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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
Endogenous angiogenesis inhibitors and their therapeutic implications
1Laboratory of Angiogenesis Research, Microbiology and Tumor Biology Center, Karolinska Institute, S-171 77, Stockholm, Sweden. yihai.cao@mtc.ki.se
Abstract:
A number of endogenous inhibitors targeting the tumor vasculature have recently been identified using in vitro and in vivo antiangiogenesis models. While many of these angiogenesis inhibitors display a broad spectrum of biological actions on several systems in the body, several inhibitors including angiostatin, endostatin, and serpin antithrombin seem to act specifically on the proliferating endothelial cell compartment of the newly formed blood vessels. The discovery of these specific endothelial inhibitors not only increases our understanding of the functions of these molecules in the regulation of physiological and pathological angiogenesis, but may also provide an important therapeutic strategy for the treatment of cancer and other angiogenesis dependent diseases, including diabetic retinopathy and chronic inflammations. Systemic administration of these angiogenesis inhibitors in animals significantly suppresses the growth of a variety of tumors and their metastases. However, their production as functional recombinant proteins has been proven to be difficult. In addition, high dosages of these inhibitors are required to suppress tumor growth in animal studies. Other disadvantages of the antiangiogenic protein therapy include repeated injections, prolonged treatment, transmission of toxins and infectious particles, and high cost for manufacturing large amounts of protein molecules. Thus, alternative strategies need to be developed in order to improve the clinical settings of antiangiogenic therapy. Developments of these strategies are ongoing and they include identification of more potent inhibitors, antiangiogenic gene therapy, improvement of protein/compound half-lives in the circulation, increase of their concentrations at the disease location, and combinatorial therapies with approaches including chemotherapy, radiotherapy, and immunotherapy. Despite the above-mentioned disadvantages, a few inhibitors have entered into the early stages of clinical trials and they may bring new hopes for the treatment of cancer and other angiogenesis dependent diseases.
Insights
Endogenous inhibitors like angiostatin and endostatin target tumor blood vessel growth. While promising for cancer therapy, challenges in production and delivery necessitate developing new antiangiogenic strategies.
Area of Science:
- Oncology
- Vascular Biology
- Biotechnology
Background:
- Endogenous inhibitors targeting tumor vasculature have been identified.
- Specific inhibitors like angiostatin and endostatin act on endothelial cells, crucial for angiogenesis.
- These inhibitors show potential for treating cancer and angiogenesis-dependent diseases.
Purpose of the Study:
- To review endogenous angiogenesis inhibitors and their therapeutic potential.
- To discuss challenges associated with antiangiogenic protein therapy.
- To explore alternative strategies for improving antiangiogenic therapy.
Main Methods:
- In vitro and in vivo antiangiogenesis models were used for inhibitor identification.
- Review of existing literature on endogenous angiogenesis inhibitors.
- Analysis of challenges and proposed alternative strategies for antiangiogenic therapy.
Main Results:
- Several endogenous inhibitors specifically target proliferating endothelial cells.
- Systemic administration in animals suppressed tumor growth and metastasis.
- Production of functional recombinant proteins and high dosage requirements pose significant challenges.
Conclusions:
- Endogenous angiogenesis inhibitors offer a promising therapeutic avenue for cancer and related diseases.
- Current protein-based therapies face limitations including production difficulties, high costs, and administration issues.
- Further research into more potent inhibitors, gene therapy, and combinatorial approaches is crucial for clinical advancement.
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