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Published on: May 25, 2022
Development of Molecular Mechanisms and Their Application on Oncolytic Newcastle Disease Virus in Cancer Therapy
Fang Huang1, Chuanjing Dai1,2, Youni Zhang2,3
1Cancer Center, Department of Pathology, Zhejiang Provincial People's Hospital (Affiliated People's Hospital, Hangzhou Medical College), Hangzhou, China.
Abstract:
Cancer is caused by the destruction or mutation of cellular genetic materials induced by environmental or genetic factors. It is defined by uncontrolled cell proliferation and abnormality of the apoptotic pathways. The majority of human malignancies are characterized by distant metastasis and dissemination. Currently, the most common means of cancer treatment include surgery, radiotherapy, and chemotherapy, which usually damage healthy cells and cause toxicity in patients. Targeted therapy is an effective tumor treatment method with few side effects. At present, some targeted therapeutic drugs have achieved encouraging results in clinical studies, but finding an effective solution to improve the targeting and delivery efficiency of these drugs remains a challenge. In recent years, oncolytic viruses (OVs) have been used to direct the tumor-targeted therapy or immunotherapy. Newcastle disease virus (NDV) is a solid oncolytic agent capable of directly killing tumor cells and increasing tumor antigen exposure. Simultaneously, NDV can trigger the proliferation of tumor-specific immune cells and thus improve the therapeutic efficacy of NDV in cancer. Based on NDV's inherent oncolytic activity and the stimulation of antitumor immune responses, the combination of NDV and other tumor therapy approaches can improve the antitumor efficacy while reducing drug toxicity, indicating a broad application potential. We discussed the biological properties of NDV, the antitumor molecular mechanisms of oncolytic NDV, and its application in the field of tumor therapy in this review. Furthermore, we presented new insights into the challenges that NDV will confront and suggestions for increasing NDV's therapeutic efficacy in cancer.
Insights
Newcastle disease virus (NDV) shows promise as an oncolytic virus for cancer therapy. Its ability to directly kill tumor cells and stimulate anti-tumor immunity offers a potent strategy for improving cancer treatment efficacy and reducing toxicity.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Cancer is characterized by uncontrolled cell proliferation and metastasis, often treated with toxic therapies like chemotherapy.
- Targeted cancer therapies show promise but face challenges in efficient delivery and targeting.
- Oncolytic viruses (OVs) are emerging as a strategy for tumor-targeted therapy and immunotherapy.
Purpose of the Study:
- To review the biological properties and antitumor mechanisms of Newcastle disease virus (NDV) as an oncolytic agent.
- To explore the application of NDV in cancer therapy, focusing on its potential to enhance existing treatments.
- To provide insights into the challenges and future directions for optimizing NDV-based cancer therapies.
Main Methods:
- Review of existing literature on Newcastle disease virus (NDV) and its role in cancer.
- Analysis of NDV's direct oncolytic activity and its immunomodulatory effects.
- Discussion of combination strategies involving NDV and other cancer treatments.
Main Results:
- NDV directly kills tumor cells and enhances tumor antigen presentation.
- NDV stimulates tumor-specific immune cell proliferation, boosting the overall anti-tumor immune response.
- Combining NDV with other therapies can improve efficacy and reduce drug toxicity.
Conclusions:
- NDV possesses significant potential as an oncolytic virus for cancer treatment due to its dual action of direct tumor cell killing and immune stimulation.
- Combination therapies involving NDV offer a promising approach to enhance anti-tumor efficacy while minimizing side effects.
- Further research is needed to overcome challenges and optimize NDV's therapeutic application in various cancers.
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