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Updated: Jun 22, 2026

Venous Thrombosis Assay in a Mouse Model of Cancer
Published on: January 5, 2024
Thromboembolic events in patients treated with anti-angiogenic drugs
Patrizia Ferroni1, Vincenzo Formica, Mario Roselli
1Department of Laboratory Medicine & Advanced Biotechnologies, IRCCS San Raffaele Pisana, Via della Pisana 235, 00163 Rome, Italy. patrizia.ferroni@sanraffaele.it
Abstract:
Induction of neo-angiogenesis is a fundamental step in many pathological conditions. The therapeutic value of inhibiting angiogenesis is an interesting area of research in oncology, with vascular endothelial growth factor (VEGF) being the most suitable anti-angiogenic target. In the last decade a number of anti-VEGF drugs have demonstrated, especially in combination with standard chemotherapy, clinical efficacy in the treatment of different solid tumor types. As data from clinical trials on anti-VEGF drugs are becoming available, it is increasingly recognized that VEGF, in addition to being a permeability, proliferation, and migration factor, is also a maintenance and protection factor for endothelial cells, being capable of regulating multiple biological functions, i.e. the production of vasoactive mediators and the expression of components of the thrombolytic and coagulation pathways. Consequently, the disturbance of vascular homeostasis by blocking VEGF may lead to endothelial dysfunction and adverse vascular effects, such as venous and arterial thromboembolic events. In preclinical models angiogenesis and the increased expression of VEGF has been associated to altered expression of proinflammatory genes. These genes may be regulated in a biphasic manner, and it is possible that anti-VEGF therapy may disrupt a negative feedback loop that leads to potential in situ thrombus formation. Accordingly, combination treatment with bevacizumab and chemotherapy, compared with chemotherapy alone, was recently associated with an increased risk of thromboembolism. The present review considers the biological mechanisms and clinical impact of thromboembolic complications during anti-angiogenic treatments in cancer patients.
Insights
Anti-angiogenic therapies targeting vascular endothelial growth factor (VEGF) show efficacy in cancer. However, blocking VEGF can disrupt vascular homeostasis, increasing the risk of thromboembolic events in patients.
Area of Science:
- Oncology
- Vascular Biology
- Thrombosis
Background:
- Angiogenesis, the formation of new blood vessels, is crucial in cancer.
- Vascular endothelial growth factor (VEGF) is a key regulator of angiogenesis and endothelial cell function.
- Anti-VEGF therapies are established cancer treatments, often combined with chemotherapy.
Purpose of the Study:
- To review the biological mechanisms underlying thromboembolic complications associated with anti-VEGF cancer therapies.
- To discuss the clinical impact of these vascular adverse events in cancer patients undergoing anti-angiogenic treatment.
Main Methods:
- Literature review of preclinical models and clinical trial data on anti-VEGF therapies.
- Analysis of the role of VEGF in endothelial cell maintenance, vascular homeostasis, and inflammatory gene expression.
- Examination of the link between VEGF blockade and thromboembolic events.
Main Results:
- VEGF is essential for endothelial cell maintenance and regulates vascular homeostasis, including coagulation and thrombolysis.
- Blocking VEGF can lead to endothelial dysfunction and increase the risk of venous and arterial thromboembolism.
- Preclinical studies suggest anti-VEGF therapy may disrupt negative feedback loops, potentially promoting thrombus formation.
Conclusions:
- Anti-VEGF therapy, while effective against cancer, carries a risk of thromboembolic complications due to disruption of vascular homeostasis.
- Understanding these mechanisms is crucial for managing adverse vascular effects in cancer patients.
- Combination therapies, such as bevacizumab with chemotherapy, may further elevate the risk of thromboembolism.
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