated in lymphatics in or near pancreatic neuroendocrine tumors in RIP-Tag2 transgenic mice and whether lymph node metastasis can be reduced by concurrent inhibition of VEGF and c-Met signaling. Inhibition of VEGF signaling by anti-VEGF antibody or sunitinib in mice from the age of 14 to 17 weeks was accompanied by more intratumoral lymphatics, more tumor cells inside lymphatics, and more lymph node metastases. Under these conditions, lymphatic endothelial cells, like tumor cells, had strong immunoreactivity for c-Met and phospho-c-Met. c-Met blockade by the selective inhibitor, PF-04217903, significantly reduced metastasis to local lymph nodes. Together, these results indicate that inhibition of VEGF signaling in RIP-Tag2 mice upregulates c-Met expression in lymphatic endothelial cells, increases the number of intratumoral lymphatics and number of tumor cells within lymphatics, and promotes metastasis to local lymph nodes. Prevention of lymph node metastasis by PF-04217903 in this setting implicates c-Met signaling in tumor cell spread to lymph nodes.
Insights
Inhibiting vascular endothelial growth factor (VEGF) signaling may increase lymph node metastasis by upregulating c-Met. Blocking c-Met signaling with PF-04217903 effectively prevented this spread in preclinical models.
Area of Science:
- Oncology
- Cancer Metastasis
- Molecular Biology
Background:
- VEGF signaling inhibition can paradoxically promote lymph node metastasis.
- The underlying mechanisms and preventative strategies remain unclear.
- Hepatocyte growth factor (HGF)/c-Met signaling is implicated in lymphatic growth and tumor metastasis.
Purpose of the Study:
- To investigate the role of c-Met signaling in lymph node metastasis following VEGF inhibition.
- To determine if c-Met is upregulated in lymphatics near tumors in a preclinical model.
- To evaluate the efficacy of combined VEGF and c-Met inhibition in preventing metastasis.
Main Methods:
- Utilized RIP-Tag2 transgenic mice with pancreatic neuroendocrine tumors.
- Administered anti-VEGF antibody or sunitinib to inhibit VEGF signaling.
- Assessed c-Met and phospho-c-Met expression in lymphatic endothelial cells and tumor cells.
- Blocked c-Met signaling using the selective inhibitor PF-04217903.
Main Results:
- VEGF inhibition led to increased intratumoral lymphatics, tumor cells within lymphatics, and lymph node metastases.
- c-Met and phospho-c-Met were upregulated in lymphatic endothelial cells under VEGF inhibition.
- Concurrent c-Met blockade with PF-04217903 significantly reduced lymph node metastasis.
Conclusions:
- VEGF inhibition upregulates c-Met in lymphatic endothelial cells, promoting lymph node metastasis.
- c-Met signaling is a key driver of tumor cell spread to lymph nodes in this model.
- Targeting c-Met represents a potential strategy to prevent lymph node metastasis after VEGF inhibition.
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