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Live-Cell Imaging Assays to Study Glioblastoma Brain Tumor Stem Cell Migration and Invasion
Published on: August 29, 2018
Cost of migration: invasion of malignant gliomas and implications for treatment
A Giese1, R Bjerkvig, M E Berens
1Department of Neurosurgery, University Hospital Lübeck, Ratzeburger Allee 160, 23538 Lübeck, Germany. alf.giese@neurochirurgie.mu-luebeck.de
Abstract:
Tumors of glial origin consist of a core mass and a penumbra of invasive, single cells, decreasing in numbers towards the periphery and still detectable several centimeters away from the core lesion. Several decades ago, the diffuse nature of malignant gliomas was recognized by neurosurgeons when super-radical resections using hemispherectomies failed to eradicate these tumors. Local invasiveness eventually leads to regrowth of a recurrent tumor predominantly adjacent to the resection cavity, which is not significantly altered by radiation or chemotherapy. This raises the question of whether invasive glioma cells activate cellular programs that render these cells resistant to conventional treatments. Clinical and experimental data demonstrate that glioma invasion is determined by several independent mechanisms that facilitate the spread of these tumors along different anatomic and molecular structures. A common denominator of this cellular behavior may be cell motility. Gene-expression profiling showed upregulation of genes related to motility, and functional studies demonstrated that cell motility contributes to the invasive phenotype of malignant gliomas. There is accumulating evidence that invasive glioma cells show a decreased proliferation rate and a relative resistance to apoptosis, which may contribute to chemotherapy and radiation resistance. Interestingly, interference with cell motility by different strategies results in increased susceptibility to apoptosis, indicating that this dynamic relationship can potentially be exploited as an anti-invasive treatment paradigm. In this review, we discuss mechanisms of glioma invasion, characteristics of the invasive cell, and consequences of this cellular phenotype for surgical resection, oncologic treatments, and future perspectives for anti-invasive strategies.
Insights
Malignant gliomas spread via invasive cells resistant to treatment. Targeting cell motility may re-sensitize these cells to apoptosis, offering a new anti-invasive therapy strategy.
Area of Science:
- Neuro-oncology
- Cancer biology
- Cellular mechanisms
Background:
- Malignant gliomas feature invasive single cells extending far beyond the core tumor.
- Recurrent tumors often arise near resection sites, showing resistance to radiation and chemotherapy.
- Glioma invasiveness is driven by multiple mechanisms, potentially linked to cell motility.
Purpose of the Study:
- To review the mechanisms of glioma invasion.
- To characterize the invasive glioma cell phenotype.
- To discuss implications for treatment and explore anti-invasive strategies.
Main Methods:
- Review of clinical and experimental data on glioma invasion.
- Gene-expression profiling to identify motility-related genes.
- Functional studies to assess the role of cell motility in invasion and treatment resistance.
Main Results:
- Glioma invasion involves complex mechanisms, with cell motility as a key factor.
- Invasive glioma cells exhibit reduced proliferation and increased resistance to apoptosis.
- Interfering with cell motility enhances susceptibility to apoptosis, suggesting a therapeutic vulnerability.
Conclusions:
- Glioma cell motility is central to invasion and treatment resistance.
- Targeting cell motility presents a promising paradigm for developing novel anti-invasive therapies.
- Understanding the invasive cell phenotype is crucial for improving surgical and oncologic outcomes.

