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Monitoring Functionality and Morphology of Vasculature Recruited by Factors Secreted by Fast-growing Tumor-generating Cells
Published on: November 23, 2014
Antiangiogenic peptides and proteins: from experimental tools to clinical drugs
Curzio Rüegg1, Meriem Hasmim, Ferdy J Lejeune
1Centre Pluridisciplinaire d'Oncologie, Faculty of Biology and Medicine, University of Lausanne, Epalinges s/Lausanne, Switzerland. curzio.ruegg@isrec.ch
Abstract:
The formation of a 'tumor-associated vasculature', a process referred to as tumor angiogenesis, is a stromal reaction essential for tumor progression. Inhibition of tumor angiogenesis suppresses tumor growth in many experimental models, thereby indicating that tumor-associated vasculature may be a relevant target to inhibit tumor progression. Among the antiangiogenic molecules reported to date many are peptides and proteins. They include cytokines, chemokines, antibodies to vascular growth factors and growth factor receptors, soluble receptors, fragments derived from extracellular matrix proteins and small synthetic peptides. The polypeptide tumor necrosis factor (TNF, Beromun) was the first drug registered for the regional treatment of human cancer, whose mechanisms of action involved selective disruption of the tumor vasculature. More recently, bevacizumab (Avastin), an antibody against vascular endothelial growth factor (VEGF)-A, was approved as the first systemic antiangiogenic drug that had a significant impact on the survival of patients with advanced colorectal cancer, in combination with chemotherapy. Several additional peptides and antibodies with antiangiogenic activity are currently tested in clinical trials for their therapeutic efficacy. Thus, peptides, polypeptides and antibodies are emerging as leading molecules among the plethora of compounds with antiangiogenic activity. In this article, we will review some of these molecules and discuss their mechanism of action and their potential therapeutic use as anticancer agents in humans.
Insights
Tumor angiogenesis, the growth of blood vessels in tumors, is crucial for cancer progression. Inhibiting this process using peptides and antibodies shows promise as an anticancer therapy.
Area of Science:
- Oncology
- Vascular Biology
- Drug Discovery
Background:
- Tumor angiogenesis is a critical process for tumor growth and progression.
- Targeting tumor vasculature offers a potential strategy for cancer treatment.
- Various antiangiogenic molecules, including peptides and proteins, have been identified.
Purpose of the Study:
- To review antiangiogenic molecules targeting tumor vasculature.
- To discuss their mechanisms of action and therapeutic potential in cancer treatment.
Main Methods:
- Review of existing literature on antiangiogenic agents.
- Analysis of peptides, polypeptides, and antibodies with antiangiogenic activity.
- Discussion of clinical trial data for selected agents.
Main Results:
- Tumor necrosis factor (TNF) was the first registered drug disrupting tumor vasculature.
- Bevacizumab (Avastin), an anti-VEGF-A antibody, demonstrated improved survival in colorectal cancer.
- Numerous peptides and antibodies are under clinical investigation for antiangiogenic therapy.
Conclusions:
- Peptides, polypeptides, and antibodies are key players in antiangiogenic therapy.
- These molecules offer promising therapeutic strategies for various human cancers.
- Targeting tumor angiogenesis remains a significant focus in cancer drug development.
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