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Analysis of Simian Immunodeficiency Virus-specific CD8+ T-cells in Rhesus Macaques by Peptide-MHC-I Tetramer Staining
Published on: December 23, 2016
Subtle differences in the pathogenicity of SARS-CoV-2 variants of concern B.1.1.7 and B.1.351 in rhesus macaques
Vincent J Munster1, Meaghan Flagg1, Manmeet Singh1
1Laboratory of Virology, Division of Intramural Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, MT, United States of America.
Abstract:
The emergence of several SARS-CoV-2 variants has caused global concerns about increased transmissibility, increased pathogenicity, and decreased efficacy of medical countermeasures. Animal models can be used to assess phenotypical changes in the absence of confounding factors that affect observed pathogenicity and transmissibility data in the human population. Here, we studied the pathogenicity of variants of concern (VOC) B.1.1.7 and B.1.351 in rhesus macaques and compared it to a recent clade B.1 SARS-CoV-2 isolate containing the D614G substitution in the spike protein. The B.1.1.7 VOC behaved similarly to the D614G with respect to clinical disease, virus shedding and virus replication in the respiratory tract. Inoculation with the B.1.351 isolate resulted in lower clinical scores in rhesus macaques that correlated with lower virus titers in the lungs, less severe histologic lung lesions and less viral antigen detected in the lungs. We observed differences in the local innate immune response to infection. In bronchoalveolar lavages, cytokines and chemokines were upregulated on day 4 in animals inoculated with D614G and B.1.1.7 but not in those inoculated with B.1.351. In nasal samples, we did not detect upregulation of cytokines and chemokines in D614G or B.1.351-inoculated animals. However, cytokines and chemokines were upregulated in the noses of B.1.1.7-inoculated animals. Taken together, our comparative pathogenicity study suggests that ongoing circulation under diverse evolutionary pressure favors transmissibility and immune evasion rather than an increase in intrinsic pathogenicity.
Insights
New SARS-CoV-2 variants like B.1.1.7 and B.1.351 were studied in rhesus macaques. The B.1.351 variant showed lower pathogenicity, suggesting evolution favors transmissibility over increased disease severity.
Area of Science:
- Virology
- Immunology
- Pathology
Background:
- Emerging SARS-CoV-2 variants of concern (VOCs) raise global health concerns regarding transmissibility and immune evasion.
- Animal models are crucial for evaluating variant pathogenicity without human confounding factors.
Approach:
- Comparative pathogenicity study of SARS-CoV-2 variants B.1.1.7 and B.1.351 in rhesus macaques.
- Comparison with a D614G-containing clade B.1 isolate.
- Assessment of clinical disease, virus shedding, replication, lung pathology, and innate immune responses (cytokines/chemokines).
Key Points:
- B.1.1.7 VOC exhibited similar pathogenicity to the D614G isolate in rhesus macaques.
- B.1.351 isolate resulted in reduced clinical signs, lower viral loads, and less severe lung pathology.
- Differential innate immune responses were observed, with B.1.1.7 inducing upregulation of cytokines/chemokines in nasal passages.
Conclusions:
- The study suggests SARS-CoV-2 evolution favors transmissibility and immune evasion over increased intrinsic pathogenicity.
- Findings highlight the importance of animal models in understanding variant-specific disease dynamics.

