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Production of High-Titer Recombinant Newcastle Disease Virus from Allantoic Fluid
Published on: May 25, 2022
Oncolytic Newcastle Disease Virus as Cutting Edge between Tumor and Host
Philippe Fournier1, Volker Schirrmacher2
1German Cancer Research Center (DKFZ), Im Neuenheimer Feld 280, 69120 Heidelberg, Germany. P.fournier1@yahoo.de.
Abstract:
Oncolytic viruses (OVs) replicate selectively in tumor cells and exert anti-tumor cytotoxic activity. Among them, Newcastle Disease Virus (NDV), a bird RNA virus of the paramyxovirus family, appears outstanding. Its anti-tumor effect is based on: (i) oncolytic activity and (ii) immunostimulation. Together these activities facilitate the induction of post-oncolytic adaptive immunity. We will present milestones during the last 60 years of clinical evaluation of this virus. Two main strategies of clinical application were followed using the virus (i) as a virotherapeutic agent, which is applied systemically or (ii) as an immunostimulatory agent combined with tumor cells for vaccination of cancer patients. More recently, a third strategy evolved. It combines the strategies (i) and (ii) and includes also dendritic cells (DCs). The first step involves systemic application of NDV to condition the patient. The second step involves intradermal application of a special DC vaccine pulsed with viral oncolysate. This strategy, called NDV/DC, combines anti-cancer activity (oncolytic virotherapy) and immune-stimulatory properties (oncolytic immunotherapy) with the high potential of DCs (DC therapy) to prime naive T cells. The aim of such treatment is to first prepare the cancer-bearing host for immunocompetence and then to instruct the patient's immune system with information about tumor-associated antigens (TAAs) of its own tumor together with danger signals derived from virus infection. This multimodal concept should optimize the generation of strong polyclonal T cell reactivity targeted against the patient's TAAs and lead to the establishment of a long-lasting memory T cell repertoire.
Insights
Newcastle Disease Virus (NDV) offers potent anti-cancer effects through oncolytic activity and immune stimulation. A novel NDV/dendritic cell (DC) therapy combines virotherapy and immunotherapy to generate robust, long-lasting T cell responses against tumors.
Area of Science:
- Oncolytic virotherapy
- Immunotherapy
- Cancer treatment
Background:
- Oncolytic viruses (OVs) selectively target and destroy tumor cells, stimulating anti-tumor immune responses.
- Newcastle Disease Virus (NDV), a bird RNA virus, demonstrates significant oncolytic and immunostimulatory properties.
- Clinical applications of NDV have evolved over 60 years, moving from direct virotherapy to combination strategies.
Purpose of the Study:
- To review the clinical evaluation milestones of NDV in cancer treatment.
- To describe the development of a novel multimodal cancer therapy combining NDV and dendritic cells (DCs).
- To highlight the potential of this NDV/DC strategy to induce robust and durable anti-tumor adaptive immunity.
Main Methods:
- Systemic administration of NDV to condition the patient's immune system.
- Intradermal delivery of a dendritic cell (DC) vaccine pulsed with viral oncolysate.
- Combining oncolytic virotherapy, oncolytic immunotherapy, and DC therapy for a multimodal approach.
Main Results:
- NDV exhibits both direct tumor cell killing (oncolysis) and immune system activation.
- The NDV/DC strategy aims to prime the host for immunocompetence and educate the immune system about tumor-associated antigens (TAAs).
- This approach is designed to generate strong, polyclonal T cell reactivity against TAAs and establish long-lasting T cell memory.
Conclusions:
- NDV is a promising oncolytic virus with a long history of clinical investigation.
- A novel NDV/DC multimodal therapy integrates virotherapy, immunotherapy, and DC therapy.
- This combined strategy holds significant potential for optimizing anti-tumor immune responses and achieving durable clinical benefit in cancer patients.
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