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Published on: September 18, 2013
Suppression of bladder cancer growth in mice by adeno-associated virus vector-mediated endostatin expression
Jian Gang Pan1, Xing Zhou, Ge Wa Zeng
1The Second Affiliated Hospital of Guangzhou Medical University, Changgang Dong Lu, No. 250, Guangzhou 510260, China.
Abstract:
Novel treatment strategies such as gene therapy are warranted in view of the failure of current treatment approaches to cure a high percentage of patients with advanced bladder cancers. Testing of the hypothesis that blocking the angiogenic switch may keep tumour growth in check has been facilitated by the discovery of endogenous inhibitors of angiogenesis and has also added another research dimension to the field of cancer gene therapy. Consequently, the concept of targeting the tumour vasculature with anti-angiogenic agents has emerged as an attractive new strategy in the treatment of cancer. Targeted biological therapies that selectively interfere with tumour angiogenesis could improve survival among patients with bladder cancer. Endostatin is a tumour-derived angiogenesis inhibitor and is the first endogenous inhibitor of angiogenesis to be indentified in a matrix protein. Gene therapy represents an attractive approach to treat cancers and other chronic diseases. The development of an effective delivery system is absolutely critical to the usefulness and safety of gene therapy. At present, the adeno-associated virus (AAV) vector has the most promising potential in view of its non-pathogenicity, wide tropisms and long-term transgene expression in vivo. Gene therapy studies using different serotypes of recombinant AAV (rAAV) as delivery vehicles have proved rAAVs to be an effective modality of cancer gene therapy. In the present study, an IgG fragment was inserted at the start of the sequence coding for endostatin with the aim of enabling continuous secretion of endostatin the serum. We also investigated the suppression effect of AAV-mediated endostatin expression on endothelial cells and in mice xenograft models of bladder cancer. Our data demonstrates that rAAV-endostatin controlled tumour cell growth and achieves strong anti-tumour efficacy in vivo.
Insights
Gene therapy using adeno-associated virus (AAV) vectors delivered endostatin to effectively inhibit bladder cancer growth. This novel approach demonstrated significant anti-tumour efficacy in preclinical models, offering a promising new strategy for advanced bladder cancers.
Area of Science:
- Oncology
- Gene Therapy
- Cancer Biology
Background:
- Advanced bladder cancers often resist conventional treatments, necessitating novel therapeutic strategies.
- Targeting tumour angiogenesis, the process of new blood vessel formation, is a promising avenue for cancer treatment.
- Endostatin, a naturally occurring angiogenesis inhibitor, has shown potential in controlling tumour growth.
Purpose of the Study:
- To investigate the efficacy of gene therapy using adeno-associated virus (AAV) vectors to deliver endostatin for bladder cancer treatment.
- To assess the continuous secretion of endostatin and its anti-angiogenic effects.
- To evaluate the anti-tumour activity of AAV-mediated endostatin expression in vitro and in vivo bladder cancer models.
Main Methods:
- Gene therapy approach utilizing recombinant adeno-associated virus (rAAV) vectors.
- Engineered rAAV vector to express endostatin with an inserted IgG fragment for continuous serum secretion.
- Evaluated the suppression effect on endothelial cells and in mice xenograft models of bladder cancer.
Main Results:
- The developed rAAV-endostatin vector successfully mediated continuous endostatin secretion.
- Demonstrated significant suppression of endothelial cell proliferation.
- rAAV-endostatin controlled tumour cell growth and exhibited strong anti-tumour efficacy in vivo mouse models.
Conclusions:
- AAV-mediated endostatin gene therapy is a viable and effective strategy for controlling bladder cancer progression.
- Continuous endostatin secretion enhances anti-tumour efficacy, offering a potential new treatment modality.
- This approach holds promise for improving outcomes in patients with advanced bladder cancers.

