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Updated: Mar 8, 2026

Chemotherapy-induced Vascular Toxicity - Real-time In vivo Imaging of Vessel Impairment
Published on: January 7, 2015
Anti-Angiogenic Drugs, Vascular Toxicity and Thromboembolism in Solid Cancer
Silvia Riondino1, Girolamo Del Monte2, Federica Fratangeli3
1Department of Systems Medicine, Medical Oncology, Policlinico Tor Vergata Biospecimen Cancer Repository (PTV Bio.Ca.Re.), University of Rome Tor Vergata, Viale Oxford 81, 00133, Rome, Italy.
Background:
Neo-angiogenesis, a key step in cancer progression, is a highly regulated process, in which Vascular Endothelial Growth Factor (VEGF) plays a fundamental role, thus representing the most suitable anti-angiogenic target. In the last year, a number of anti-VEGF drugs have been developed and approved for therapeutic use, especially in combination with standard chemotherapy. VEGF, however, is not only crucial for physiological and pathological angiogenesis, but also for the maintenance of vascular homeostasis, at a point that its pharmacological blockade may lead to endothelial dysfunction and adverse vascular effects, such as venous thromboembolism. The picture is further complicated by the understanding that the amount of VEGF production is influenced by genetic factors, with environmental ones accounting only for 20-30% of its variations. This has recently prompted the design of various pharmacogenetic studies to investigate the role of VEGF polymorphisms in determining the pharmacological response and safety profile of various anti-angiogenic drugs, suggesting that the analysis of VEGF genetic variants in cancer patients may further help personalize anti-angiogenic pharmacological strategies.
Conclusion:
In this review, we initially focused on the biological mechanisms involved in vascular maintenance and angiogenesis. Then, discussed the efficacy and toxicity profile of some of the antiangiogenic drugs most commonly used in the treatment of solid cancer, with a particular focus on the thromboembolic complications of anti-angiogenic treatments in cancer patients. Finally, the impact of VEGF gene polymorphisms on clinical outcome and toxicity was briefly reviewed.
Insights
Vascular Endothelial Growth Factor (VEGF) is a key target for anti-angiogenic cancer drugs. VEGF gene variations may personalize treatment by influencing drug response and side effects, particularly thromboembolism.
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Neo-angiogenesis is crucial for cancer progression and is regulated by Vascular Endothelial Growth Factor (VEGF).
- Anti-VEGF drugs are used in cancer therapy but can cause adverse vascular effects, including thromboembolism.
- VEGF production is influenced by genetic factors, prompting pharmacogenetic studies.
Purpose of the Study:
- To review the biological mechanisms of angiogenesis and vascular maintenance.
- To discuss the efficacy and toxicity of anti-VEGF drugs in solid cancer treatment.
- To examine the impact of VEGF gene polymorphisms on treatment outcomes and safety.
Main Methods:
- Literature review of angiogenesis and anti-VEGF therapies.
- Analysis of clinical data on anti-VEGF drug efficacy and toxicity.
- Review of pharmacogenetic studies on VEGF polymorphisms.
Main Results:
- VEGF is vital for angiogenesis and vascular homeostasis; its blockade can lead to endothelial dysfunction and thromboembolism.
- Anti-VEGF drugs show efficacy in solid cancers but carry risks, especially thromboembolic complications.
- VEGF gene variants may predict patient response and toxicity to anti-angiogenic therapies.
Conclusions:
- Understanding VEGF's role is critical for anti-angiogenic therapy.
- Pharmacogenetic analysis of VEGF polymorphisms can help personalize cancer treatment strategies.
- Further research into VEGF genetics may optimize anti-angiogenic drug use and patient outcomes.
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