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Updated: Jun 5, 2026

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Production of High-Titer Recombinant Newcastle Disease Virus from Allantoic Fluid
Published on: May 25, 2022
Developing an oncolytic Newcastle disease virus production process with EB66 cells
Lennart Jacobtorweihe1, Annabelle Saulnier2, Arnaud Léon2
1Max Planck Institute for Dynamics of Complex Technical Systems, Magdeburg, Germany.
Applied Microbiology and Biotechnology
|June 4, 2026
Summary
EB66 cells show promise for large-scale Newcastle disease virus (NDV) production, a potential cancer therapy. This study optimized NDV production using EB66 cells, achieving high titers and demonstrating oncolytic potency in mice.
Area of Science:
- Biotechnology
- Virology
- Cancer Research
Background:
- Newcastle disease virus (NDV) is researched as an oncolytic virus for cancer therapy.
- Large-scale manufacturing of high-dose NDV is challenging with current cell lines like Vero.
- Vero cells have limitations in achieving high cell densities for efficient viral vector production.
Purpose of the Study:
- To evaluate EB66 cells as a producer cell line for oncolytic Newcastle disease virus (NDV).
- To optimize NDV production in EB66 cells using batch and semi-perfusion culture modes.
- To assess the cell growth, virus yield, and in vivo efficacy of NDV produced in EB66 cells.
Main Methods:
- Cultivation of EB66 cells in batch and semi-perfusion modes.
- Optimization of infection parameters: temperature, protease concentration (TrypLE), and multiplicity of infection.
- Production of NDV LaSota strain in stirred tank and orbital shaken bioreactors.
- Evaluation of virus potency and in vivo tumor reduction in a mouse model.
Main Results:
- EB66 cells demonstrated effective cell growth and high cell-specific virus productivity.
- Batch processes achieved up to 4.2 × 10^8 TCID50/mL NDV with a yield of 41 TCID50/cell.
- Semi-perfusion runs reached 6.5 × 10^7 cells/mL and a virus titer of 7.5 × 10^8 TCID50/mL.
- Produced NDV showed potency and reduced tumor size in mice.
Conclusions:
- EB66 cells are a highly effective host cell line for the large-scale production of oncolytic NDV.
- Process optimization in EB66 cells enables enhanced viral vector yields.
- EB66-derived NDV holds potential for effective cancer therapy.

