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Models for assessment of angiogenesis in gliomas
R H Goldbrunner1, S Wagner, K Roosen
1Department of Neurosurgery, University of Wuerzburg, Germany.
Abstract:
In the last two decades, much attention has been focussed on mechanisms of glioma vascularization including the investigation of growth factors and receptors involved. Recently, these efforts resulted in various approaches for antiangiogenic treatment of experimental brain tumors. These basic science and preclinical trials need an assortment of models, which should allow investigating a variety of questions. Several objectives concerning basic endothelial cell (EC) characteristics can adequately be studied in vitro using EC monolayer assays. Three-dimensional spheroid techniques respect the more complex cell-cell and cell-environment interplay within a three-dimensional culture. To optimize the imitation of the crucial interaction of human gliomas with host endothelial cells, immunological cells and extracellular matrix, animal models are mandatory. An essential rule is to utilize an orthotopic model, since tumor-host interaction is organ specific. To avoid alloimmunogenic responses, it is desirable to use weakly or not immunogenic glioma grafts, what is best accomplished in a syngeneic model. However, since rat gliomas poorly resemble human glioma growth patterns, human glioma xenografting into immunocompromized animals should be considered. In vivo monitoring techniques like videoscopy via a cranial window or magnetic resonance imaging (MRI) allow for functional studies and improve the validity of the model employed. Finally, it is essentially to recognize the limitations of each model considered and to select that model, which seems to be most appropriate for the objectives to be investigated.
Insights
Choosing the right glioma model is crucial for antiangiogenic treatment research. Various in vitro, 3D, and animal models offer distinct advantages for studying tumor vascularization and host interactions.
Area of Science:
- Neuro-oncology
- Cancer Biology
- Translational Medicine
Background:
- Glioma vascularization is a key target for antiangiogenic therapies.
- Effective preclinical models are essential for developing and testing new brain tumor treatments.
Purpose of the Study:
- To review and compare different models for studying glioma vascularization.
- To guide the selection of appropriate models for specific research questions in brain tumor research.
Main Methods:
- In vitro endothelial cell (EC) monolayer assays for basic EC characteristics.
- Three-dimensional spheroid techniques for cell-cell and cell-environment interactions.
- Orthotopic animal models (syngeneic and xenograft) for tumor-host interactions.
- In vivo monitoring techniques like videoscopy and magnetic resonance imaging (MRI).
Main Results:
- In vitro models are suitable for basic EC studies.
- 3D spheroid models better mimic complex cellular interactions.
- Animal models, particularly orthotopic xenografts in immunocompromised animals, are crucial for replicating human glioma-host interactions.
- In vivo monitoring enhances model validity and functional studies.
Conclusions:
- Model selection depends on the specific research objectives.
- A combination of in vitro, 3D, and in vivo models provides comprehensive insights into glioma vascularization.
- Careful consideration of model limitations is vital for successful preclinical research in neuro-oncology.