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1.
Viruses ; 16(4)2024 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-38675952

RESUMO

This study investigates the roles of T, B, and Natural Killer (NK) cells in the pathogenesis of severe COVID-19, utilizing mouse-adapted SARS-CoV-2-MA30 (MA30). To evaluate this MA30 mouse model, we characterized MA30-infected C57BL/6 mice (B6) and compared them with SARS-CoV-2-WA1 (an original SARS-CoV-2 strain) infected K18-human ACE2 (K18-hACE2) mice. We found that the infected B6 mice developed severe peribronchial inflammation and rapid severe pulmonary edema, but less lung interstitial inflammation than the infected K18-hACE2 mice. These pathological findings recapitulate some pathological changes seen in severe COVID-19 patients. Using this MA30-infected mouse model, we further demonstrate that T and/or B cells are essential in mounting an effective immune response against SARS-CoV-2. This was evident as Rag2-/- showed heightened vulnerability to infection and inhibited viral clearance. Conversely, the depletion of NK cells did not significantly alter the disease course in Rag2-/- mice, underscoring the minimal role of NK cells in the acute phase of MA30-induced disease. Together, our results indicate that T and/or B cells, but not NK cells, mitigate MA30-induced disease in mice and the infected mouse model can be used for dissecting the pathogenesis and immunology of severe COVID-19.


Assuntos
COVID-19 , Proteínas de Ligação a DNA , Modelos Animais de Doenças , Células Matadoras Naturais , Camundongos Endogâmicos C57BL , SARS-CoV-2 , Animais , Células Matadoras Naturais/imunologia , COVID-19/imunologia , COVID-19/virologia , Camundongos , SARS-CoV-2/imunologia , SARS-CoV-2/patogenicidade , Proteínas de Ligação a DNA/genética , Proteínas de Ligação a DNA/deficiência , Camundongos Knockout , Humanos , Pulmão/patologia , Pulmão/virologia , Pulmão/imunologia , Enzima de Conversão de Angiotensina 2/genética , Enzima de Conversão de Angiotensina 2/metabolismo , Linfócitos B/imunologia , Feminino , Linfócitos T/imunologia
2.
Cell Mol Life Sci ; 81(1): 94, 2024 Feb 18.
Artigo em Inglês | MEDLINE | ID: mdl-38368584

RESUMO

The complement system, a key component of innate immunity, provides the first line of defense against bacterial infection; however, the COVID-19 pandemic has revealed that it may also engender severe complications in the context of viral respiratory disease. Here, we review the mechanisms of complement activation and regulation and explore their roles in both protecting against infection and exacerbating disease. We discuss emerging evidence related to complement-targeted therapeutics in COVID-19 and compare the role of the complement in other respiratory viral diseases like influenza and respiratory syncytial virus. We review recent mechanistic studies and animal models that can be used for further investigation. Novel knockout studies are proposed to better understand the nuances of the activation of the complement system in respiratory viral diseases.


Assuntos
COVID-19 , Influenza Humana , Vírus Sincicial Respiratório Humano , Animais , Humanos , Pandemias , Proteínas do Sistema Complemento
3.
Commun Biol ; 6(1): 1265, 2023 12 13.
Artigo em Inglês | MEDLINE | ID: mdl-38092883

RESUMO

SARS-CoV-2 infection can cause persistent respiratory sequelae. However, the underlying mechanisms remain unclear. Here we report that sub-lethally infected K18-human ACE2 mice show patchy pneumonia associated with histiocytic inflammation and collagen deposition at 21 and 45 days post infection (DPI). Transcriptomic analyses revealed that compared to influenza-infected mice, SARS-CoV-2-infected mice had reduced interferon-gamma/alpha responses at 4 DPI and failed to induce keratin 5 (Krt5) at 6 DPI in lung, a marker of nascent pulmonary progenitor cells. Histologically, influenza- but not SARS-CoV-2-infected mice showed extensive Krt5+ "pods" structure co-stained with stem cell markers Trp63/NGFR proliferated in the pulmonary consolidation area at both 7 and 14 DPI, with regression at 21 DPI. These Krt5+ "pods" structures were not observed in the lungs of SARS-CoV-2-infected humans or nonhuman primates. These results suggest that SARS-CoV-2 infection fails to induce nascent Krt5+ cell proliferation in consolidated regions, leading to incomplete repair of the injured lung.


Assuntos
COVID-19 , Influenza Humana , Camundongos , Humanos , Animais , SARS-CoV-2 , Pulmão , Perfilação da Expressão Gênica
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