Mouse models susceptible to HCoV-229E and HCoV-NL63 and cross protection from challenge with SARS-CoV-2

Donglan Liu1, Chunke Chen1, Dingbin Chen1

  • 1State Key Laboratory of Respiratory Disease, National Clinical Research Center for Respiratory Disease, Guangzhou Institute of Respiratory Health, The First Affiliated Hospital of Guangzhou Medical University, Guangzhou 510182, China.

Insights

New mouse models for common cold coronaviruses (CCCoV) were created using human receptors. These models help study HCoV-229E and HCoV-NL63, aiding vaccine and antiviral development against respiratory viruses.

Area of Science:

  • Virology
  • Immunology
  • Animal Models

Background:

  • Human coronavirus 229E (HCoV-229E) and NL63 (HCoV-NL63) cause respiratory infections but lack approved treatments.
  • Developing experimental animal models for these common cold coronaviruses (CCCoV) is crucial, especially considering potential cross-reactivity with SARS-CoV-2.

Purpose of the Study:

  • To establish functional mouse models for HCoV-229E and HCoV-NL63 infections.
  • To investigate the pathogenesis and immune responses induced by these common cold coronaviruses.
  • To evaluate the efficacy of antiviral therapeutics and vaccine candidates.

Main Methods:

  • Generated HCoV-229E and HCoV-NL63 mouse models by delivering human receptors (hAPN, hACE2) via adenoviruses (Ad5-hAPN, Ad5-hACE2).
  • Utilized IFNAR-/- and STAT1-/- mice to study infection dynamics, including pneumonia development and viral clearance.
  • Assessed virus-specific T cell and neutralizing antibody responses, and evaluated the impact of remdesivir and a spike protein vaccine candidate.

Main Results:

  • Adenovirus-mediated delivery of human receptors successfully sensitized mice to HCoV-229E and HCoV-NL63 infection, leading to pneumonia and viral clearance within 7 days.
  • Infected mice developed virus-specific T cells and neutralizing antibodies.
  • Remdesivir and a vaccine candidate accelerated viral clearance. Infected mice showed partial protection against SARS-CoV-2, suggesting cross-reactive T cell responses.

Conclusions:

  • Adenovirus-transduced mouse models are effective for studying HCoV-229E and HCoV-NL63 pathogenesis and immunity.
  • These models are valuable for validating broad-spectrum vaccines and therapeutics against human respiratory coronaviruses, including SARS-CoV-2.

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