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Updated: Mar 23, 2026

Production of High-Titer Recombinant Newcastle Disease Virus from Allantoic Fluid
Published on: May 25, 2022
Genetic Modification of Oncolytic Newcastle Disease Virus for Cancer Therapy
Xing Cheng1, Weijia Wang1, Qi Xu1
1MedImmune, Mountain View, California, USA.
Unlabelled:
Clinical development of a mesogenic strain of Newcastle disease virus (NDV) as an oncolytic agent for cancer therapy has been hampered by its select agent status due to its pathogenicity in avian species. Using reverse genetics, we have generated a lead candidate oncolytic NDV based on the mesogenic NDV-73T strain that is no longer classified as a select agent for clinical development. This recombinant NDV has a modification at the fusion protein (F) cleavage site to reduce the efficiency of F protein cleavage and an insertion of a 198-nucleotide sequence into the HN-L intergenic region, resulting in reduced viral gene expression and replication in avian cells but not in mammalian cells. In mammalian cells, except for viral polymerase (L) gene expression, viral gene expression is not negatively impacted or increased by the HN-L intergenic insertion. Furthermore, the virus can be engineered to express a foreign gene while still retaining the ability to grow to high titers in cell culture. The recombinant NDV selectively replicates in and kills tumor cells and is able to drive potent tumor growth inhibition following intratumoral or intravenous administration in a mouse tumor model. The candidate is well positioned for clinical development as an oncolytic virus.
Importance:
Avian paramyxovirus type 1, NDV, has been an attractive oncolytic agent for cancer virotherapy. However, this virus can cause epidemic disease in poultry, and concerns about the potential environmental and economic impact of an NDV outbreak have precluded its clinical development. Here we describe generation and characterization of a highly potent oncolytic NDV variant that is unlikely to cause Newcastle disease in its avian host, representing an essential step toward moving NDV forward as an oncolytic agent. Several attenuation mechanisms have been genetically engineered into the recombinant NDV that reduce chicken pathogenicity to a level that is acceptable worldwide without impacting viral production in cell culture. The selective tumor replication of this recombinant NDV, both in vitro and in vivo, along with efficient tumor cell killing makes it an attractive oncolytic virus candidate that may provide clinical benefit to patients.
Insights
A modified Newcastle disease virus (NDV) is now a viable oncolytic agent for cancer therapy. This engineered virus selectively targets and destroys tumor cells without harming avian species, paving the way for clinical trials.
Area of Science:
- Virology
- Oncolytic Virus Therapy
- Cancer Research
Background:
- Newcastle disease virus (NDV) shows promise as an oncolytic agent for cancer virotherapy.
- Clinical development has been hindered by NDV's pathogenicity in avian species and its select agent status.
- Concerns over environmental and economic impact of NDV outbreaks have limited its therapeutic application.
Purpose of the Study:
- To engineer a novel NDV variant suitable for clinical development as an oncolytic virus.
- To attenuate NDV's pathogenicity in avian hosts while maintaining oncolytic efficacy.
- To overcome regulatory hurdles associated with NDV's select agent classification.
Main Methods:
- Utilized reverse genetics to create a recombinant NDV based on the mesogenic NDV-73T strain.
- Modified the fusion protein (F) cleavage site to decrease cleavage efficiency.
- Inserted a sequence into the HN-L intergenic region to modulate gene expression and replication.
Main Results:
- The recombinant NDV is no longer classified as a select agent, facilitating clinical development.
- Engineered NDV exhibits reduced replication and gene expression in avian cells but not mammalian cells.
- Demonstrated selective replication in and killing of tumor cells in vitro and in vivo.
- Showed potent tumor growth inhibition in a mouse model following intratumoral or intravenous administration.
- The virus can be engineered to express foreign genes while maintaining high titers in cell culture.
Conclusions:
- The developed recombinant NDV is a potent oncolytic agent with significantly reduced avian pathogenicity.
- This engineered NDV is well-positioned for clinical development as a cancer therapeutic.
- The modifications ensure safety for avian species while preserving efficacy against tumors.
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