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Updated: Jun 3, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Targeting tumor vasculature with novel Listeria-based vaccines directed against CD105
Laurence M Wood1, Zhen-Kun Pan, Patrick Guirnalda
1Department of Microbiology, University of Pennsylvania, Philadelphia, PA 19104, USA.
Abstract:
The FDA approval of bevacizumab (Avastin®, Genentech/Roche), a monoclonal antibody raised against human VEGF-A, as second-line therapy for colon and lung carcinoma validated the approach of targeting human tumors with angiogenesis inhibitors. While the VEGF/VEGFR pathway is a viable target for anti-angiogenesis tumor therapy, additional targets involved in tumor neovascularization have been identified. One promising target present specifically on tumor vasculature is endoglin (CD105), a member of the TGF-β receptor complex expressed on vascular endothelium and believed to play a role in angiogenesis. Monoclonal antibody therapy and preventive vaccination against CD105 has met with some success in controlling tumor growth. This report describes the in vivo proof-of-concept studies for two novel therapeutic vaccines, Lm-LLO-CD105A and Lm-LLO-CD105B, directed against CD105 as a strategy to target neovascularization of established tumors. Listeria-based vaccines directed against CD105 lead to therapeutic responses against primary and metastatic tumors in the 4T1-Luc and NT-2 mouse models of breast cancer. In a mouse model for autochthonous Her-2/neu-driven breast cancer, Lm-LLO-CD105A vaccination prevented tumor incidence in 20% of mice by week 58 after birth while all control mice developed tumors by week 40. In comparison with previous Listeria-based vaccines targeting tumor vasculature, Lm-LLO-CD105A and Lm-LLO-CD105B demonstrated equivalent or superior efficacy against two transplantable mouse models of breast cancer. Support is provided for epitope spreading to endogenous tumor antigens and reduction in tumor vascularity after vaccination with Listeria-based CD105 vaccines. Reported here, these CD105 therapeutic vaccines are highly effective in stimulating anti-angiogenesis and anti-tumor immune responses leading to therapeutic efficacy against primary and metastatic breast cancer.
Insights
Novel Listeria-based vaccines targeting endoglin (CD105) show significant efficacy against primary and metastatic breast cancer by inhibiting tumor neovascularization and stimulating anti-tumor immunity.
Area of Science:
- Oncology
- Immunology
- Vascular Biology
Background:
- Bevacizumab targeting VEGF-A validated anti-angiogenesis therapy.
- Endoglin (CD105) is a promising target on tumor vasculature involved in angiogenesis.
- Previous CD105-targeted therapies showed some success in controlling tumor growth.
Purpose of the Study:
- To evaluate the in vivo efficacy of two novel Listeria-based therapeutic vaccines, Lm-LLO-CD105A and Lm-LLO-CD105B, against CD105 for targeting tumor neovascularization.
- To assess the anti-tumor immune responses and therapeutic effects of these vaccines in established primary and metastatic breast cancer models.
Main Methods:
- Development and testing of two Listeria-based vaccines (Lm-LLO-CD105A and Lm-LLO-CD105B) targeting CD105.
- In vivo studies using 4T1-Luc and NT-2 mouse models for transplantable breast cancer.
- Evaluation in a mouse model of autochthonous Her-2/neu-driven breast cancer.
- Assessment of tumor incidence, vascularity, and immune responses.
Main Results:
- Lm-LLO-CD105A and Lm-LLO-CD105B demonstrated therapeutic responses against primary and metastatic tumors in mouse models.
- Lm-LLO-CD105A vaccination prevented tumor incidence in 20% of mice in an autochthonous breast cancer model.
- These vaccines showed equivalent or superior efficacy compared to previous Listeria-based vaccines.
- Evidence of epitope spreading to endogenous tumor antigens and reduced tumor vascularity was observed.
Conclusions:
- Novel Listeria-based CD105 vaccines are highly effective in stimulating anti-angiogenesis and anti-tumor immune responses.
- These vaccines provide therapeutic efficacy against primary and metastatic breast cancer.
- CD105 represents a viable and effective target for novel cancer immunotherapies.
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