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Updated: Jun 6, 2026

Monitoring Functionality and Morphology of Vasculature Recruited by Factors Secreted by Fast-growing Tumor-generating Cells
Published on: November 23, 2014
Combination of Dll4/Notch and Ephrin-B2/EphB4 targeted therapy is highly effective in disrupting tumor angiogenesis
Dusan Djokovic1, Alexandre Trindade, Joana Gigante
1Department of Pathology, University of Southern California, Los Angeles, USA.
Background:
Dll4/Notch and Ephrin-B2/EphB4 pathways play critical roles in tumor vessel development and maturation. This study evaluates the efficacy of the inhibition of both signaling pathways, alone and in combination, in reducing the growth of an autochthonous mouse tumor and assesses potential adverse effects.
Methods:
We used the transgenic RIP1-Tag2 tumor model to study the effects of 1) inhibition of Dll4/Notch by either Dll4 allelic deletion or use of a soluble extracellular Dll4 (sDll4), 2) inhibition of Ephrin-B2/EphB4 signaling by a soluble extracellular EphB4 fused to albumin (sEphB4-Alb), and 3) inhibition of both pathways by sEphB4-Alb combined with either Dll4 allelic deletion or sDll4. To investigate adverse effects, we used inducible endothelial-specific Dll4 knock-out mice, treated with sEphB4-Alb, and carried out histopathological analysis.
Results:
Dll4 allele deletion or soluble Dll4 treatment resulted in increased tumor vessel density, reduced mural cell recruitment and vessel perfusion which resulted in reduced tumor size. The soluble EphB4 instead reduced vessel density and vessel perfusion, leading to reduction of tumor size. Greater efficacy was observed when sEphB4-Alb was combined with either Dll4 allele deletion or sDll4 in regards to tumor size, vessel perfusion and mural cell recruitment. Induced endothelial specific Dll4 loss-of-function caused hepatic vascular alterations, which were prevented by concomitant sEphB4-Alb treatment.
Conclusion:
Combination targeting of Dll4/Notch and Ephrin-B2/EphB4 has potential for clinical investigation, providing cumulative efficacy and increased safety over Dll4/Notch inhibition alone.
Insights
Combining Dll4/Notch and Ephrin-B2/EphB4 pathway inhibition effectively reduces tumor growth and improves safety. This dual-targeting strategy shows greater efficacy than inhibiting Dll4/Notch alone in preclinical models.
Area of Science:
- Oncology
- Vascular Biology
- Molecular Signaling
Background:
- Dll4/Notch and Ephrin-B2/EphB4 pathways are crucial for tumor blood vessel development and maturation.
- Understanding the interplay of these pathways is key to developing effective anti-cancer therapies.
Purpose of the Study:
- To evaluate the efficacy of inhibiting Dll4/Notch and Ephrin-B2/EphB4 signaling pathways, individually and in combination, on tumor growth.
- To assess potential adverse effects associated with these targeted inhibitions.
Main Methods:
- Utilized the transgenic RIP1-Tag2 mouse tumor model.
- Investigated Dll4/Notch inhibition via Dll4 allelic deletion or soluble Dll4 (sDll4).
- Studied Ephrin-B2/EphB4 inhibition using soluble EphB4 fused to albumin (sEphB4-Alb).
- Assessed combined pathway inhibition and adverse effects using inducible endothelial-specific Dll4 knock-out mice.
Main Results:
- Dll4 inhibition increased vessel density but reduced mural cell recruitment and perfusion, decreasing tumor size.
- EphB4 inhibition reduced vessel density and perfusion, also decreasing tumor size.
- Combination therapy demonstrated superior efficacy in reducing tumor size and improving vessel perfusion and mural cell recruitment.
- Induced Dll4 deficiency caused hepatic vascular alterations, mitigated by sEphB4-Alb treatment.
Conclusions:
- Combined targeting of Dll4/Notch and Ephrin-B2/EphB4 pathways offers synergistic anti-tumor efficacy.
- Combination therapy presents a potentially safer and more effective approach compared to Dll4/Notch inhibition alone.
- This dual-pathway inhibition strategy warrants further clinical investigation for cancer treatment.
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