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High Throughput Characterization of Adult Stem Cells Engineered for Delivery of Therapeutic Factors for Neuroprotective Strategies
Published on: January 4, 2015
Neural precursor cells as carriers for a gene therapeutical approach in tumor therapy
S Arnhold1, M Hilgers, D Lenartz
1Department of Anatomy I, University of Cologne, Joseph-Stelzmann Str. 9, 50931 Köln, Germany. stefan.arnhold@uni-koeln.de
Abstract:
Conventional therapeutical approaches such as surgery, radiotherapy, or chemotherapy have been shown to be rather unsuccessful in the treatment of infiltrative growing tumors such as the malignant glioblastoma multiforme. Thus, new therapeutical strategies have to be developed that are suitable for inducing cell death also in migrating tumor cells. These new therapeutical stategies include cell and/or gene therapeutical approaches. We demonstrate that glial-restricted progenitor cells as well as embryonic stem cell-derived neural stem cells belong to cell populations applicable to such therapeutical concepts. Both cell types can be efficiently transduced using a third-generation high-capacity "gutless" adenoviral vector, and show a tropism for the F98 glioma cells by migrating towards a spheroid of F98 glioma cells with a tendency to form a barrier around the tumor spheroid in an in vitro tumor confrontation model. Moreover, in a migration assay, secretion products of glial-restricted precursor cells have shown a potency to inhibit the migratory activity of glioma cells in vitro. In vivo, F98 glioma cell-derived tumor formation in the right striatum resulted in migration of glial as well as neural precursor cells towards the tumor area when cotransplanted in the corpus callosum of the contralateral hemisphere. After arrival, both cell types surround the tumor mass and even invade the experimentally induced tumor. These data indicate that glial-restricted as well as embryonic stem cell-derived neural precursor cells are good candidates as carriers for an ex vivo gene therapeutical approach in tumor therapy.
Insights
New cell-based therapies using glial-restricted and neural stem cells show promise for treating malignant glioblastoma. These cells migrate towards tumors and can be engineered for gene therapy, offering a new strategy against infiltrative brain cancers.
Area of Science:
- Neuroscience
- Oncology
- Regenerative Medicine
Background:
- Malignant glioblastoma is difficult to treat with conventional therapies due to its infiltrative growth.
- New therapeutic strategies are needed to target migrating tumor cells.
Purpose of the Study:
- To evaluate glial-restricted progenitor cells and embryonic stem cell-derived neural stem cells as potential carriers for ex vivo gene therapy against glioblastoma.
- To assess the migratory and tumor-inhibitory properties of these cell types.
Main Methods:
- Adenoviral vector transduction of glial-restricted and neural stem cells.
- In vitro tumor confrontation and migration assays using F98 glioma cells.
- In vivo studies involving co-transplantation of glioma cells and precursor cells in a rat brain model.
Main Results:
- Both cell types were efficiently transduced and exhibited tropism towards F98 glioma cells in vitro, forming a barrier around tumor spheroids.
- Secreted factors from glial-restricted precursor cells inhibited glioma cell migration in vitro.
- In vivo, both cell types migrated towards induced tumors, surrounded them, and invaded the tumor mass.
Conclusions:
- Glial-restricted and neural stem cells are promising candidates for ex vivo gene therapy delivery in glioblastoma treatment.
- These cells demonstrate tumor-homing capabilities and potential for therapeutic intervention against infiltrative brain tumors.
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