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Updated: Oct 10, 2025

Author Spotlight: Marmoset Research - Scope and Challenges
Published on: June 9, 2023
Comparison of Experimental Middle East Respiratory Syndrome Coronavirus Infection Acquired by Three Individual Routes
Michelle Nelson1, Lyn M O'Brien1, Carwyn Davies1
1CBR Division, Defence Science and Technology Laboratorygrid.417845.b (Dstl), Porton Down, Salisbury, Wiltshire, United Kingdom.
Abstract:
Two strains of Middle East respiratory syndrome coronavirus (MERS-CoV), England 1 and Erasmus Medical Centre/2012 (EMC/2012), were used to challenge common marmosets (Callithrix jacchus) by three routes of infection: aerosol, oral, and intranasal. Animals challenged by the intranasal and aerosol routes presented with mild, transient disease, while those challenged by the oral route presented with a subclinical immunological response. Animals challenged with MERS-CoV strain EMC/2012 by the aerosol route responded with primary and/or secondary pyrexia. Marmosets had minimal to mild multifocal interstitial pneumonia, with the greatest relative severity being observed in animals challenged by the aerosol route. Viable virus was isolated from the host in throat swabs and lung tissue. The transient disease described is consistent with a successful host response and was characterized by the upregulation of macrophage and neutrophil function observed in all animals at the time of euthanasia. IMPORTANCE Middle East respiratory syndrome is caused by a human coronavirus, MERS-CoV, similar to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Humans typically exhibit fever, cough, shortness of breath, gastrointestinal issues, and breathing difficulties, which can lead to pneumonia and/or renal complications. This emerging disease resulted in the first human lethal cases in 2012 and has a case fatality rate of approximately 36%. Consequently, there is a need for medical countermeasures and appropriate animal models for their assessment. This work has demonstrated the requirement for higher concentrations of virus to cause overt disease. Challenge by the aerosol, intranasal, and oral routes resulted in no or mild disease, but all animals had an immunological response. This shows that an appropriate early immunological response is able to control the disease.
Insights
Common marmosets challenged with Middle East respiratory syndrome coronavirus (MERS-CoV) showed mild disease and a strong immune response, indicating a need for higher viral concentrations to induce severe illness in this animal model.
Area of Science:
- Virology
- Immunology
- Comparative Pathology
Background:
- Middle East respiratory syndrome (MERS) is a significant public health concern caused by MERS-CoV, a virus similar to SARS-CoV-2.
- MERS can lead to severe respiratory and renal complications with a high case fatality rate, necessitating effective medical countermeasures.
- Developing appropriate animal models is crucial for assessing the efficacy of these countermeasures.
Purpose of the Study:
- To evaluate common marmosets (Callithrix jacchus) as an animal model for MERS-CoV infection.
- To investigate the disease progression and host response following challenge with different MERS-CoV strains and routes of infection.
Main Methods:
- Common marmosets were challenged with two MERS-CoV strains (England 1 and EMC/2012) via aerosol, oral, or intranasal routes.
- Clinical signs, viral shedding, pathological changes (interstitial pneumonia), and immune cell function (macrophage and neutrophil upregulation) were assessed.
Main Results:
- Intranasal and aerosol MERS-CoV challenge resulted in mild, transient disease, while oral challenge induced a subclinical immunological response.
- Aerosol challenge with MERS-CoV strain EMC/2012 led to pyrexia in some animals.
- Minimal to mild multifocal interstitial pneumonia was observed, most severe in the aerosol route group.
- Viable virus was isolated from throat swabs and lung tissue; all animals showed upregulated immune cell function.
Conclusions:
- Common marmosets exhibit a controlled host response to MERS-CoV, with mild disease and immunological activation across different challenge routes.
- Higher viral concentrations may be required to induce overt disease in marmosets, suggesting their potential as a model for studying early host responses and immune control.
- The observed immunological response indicates the model's utility for evaluating MERS-CoV medical countermeasures.
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