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Updated: Jun 25, 2026

Isolation and Culture Expansion of Tumor-specific Endothelial Cells
Published on: October 14, 2015
Tie2 in tumor endothelial signaling and survival: implications for antiangiogenic therapy
1University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
Abstract:
Signaling through the Tie2 receptor on endothelial cells has been shown to play an important role in normal and pathologic vascular development. We generated K1735 murine melanoma tumor cells that inducibly express soluble Tie2 receptor (Tie2Ex) to study the effects of inhibiting Tie2 signaling on tumor vasculature. Tie2Ex induction rapidly decreased AKT activation but not extracellular signal-regulated kinase (ERK) activation in tumor endothelial cells as detected by immunostaining. This was accompanied by an increase in endothelial cell TUNEL staining but no change in Ki-67 expression. Together with a decrease in the percentage of perfused vessels, this suggested that tumor vessel regression and impaired vascular function rather than angiogenesis inhibition was responsible for the delay in tumor growth following Tie2Ex treatment. However, Tie2Ex failed to inhibit the growth of larger, more established K1735 tumors. These tumors were additionally treated with sorafenib, a multikinase inhibitor that inhibits tumor endothelial cell ERK activation but not AKT activation. Combining Tie2Ex and sorafenib decreased both endothelial cell AKT and ERK activation, decreased endothelial cell survival and proliferation, and significantly inhibited growth of the more established tumors. These studies indicate that activity of specific signaling pathways and prosurvival effects are brought about by Tie2 activation in tumor endothelial cells, and knowledge of the effects of Tie2 inhibition can lead to development of more effective therapeutic regimens for inhibiting tumor neovascularization.
Insights
Inhibiting Tie2 receptor signaling in tumor endothelial cells with Tie2Ex caused vessel regression and delayed tumor growth. Combining Tie2Ex with sorafenib further enhanced anti-tumor effects by blocking AKT and ERK pathways.
Area of Science:
- Oncology
- Vascular Biology
- Molecular Signaling
Background:
- Tie2 receptor signaling is crucial for vascular development and tumor angiogenesis.
- Targeting tumor vasculature is a key strategy in cancer therapy.
Purpose of the Study:
- To investigate the effects of inhibiting Tie2 receptor signaling on tumor vasculature and growth.
- To evaluate the combination therapy of Tie2 inhibition and multikinase inhibition for established tumors.
Main Methods:
- Generated K1735 murine melanoma cells inducibly expressing soluble Tie2 receptor (Tie2Ex).
- Assessed endothelial cell signaling (AKT, ERK), apoptosis (TUNEL), proliferation (Ki-67), and vessel perfusion.
- Treated established tumors with Tie2Ex and sorafenib, a multikinase inhibitor.
Main Results:
- Tie2Ex induction decreased AKT activation, increased endothelial cell apoptosis, and reduced vessel perfusion, leading to delayed tumor growth.
- Tie2Ex alone did not inhibit established tumor growth.
- Combined Tie2Ex and sorafenib treatment inhibited both AKT and ERK activation, decreased endothelial cell survival and proliferation, and significantly inhibited established tumor growth.
Conclusions:
- Tie2 activation in tumor endothelial cells promotes specific signaling pathways and survival.
- Inhibiting Tie2 signaling can lead to tumor vessel regression and impaired vascular function.
- Combination therapy targeting both Tie2 and other pathways (like ERK via sorafenib) is effective in controlling established tumor growth.
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