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Published on: February 23, 2014
Human genetic and immunological determinants of critical COVID-19 pneumonia
Qian Zhang1,2,3, Paul Bastard4,5,6,7,
1St Giles Laboratory of Human Genetics of Infectious Diseases, Rockefeller Branch, The Rockefeller University, New York, NY, USA. qzhang02@rockefeller.edu.
Insights
Genetic and autoimmune factors affecting type I interferons (IFNs) explain at least 15% of critical COVID-19 pneumonia cases. Insufficient type I IFN immunity in the respiratory tract may drive severe disease, influenced by age and sex.
Area of Science:
- Immunology
- Virology
- Genetics
Background:
- SARS-CoV-2 infection is usually mild, but 10% develop hypoxemic pneumonia, with 3% critically ill.
- Mortality risk increases with age and is higher in males.
Purpose of the Study:
- To review molecular and cellular factors determining critical COVID-19 pneumonia.
- To identify genetic and autoimmune causes of severe SARS-CoV-2.
- To understand the role of type I interferons (IFNs) in COVID-19 pathogenesis.
Main Methods:
- Review of existing literature on molecular and cellular determinants of critical COVID-19 pneumonia.
- Analysis of prevalence of inborn errors and auto-antibodies against type I IFNs in critical COVID-19 patients.
Main Results:
- Inborn errors of type I IFNs (TLR3, TLR7 deficiencies) found in 1-5% of critical pneumonia patients under 60.
- Auto-antibodies neutralizing type I IFNs (IFNα, IFNβ, IFNω) found in 15-20% of critical pneumonia patients over 70.
- At least 15% of critical COVID-19 pneumonia cases are explained by these IFN-related immune defects.
Conclusions:
- Type I IFN immunity, particularly TLR3/TLR7-dependent production, is crucial for host defense against SARS-CoV-2.
- Insufficient type I IFN immunity early in infection can lead to viral spread and severe inflammation.
- Age and sex influence the prevalence and impact of these immune defects in critical COVID-19.
Abstract:
SARS-CoV-2 infection is benign in most individuals but, in around 10% of cases, it triggers hypoxaemic COVID-19 pneumonia, which leads to critical illness in around 3% of cases. The ensuing risk of death (approximately 1% across age and gender) doubles every five years from childhood onwards and is around 1.5 times greater in men than in women. Here we review the molecular and cellular determinants of critical COVID-19 pneumonia. Inborn errors of type I interferons (IFNs), including autosomal TLR3 and X-chromosome-linked TLR7 deficiencies, are found in around 1-5% of patients with critical pneumonia under 60 years old, and a lower proportion in older patients. Pre-existing auto-antibodies neutralizing IFNα, IFNβ and/or IFNω, which are more common in men than in women, are found in approximately 15-20% of patients with critical pneumonia over 70 years old, and a lower proportion in younger patients. Thus, at least 15% of cases of critical COVID-19 pneumonia can be explained. The TLR3- and TLR7-dependent production of type I IFNs by respiratory epithelial cells and plasmacytoid dendritic cells, respectively, is essential for host defence against SARS-CoV-2. In ways that can depend on age and sex, insufficient type I IFN immunity in the respiratory tract during the first few days of infection may account for the spread of the virus, leading to pulmonary and systemic inflammation.
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