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Published on: October 27, 2014
Combination Therapy by Tissue-Specific Suicide Gene and Bevacizumab in Intramedullary Spinal Cord Tumor
So Jung Gwak1,2, Lihua Che2,3, Yeomin Yun2,3
1Department of Chemical Engineering, Wonkwang University, Iksan, Korea.
Purpose:
Malignant gliomas are aggressive spinal cord tumors. In this study, we hypothesized that combination therapy using an anti-angiogenic agent, bevacizumab, and hypoxia-inducible glioblastoma-specific suicide gene could reduce tumor growth.
Materials And Methods:
In the present study, we evaluated the effect of combination therapy using bevacizumab and pEpo-NI2-SV-TK in reducing the proliferation of C6 cells and tumor growth in the spinal cord. Spinal cord tumor was generated by the injection of C6 cells into the T5 level of the spinal cord. Complexes of branched polyethylenimine (bPEI)/pEpo-NI2-SV-TK were injected into the spinal cord tumor. Bevacizumab was then administered by an intraperitoneal injection at a dose of 7 mg/kg. The anti-cancer effects of combination therapy were analyzed by histological analyses and magnetic resonance imaging (MRI). The Basso, Beattie and Bresnahan scale scores for all of the treatment groups were recorded every other day for 15 days to assess the rat hind-limb strength.
Results:
The complexes of bPEI/pEpo-NI2-SV-TK inhibited the viability of C6 cells in the hypoxia condition at 5 days after treatment with ganciclovir. Bevacizumab was decreased in the cell viability of human umbilical vein endothelial cells. Combination therapy reduced the tumor size by histological analyses and MRI. The combination therapy group showed improved hind-limb function compared to the other groups that were administered pEpo-NI2-SV-TK alone or bevacizumab alone.
Conclusion:
This study suggests that combination therapy using bevacizumab with the pEpo-NI2-SV-TK therapeutic gene could be useful for increasing its therapeutic benefits for intramedullary spinal cord tumors.
Insights
Combination therapy with bevacizumab and a suicide gene effectively reduced spinal cord glioma growth and improved hind-limb function in rats. This approach shows promise for treating aggressive malignant gliomas.
Area of Science:
- Oncology
- Gene Therapy
- Pharmacology
Background:
- Malignant gliomas are aggressive tumors of the spinal cord.
- Current treatments have limited efficacy for spinal cord gliomas.
- Combination therapy may offer improved therapeutic benefits.
Purpose of the Study:
- To evaluate the efficacy of combination therapy using bevacizumab and a hypoxia-inducible suicide gene (pEpo-NI2-SV-TK) for spinal cord gliomas.
- To assess the impact of this combination therapy on tumor growth and functional recovery.
Main Methods:
- Spinal cord tumors were induced in rats by injecting C6 glioma cells.
- Rats received intratumoral injection of branched polyethylenimine (bPEI)/pEpo-NI2-SV-TK complexes and intraperitoneal bevacizumab.
- Tumor size was assessed via histological analysis and MRI; functional recovery was evaluated using the Basso, Beattie and Bresnahan scale.
Main Results:
- The combination therapy significantly reduced tumor size compared to monotherapy.
- pEpo-NI2-SV-TK inhibited C6 cell viability under hypoxic conditions.
- Bevacizumab reduced human umbilical vein endothelial cell viability; combination therapy improved hind-limb function in rats.
Conclusions:
- Combination therapy with bevacizumab and pEpo-NI2-SV-TK demonstrates significant anti-cancer effects against spinal cord gliomas.
- This therapeutic strategy holds potential for enhanced treatment of intramedullary spinal cord tumors.
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