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Updated: Jul 10, 2026

A Murine Model of Dengue Virus-induced Acute Viral Encephalitis-like Disease
Published on: April 28, 2019
Development of a model for marburgvirus based on severe-combined immunodeficiency mice
Kelly L Warfield1, Derron A Alves, Steven B Bradfute
1United States Army Medical Research Institute of Infectious Diseases, Fort Detrick, Maryland, USA. kelly.warfield@us.army.mil
Abstract:
The filoviruses, Ebola (EBOV) and Marburg (MARV), cause a lethal hemorrhagic fever. Human isolates of MARV are not lethal to immmunocompetent adult mice and, to date, there are no reports of a mouse-adapted MARV model. Previously, a uniformly lethal EBOV-Zaire mouse-adapted virus was developed by performing 9 sequential passages in progressively older mice (suckling to adult). Evaluation of this model identified many similarities between infection in mice and nonhuman primates, including viral tropism for antigen-presenting cells, high viral titers in the spleen and liver, and an equivalent mean time to death. Existence of the EBOV mouse model has increased our understanding of host responses to filovirus infections and likely has accelerated the development of countermeasures, as it is one of the only hemorrhagic fever viruses that has multiple candidate vaccines and therapeutics. Here, we demonstrate that serially passaging liver homogenates from MARV-infected severe combined immunodeficient (scid) mice was highly successful in reducing the time to death in scid mice from 50-70 days to 7-10 days after MARV-Ci67, -Musoke, or -Ravn challenge. We performed serial sampling studies to characterize the pathology of these scid mouse-adapted MARV strains. These scid mouse-adapted MARV models appear to have many similar properties as the MARV models previously developed in guinea pigs and nonhuman primates. Also, as shown here, the scid-adapted MARV mouse models can be used to evaluate the efficacy of candidate antiviral therapeutic molecules, such as phosphorodiamidate morpholino oligomers or antibodies.
Insights
Researchers developed a Marburg virus (MARV) mouse model by adapting the virus through serial passage in mice. This new model mimics MARV disease in humans and can accelerate the development of antiviral therapies.
Area of Science:
- Virology
- Immunology
- Infectious Diseases
Background:
- Filoviruses, including Ebola (EBOV) and Marburg (MARV), cause severe hemorrhagic fever.
- Existing MARV mouse models are lacking, hindering research and countermeasure development.
- An EBOV mouse model has proven valuable for understanding host responses and therapeutic development.
Purpose of the Study:
- To develop and characterize a MARV-adapted mouse model for preclinical research.
- To establish a reliable model for evaluating MARV antiviral therapies.
Main Methods:
- Serial liver homogenate passaging from MARV-infected severe combined immunodeficient (scid) mice.
- MARV challenge studies in scid mice using adapted strains (MARV-Ci67, -Musoke, -Ravn).
- Pathological characterization through serial sampling.
Main Results:
- Reduced MARV time to death in scid mice from 50-70 days to 7-10 days.
- Developed MARV-adapted scid mouse strains exhibiting similar properties to models in guinea pigs and nonhuman primates.
- Demonstrated the utility of these scid mouse models for evaluating antiviral efficacy.
Conclusions:
- Successfully adapted MARV strains to mice, creating a valuable preclinical model.
- The scid mouse-adapted MARV model offers a platform for accelerated development of MARV therapeutics.
- This model enhances our understanding of MARV pathogenesis and host-pathogen interactions.

