Antiangiogenic Therapy Against Experimental Glioblastoma Using Genetically Engineered Cells Producing Interferon-α, Angiostatin, or Endostatin
- 10 June 2003
- journal article
- research article
- Published by Mary Ann Liebert Inc in Human Gene Therapy
- Vol. 14 (9) , 883-895
- https://doi.org/10.1089/104303403765701178
Abstract
Inhibition of angiogenesis has been considered among the most promising approaches to treat highly vascularized solid tumors such as glioblastoma. In this study, we designed and validated a new in vitro assay system based on the implantation of tumor cells into organotypic brain slice cultures. We evaluated the effects of local production of three endogenous inhibitors of angiogenesis, angiostatin, endostatin, and interferon (IFN)-α1, using stably transfected rat (9L) and human (GL15) glioblastoma cells on tumor vascularization and growth. Despite similar effectiveness of the three proteins in a classic in vitro endothelial cell migration assay, IFN-α1 demonstrated the most potent antiangiogenic effect in organotypic brain slice cultures. In vivo, after intracerebral implantation of such genetically modified glioblastoma cells, IFN-α1 caused a dramatic decrease in tumor volume revealed by magnetic resonance imaging and by postmortem histology. The mechanisms of this antitumor effect were most likely caused by the major antiangiogenic action of the cytokine, because IFN-α1 expression provoked a pronounced decrease in blood vessel density, which was accompanied by extensive necrosis in the body mass of the tumors. The median survival time of rats implanted intracerebrally with IFN-α-expressing 9L cells tripled, and was still significantly increased when these constituted only 1% of transplanted tumor cells. A similar effect was seen when 50% of the transplanted cells were replaced by IFN-α-expressing bone marrow stromal cells. These data point to the local delivery of IFN-α1 using cell vectors as a potent tool for the inhibition of tumor-induced angiogenesis.Keywords
This publication has 47 references indexed in Scilit:
- Invasion of human glioma biopsy specimens in cultures of rodent brain slices: a quantitative analysisJournal of Neurosurgery, 2002
- Differential effects of angiostatin, endostatin and interferon-α1 gene transfer on in vivo growth of human breast cancer cellsGene Therapy, 2002
- A phase III study of radiation therapy plus carmustine with or without recombinant interferon-? in the treatment of patients with newly diagnosed high-grade gliomaCancer, 2001
- Antibodies to Interferon-α in Treated Cancer Patients: Incidence and SignificanceJournal of Interferon & Cytokine Research, 1997
- Local invasion and intraparenchymal metastasis, of astrocytomasNeuropathology and Applied Neurobiology, 1996
- Patterns and Emerging Mechanisms of the Angiogenic Switch during TumorigenesisPublished by Elsevier ,1996
- Angiogenesis in malignant gliomasGlia, 1995
- Addition of IFN-α to Treatment of Malignant Brain TumorsActa Oncologica, 1994
- Brain TumorsNew England Journal of Medicine, 1991
- Microvascular Injury in Pathogenesis of Interferon-Induced Necrosis of Subcutaneous Tumors in MiceJNCI Journal of the National Cancer Institute, 1989