Recombinant adenovirus expressing wild-type p53 is antiangiogenic: a proposed mechanism for bystander effect
M Nishizaki1, T Fujiwara, T Tanida
1Section of Molecular Oncology, Okayama University Medical School, Japan.
Abstract:
Angiogenesis is required for the growth and progression of malignancies. Recent studies have demonstrated that genetic alterations may accompany acquisition of the angiogenic phenotype. The tumor suppressor gene p53 is most frequently mutated in human cancers and is also known to be a transcriptional regulator of a variety of genes. Here, we investigated the antiangiogenic effect of the wild-type p53 (wt-p53) gene transfer on a human non-small cell lung cancer cell line. Mutant p53-expressing H226Br non-small cell lung cancer cells were transduced with the wt-p53 gene using a recombinant adenoviral vector (Ad5CMVp53) and applied to semiquantitative reverse transcription-PCRs for the detection of altered mRNA expression of angiogenic and/or antiangiogenic factors. In vivo neovascularization assay of Ad5CMVp53-infected cells was then performed using a membrane-diffusion chamber system s.c. transplanted in nu/nu mice. We also evaluated the effect of Ad5CMVp53-infected H226Br cells on nontransduced tumor cells in vivo by s.c. inoculating mixture of cells into nu/nu mice. Ad5CMVp53 infection markedly inhibited the expression of an angiogenic factor, vascular endothelial growth factor, and increased the expression of a novel antiangiogenic factor, brain-specific angiogenesis inhibitor 1, resulting in reduced neovascularization in vivo. Mixing experiments showed that tumor cells transduced with the wt-p53 gene inhibited the in vivo tumor growth of adjacent nontransduced cells. Our data suggest that a recombinant adenovirus expressing the wt-p53 gene is antiangiogenic, which may explain, in part, the mechanism of the bystander effect induced by the wt-p53 gene transfer on adjacent tumor cells.
Insights
Wild-type p53 gene transfer inhibits tumor angiogenesis by downregulating vascular endothelial growth factor and upregulating brain-specific angiogenesis inhibitor 1. This gene therapy also demonstrated a bystander effect, inhibiting adjacent tumor cell growth.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Angiogenesis is crucial for tumor growth and progression.
- Genetic alterations, particularly p53 mutations, are common in human cancers.
- The tumor suppressor gene p53 regulates various genes, including those involved in angiogenesis.
Purpose of the Study:
- To investigate the antiangiogenic effect of wild-type p53 (wt-p53) gene transfer in non-small cell lung cancer.
- To determine the impact of wt-p53 gene transfer on angiogenic and antiangiogenic factors.
- To evaluate the in vivo therapeutic potential of wt-p53 gene therapy.
Main Methods:
- Human non-small cell lung cancer cells (H226Br) expressing mutant p53 were transduced with wt-p53 using a recombinant adenoviral vector (Ad5CMVp53).
- Gene expression changes were analyzed using semiquantitative reverse transcription-PCR.
- In vivo neovascularization was assessed using a membrane-diffusion chamber system in mice.
- The bystander effect was evaluated by co-inoculating transduced and non-transduced tumor cells.
Main Results:
- Ad5CMVp53 infection significantly inhibited vascular endothelial growth factor (VEGF) expression.
- Expression of the antiangiogenic factor, brain-specific angiogenesis inhibitor 1 (BAI1), was increased.
- In vivo neovascularization was markedly reduced.
- Tumor cells transduced with wt-p53 inhibited the growth of adjacent non-transduced tumor cells.
Conclusions:
- Recombinant adenovirus expressing wt-p53 exhibits significant antiangiogenic properties.
- wt-p53 gene transfer modulates key angiogenic and antiangiogenic factors.
- The wt-p53 gene therapy demonstrates a bystander effect, inhibiting tumor growth of adjacent cells, offering potential therapeutic strategies for lung cancer.
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