4.7 Article

A multi-tissue study of immune gene expression profiling highlights the key role of the nasal epithelium in COVID-19 severity

期刊

ENVIRONMENTAL RESEARCH
卷 210, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2022.112890

关键词

COVID-19 severity; Gene expression; Immune response; Pathways analysis; Multi-tissue; Differential expression analysis; Co-expression analysis; SARS-CoV-2

资金

  1. Instituto de Salud Carlos III (ISCIII): GePEM
  2. Instituto de Salud Carlos III (ISCIII): DIAVIR [DTS19/00049]
  3. Instituto de Salud Carlos III (ISCIII): Resvi-Omics [PI19/01039]
  4. Instituto de Salud Carlos III (ISCIII): ReSVinext [PI16/01569]
  5. Instituto de Salud Carlos III (ISCIII): Enterogen [PI19/01090]
  6. Agencia Gallega para la Gestion del Conocimiento en Salud (ACIS): BI-BACVIR [PRIS-3]
  7. Agencia Gallega para la Gestion del Conocimiento en Salud (ACIS): CovidPhy [SA 304 C]
  8. Agencia Gallega de Innovacion (GAIN): Grupos con Potencial de Crecimiento [IN607B 2020/08]
  9. Agencia Gallega de Innovacion (GAIN): GEN-COVID [IN845D 2020/23]
  10. Conselleria de Sanidad de la XUNTA de Galicia
  11. GENVIP-IDIS-2021-2024 (SERGAS-IDIS march 2021)
  12. consorcio Centro de Investigacion Biomedica en Red deEnfermedades Respiratorias [CB21/06/00103]
  13. [GENVIP-IDIS-2021-2024]
  14. [PI16/01478]

向作者/读者索取更多资源

This study analyzed the gene expression of immune-related genes in different tissues (nasal, buccal, and blood) from patients with different severities of COVID-19 and healthy controls. The findings suggest that mild and asymptomatic cases exhibit a powerful innate antiviral response in the nasal epithelium, while severe cases lack this response. Severe cases show signs of viral activity and viral dissemination to the lower respiratory tract in the oral mucosa, which may explain the exacerbated innate immune response and impaired adaptive immune response observed at a systemic level. The results also suggest the potential role of the buccal cavity in SARS-CoV-2 infection and dissemination in patients with worse prognosis.
Coronavirus Disease-19 (COVID-19) symptoms range from mild to severe illness; the cause for this differential response to infection remains unknown. Unravelling the immune mechanisms acting at different levels of the colonization process might be key to understand these differences. We carried out a multi-tissue (nasal, buccal and blood; n = 156) gene expression analysis of immune-related genes from patients affected by different COVID19 severities, and healthy controls through the nCounter technology. Mild and asymptomatic cases showed a powerful innate antiviral response in nasal epithelium, characterized by activation of interferon (IFN) pathway and downstream cascades, successfully controlling the infection at local level. In contrast, weak macrophage/monocyte driven innate antiviral response and lack of IFN signalling activity were present in severe cases. Consequently, oral mucosa from severe patients showed signals of viral activity, cell arresting and viral dissemination to the lower respiratory tract, which ultimately could explain the exacerbated innate immune response and impaired adaptative immune responses observed at systemic level. Results from saliva transcriptome suggest that the buccal cavity might play a key role in SARS-CoV-2 infection and dissemination in patients with worse prognosis. Co-expression network analysis adds further support to these findings, by detecting modules specifically correlated with severity involved in the abovementioned biological routes; this analysis also provides new candidate genes that might be tested as biomarkers in future studies. We also found tissue specific severity-related signatures mainly represented by genes involved in the innate immune system and cytokine/chemokine signalling. Local immune response could be key to determine the course of the systemic response and thus COVID-19 severity. Our findings provide a framework to investigate severity host gene biomarkers and pathways that might be relevant to diagnosis, prognosis, and therapy.

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