Javascript must be enabled to continue!
Additional Gene Therapy with rAAV-wt-p53 Enhanced the Efficacy of Cisplatin in Human Bladder Cancer Cells
View through CrossRef
<i>Objective:</i>Gene therapy is defined as the treatment of an acquired or inherited disease by transfer of genetic material. The most common strategies in gene therapy of bladder cancer are corrective, inductive and cytotoxic gene therapy. Mutations in the p53 tumor suppressor gene are the most common molecular genetic abnormalities in bladder cancer and p53 gene transfer in the human bladder cancer cell line by adenoviral or other vectors was demonstrated to be cytotoxic. However, so far there has been no report of adeno-associated virus-2 vector-mediated p53 gene deliveries in bladder cancer. In this study, wild-type p53 cDNA was transfected into the bladder cancer cells, using the adeno-associated virus-2 vector, and the capability of rAAV-wt-p53 gene therapy in bladder cancer was evaluated in vitro. <i>Method:</i>Bladder cancer cell lines 5637 were transduced with adeno-associated virus-2 vectors containing wild-type human p53 gene (rAAV-wt-p53). Gene expression and transcriptional activation of p53 was determined by Western blot analysis. The cellular growth inhibition and apoptosis of rAAV-mediated p53 transfection were assessed by flow cytometry. The combination effect of rAAV-wt-p53 and cisplatin was measured by MTT assay. <i>Results:</i>The virus rAAV efficiently enters the cells and expresses its gene products. The gene product of rAAV-wt-p53 is cytotoxic to bladder cancer cells. The bladder cell line 5637 was found to experience a synergistic killing effect when rAAV-wt-p53 was used in combination with cisplatin. <i>Conclusion:</i> rAAV-mediated p53 gene transfer could offer a powerful novel therapeutic approach in bladder cancer.
Title: Additional Gene Therapy with rAAV-wt-p53 Enhanced the Efficacy of Cisplatin in Human Bladder Cancer Cells
Description:
<i>Objective:</i>Gene therapy is defined as the treatment of an acquired or inherited disease by transfer of genetic material.
The most common strategies in gene therapy of bladder cancer are corrective, inductive and cytotoxic gene therapy.
Mutations in the p53 tumor suppressor gene are the most common molecular genetic abnormalities in bladder cancer and p53 gene transfer in the human bladder cancer cell line by adenoviral or other vectors was demonstrated to be cytotoxic.
However, so far there has been no report of adeno-associated virus-2 vector-mediated p53 gene deliveries in bladder cancer.
In this study, wild-type p53 cDNA was transfected into the bladder cancer cells, using the adeno-associated virus-2 vector, and the capability of rAAV-wt-p53 gene therapy in bladder cancer was evaluated in vitro.
<i>Method:</i>Bladder cancer cell lines 5637 were transduced with adeno-associated virus-2 vectors containing wild-type human p53 gene (rAAV-wt-p53).
Gene expression and transcriptional activation of p53 was determined by Western blot analysis.
The cellular growth inhibition and apoptosis of rAAV-mediated p53 transfection were assessed by flow cytometry.
The combination effect of rAAV-wt-p53 and cisplatin was measured by MTT assay.
<i>Results:</i>The virus rAAV efficiently enters the cells and expresses its gene products.
The gene product of rAAV-wt-p53 is cytotoxic to bladder cancer cells.
The bladder cell line 5637 was found to experience a synergistic killing effect when rAAV-wt-p53 was used in combination with cisplatin.
<i>Conclusion:</i> rAAV-mediated p53 gene transfer could offer a powerful novel therapeutic approach in bladder cancer.
Related Results
Abstract 1176: Bypassing the dominant-negative effect of mutant p53 in cancer cells
Abstract 1176: Bypassing the dominant-negative effect of mutant p53 in cancer cells
Abstract
The tumor suppressor p53 is mutated in more than 50% of all cancers. The transcriptional activity of p53 depends on localization to the nucleus and formatio...
Abstract 1490: RAD51C-deficient cancer cells require DNA polymerase zeta to bypass cisplatin-induced lesion
Abstract 1490: RAD51C-deficient cancer cells require DNA polymerase zeta to bypass cisplatin-induced lesion
RAD51C is a RAD51 paralog protein that mediates RAD51 filament formation on single-stranded DNA (ssDNA) in a canonical homologous recombination (HR) pathway. This step is vital for...
Abstract 1706: Investigating the interaction between ETS family members and mutant p53
Abstract 1706: Investigating the interaction between ETS family members and mutant p53
Abstract
Cancer cases are on the rise globally requiring a deeper understanding of the disease and identification of novel therapeutic targets. Mutations in genes of...
Abstract 3500: Mitochondrially targeted p53 domains as a stand alone or adjunct to paclitaxel for the treatment of ovarian cancer
Abstract 3500: Mitochondrially targeted p53 domains as a stand alone or adjunct to paclitaxel for the treatment of ovarian cancer
Abstract
Although the main function of p53 is a nuclear transcription factor that has important roles in cell cycle arrest, DNA repair, and apoptosis, p53 can direct...
Abstract 599: Id4 acts as a tumor suppressor by inducing apoptosis and senescence in p53-dependent manner
Abstract 599: Id4 acts as a tumor suppressor by inducing apoptosis and senescence in p53-dependent manner
Abstract
The physiological mechanisms that can restore biological activity of mutant p53 is an area of high interest given that mutant p53 expression is observed in ...
Abstract 422: Novel approach to destabilization of oncogenic mutant p53 and therapeutic implications
Abstract 422: Novel approach to destabilization of oncogenic mutant p53 and therapeutic implications
Abstract
Introduction: Mutant p53 drives several hallmarks of cancer through a gain-of-function oncogenic program. The oncogenicity of mutant p53 includes sustained ...
Abstract 829: p53 dimers elicit tumor suppressive activities through an altered metabolic program
Abstract 829: p53 dimers elicit tumor suppressive activities through an altered metabolic program
Abstract
p53 is the most frequently mutated gene in human cancer. As a tetrameric transcription factor, mutation of the p53 Tetramerization Domain (TD) is a mechanis...
High P53 Protein Expression Level Independent of Mutational Status Is An Adverse Prognostic Factor for Survival in Acute Myeloid Leukemia
High P53 Protein Expression Level Independent of Mutational Status Is An Adverse Prognostic Factor for Survival in Acute Myeloid Leukemia
Abstract
Abstract 1490
Background:
The tumor suppressor p53 is frequently mutated in human cancer, including acut...

