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Published on: April 15, 2016
Selective oncolytic effect of an attenuated Newcastle disease virus (NDV-HUJ) in lung tumors
B Yaacov1, E Eliahoo, E Elihaoo
1Department of Virology, Hadassah Medical School, The Hebrew University, Jerusalem, Israel.
Abstract:
Newcastle disease virus (NDV), an avian paramyxovirus, has a potential oncolytic effect that may be of significance in the treatment of a variety of cancer diseases. An attenuated lentogenic isolate of NDV (HUJ) demonstrated a selective cytopathic effect upon a panel of human and mouse lung tumor cells, as compared to human nontumorigenic lung cells. The virus-selective oncolytic effect is apoptosis dependent, and related to higher levels of viral transcription, translation and progeny virus formation. Furthermore, NDV-HUJ oncolytic activity is directed in-cis and not through induction of cytokines, that may act in-trans on neighboring cells. Development of primary lung tumors and of the consequent metastasis in mice inoculated with mouse lung tumor cells 3LL-D122 was decreased following treatment with NDV-HUJ. The preferential killing of the tumor cells is not due to a deficiency in the interferon (IFN) system, as expression of the IFN-beta gene, in the infected cells, is properly induced. Moreover, pretreatment with IFN effectively protected the tumor cells from the virus oncolytic effect. We conclude therefore, that NDV-HUJ should have a significant benefit in the treatment of lung cancer as well as other malignancies.
Insights
Newcastle disease virus (NDV) shows promise as an oncolytic therapy. This avian paramyxovirus selectively targets and destroys lung tumor cells, offering potential for cancer treatment.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Newcastle disease virus (NDV), an avian paramyxovirus, exhibits oncolytic potential for cancer treatment.
- An attenuated NDV isolate (HUJ) selectively targets lung tumor cells.
Purpose of the Study:
- To investigate the oncolytic effect of NDV-HUJ on lung cancer cells.
- To elucidate the mechanisms underlying NDV-HUJ's selective tumor cell killing.
Main Methods:
- In vitro studies using human and mouse lung tumor cells and human nontumorigenic lung cells.
- In vivo studies in mice with induced lung tumors and metastasis.
- Analysis of viral transcription, translation, progeny virus formation, and interferon (IFN) gene expression.
Main Results:
- NDV-HUJ demonstrated selective cytopathic effects on lung tumor cells, dependent on apoptosis.
- Oncolytic activity was in-cis and not mediated by cytokines.
- NDV-HUJ treatment reduced primary lung tumor development and metastasis in mice.
- Tumor cell killing was not due to interferon system deficiency; IFN pretreatment protected cells.
Conclusions:
- NDV-HUJ possesses significant oncolytic activity against lung cancer.
- The virus selectively targets tumor cells via apoptosis, with potential for treating various malignancies.
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