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Published on: October 27, 2014
FADD gene therapy for malignant gliomas in vitro and in vivo
1Department of Neurosurgery, Brain Tumor/Neuro-Oncology Center, The Cleveland Clinic Foundation, OH 44195, USA.
Abstract:
Fas/APO-1 (CD95), a cell surface cytokine receptor, triggers apoptotic cell death by specific agonist antibody, suggesting that Fas/APO-1 may be a promising target for treatment of tumors. In this study, we show that treatment with anti-Fas antibody effectively induced apoptosis in malignant glioma cell lines with high expression of Fas/APO-1 (n = 3). Malignant glioma cells with low or undetectable expression of Fas/APO-1 (n = 6), however, were resistant to Fas/APO-1-dependent cytotoxicity. The purpose of this study, therefore, was to determine whether resistant tumors could be made susceptible to apoptosis. FADD/MORT1 constitutes a novel protein that associates specifically with the cytoplasmic death domain of Fas/APO-1 and induces apoptosis. We investigated whether overexpression of FADD would induce apoptosis in malignant glioma cells without activating Fas/APO-1. Results indicated that about 85% of malignant glioma cells, regardless of Fas/APO-1 expression levels, underwent apoptosis after transient transfection with FADD expression vector. To further improve gene transfer of FADD into malignant glioma cells, we constructed a retroviral vector containing the FADD gene. The retroviral transfer of FADD gene significantly enhanced the transduction efficiency and effectively inhibited both in vitro and in vivo survival of malignant glioma cells through induction of apoptosis. These findings suggest that the FADD gene is a novel and useful tool for the treatment of malignant gliomas.
Insights
Fas/APO-1 (CD95) antibody induces apoptosis in glioma cells with high Fas expression. Overexpressing FADD, a Fas-associated protein, effectively triggers apoptosis in all malignant glioma cells, offering a new treatment strategy.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Fas/APO-1 (CD95) is a cell surface receptor that can induce apoptosis.
- Targeting Fas/APO-1 with agonist antibodies shows promise for cancer treatment.
- Malignant gliomas with low Fas/APO-1 expression are resistant to Fas-mediated apoptosis.
Purpose of the Study:
- To investigate FADD/MORT1 as a means to induce apoptosis in Fas-resistant malignant gliomas.
- To determine if FADD overexpression can bypass Fas/APO-1 dependence for apoptosis induction.
- To evaluate the efficacy of retroviral FADD gene transfer for glioma treatment.
Main Methods:
- Treatment of malignant glioma cell lines with anti-Fas antibody.
- Assessing apoptosis induction in cells with varying Fas/APO-1 expression levels.
- Transient transfection and retroviral gene transfer of FADD into glioma cells.
- Evaluating in vitro and in vivo inhibition of glioma cell survival.
Main Results:
- Anti-Fas antibody induced apoptosis only in glioma cells with high Fas/APO-1 expression.
- Overexpression of FADD induced apoptosis in approximately 85% of malignant glioma cells, irrespective of Fas/APO-1 levels.
- Retroviral transfer of the FADD gene effectively inhibited glioma cell survival both in vitro and in vivo.
Conclusions:
- FADD can induce apoptosis in malignant gliomas independently of Fas/APO-1 expression.
- Retroviral FADD gene delivery is an efficient method for targeting malignant gliomas.
- FADD represents a promising therapeutic target for treating malignant gliomas.

