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.

Journal of Virology
|December 15, 2021
PubMed

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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