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Published on: July 25, 2011
Manipulating the EphB4-ephrinB2 axis to reduce metastasis in HNSCC
Khalid N M Abdelazeem1,2, Diemmy Nguyen1, Sophia Corbo1
1Department of Radiation Oncology, University of Colorado Denver, Anschutz Medical Campus, Aurora, CO, USA.
Abstract:
The EphB4-ephrinB2 signaling axis has been heavily implicated in metastasis across numerous cancer types. Our emerging understanding of the dichotomous roles that EphB4 and ephrinB2 play in head and neck squamous cell carcinoma (HNSCC) poses a significant challenge to rational drug design. We find that EphB4 knockdown in cancer cells enhances metastasis in preclinical HNSCC models by augmenting immunosuppressive cells like T regulatory cells (Tregs) within the tumor microenvironment. EphB4 inhibition in cancer cells also amplifies their ability to metastasize through increased expression of genes associated with hallmark pathways of metastasis along with classical and non-classical epithelial-mesenchymal transition. In contrast, vascular ephrinB2 knockout coupled with radiation therapy (RT) enhances anti-tumor immunity, reduces Treg accumulation into the tumor, and decreases metastasis. Notably, targeting the EphB4-ephrinB2 signaling axis with the engineered ligands ephrinB2-Fc-His and Fc-TNYL-RAW-GS reduces local tumor growth and distant metastasis in a preclinical model of HNSCC. Our data suggests that targeted inhibition of vascular ephrinB2 while avoiding inhibition of EphB4 in cancer cells could be a promising strategy to mitigate HNSCC metastasis.
Insights
Targeting EphB4 in head and neck cancer cells promotes metastasis, while inhibiting vascular ephrinB2 reduces tumor growth and spread. This suggests a dual approach to combat head and neck squamous cell carcinoma (HNSCC) metastasis.
Area of Science:
- Oncology
- Cancer Biology
- Immunology
Background:
- The EphB4-ephrinB2 signaling pathway is crucial in cancer metastasis.
- Its role in head and neck squamous cell carcinoma (HNSCC) is complex, presenting challenges for drug development.
Purpose of the Study:
- To investigate the distinct roles of EphB4 and ephrinB2 in HNSCC metastasis.
- To identify potential therapeutic strategies targeting this signaling axis.
Main Methods:
- Preclinical HNSCC models were used.
- EphB4 knockdown in cancer cells was performed.
- Vascular ephrinB2 knockout was combined with radiation therapy (RT).
- Engineered ligands targeting the EphB4-ephrinB2 axis were tested.
Main Results:
- EphB4 knockdown in cancer cells increased metastasis by augmenting immunosuppressive T regulatory cells (Tregs).
- EphB4 inhibition in cancer cells promoted metastasis via epithelial-mesenchymal transition pathways.
- Vascular ephrinB2 knockout with RT enhanced anti-tumor immunity and reduced metastasis.
- Targeted inhibition using engineered ligands reduced tumor growth and metastasis.
Conclusions:
- EphB4 and ephrinB2 have dichotomous roles in HNSCC metastasis.
- Inhibiting vascular ephrinB2 while sparing EphB4 in cancer cells may be a viable strategy to reduce HNSCC metastasis.
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