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Isolation of Circulating Tumor Cells in an Orthotopic Mouse Model of Colorectal Cancer
Published on: July 18, 2017
[Molecular surgery for human colorectal cancer with tumor suppressor p53 gene transfer]
1First Department of Surgery, Okayama University Medical School, Japan.
Abstract:
Recent advances in molecular biology have demonstrated that multistep genetic alterations are involved in the carcinogenesis of human colorectal cancer and that alteration of the p53 gene by mutation, deletion, or rearrangement is a major factor in this process. Human gene therapy has become a reality with the development of effective techniques for delivering the gene to the target cells. The efficacy of gene therapy for various types of genetic disease now being evaluated in clinical trials. These findings led us to develop a novel gene therapeutic strategy for human colorectal cancer that could replace the abnormal p53 gene using a recombinant, replication-defective adenoviral vector (termed Adp53). Infection with Adp53 induced rapid apoptotic cell death in DLD-1 and LoVo human colorectal cancer cell lines differing in their p53 status. Treatment with cisplatin following infection with Adp53 significantly suppressed the growth of WiDr colorectal cancer cells compared to single treatments alone. Thus restoration of wild-type p53 function exhibited an antitumor effect by inducing apoptosis as well as by markedly enhancing the effect of common chemotherapeutic agents in human colorectal cancer cells. In addition, Adp53 infection was antiangiogenic in SW620 human colorectal cancer cells. The application of this technology to human cancer therapy is now in progress. The article reviews recent highlights in this rapidly evolving field.
Insights
Gene therapy using Adp53 effectively targets colorectal cancer by restoring p53 function, inducing apoptosis, and enhancing chemotherapy. This approach shows promise for treating human colorectal cancer.
Area of Science:
- Molecular biology
- Cancer genetics
- Gene therapy
Context:
- Colorectal cancer involves multistep genetic alterations, with p53 gene mutations being a key factor.
- Human gene therapy is advancing, with effective delivery techniques enabling clinical trials for genetic diseases.
Purpose:
- To develop a novel gene therapeutic strategy for human colorectal cancer.
- To replace the abnormal p53 gene using a recombinant, replication-defective adenoviral vector (Adp53).
Summary:
- Adp53 infection induced rapid apoptotic cell death in human colorectal cancer cell lines.
- Restoring wild-type p53 function demonstrated an antitumor effect by inducing apoptosis.
- Adp53 enhanced the efficacy of cisplatin chemotherapy and exhibited antiangiogenic properties.
Impact:
- Adp53 exhibits significant antitumor effects in colorectal cancer models.
- This gene therapy strategy enhances conventional chemotherapy.
- Adp53 demonstrates antiangiogenic potential, offering a multifaceted approach to cancer treatment.
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