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Kurum makalesi · Scopus üzerinden alınan atıf kaydı

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SARS-CoV-2-related MIS-C: A key to the viral and genetic causes of Kawasaki disease?
Journal of Experimental Medicine Cilt 218
Scopus Open Access Toplam 137 atıf DOI
Multisystem inflammatory syndrome in children (MIS-C) emerged in April 2020 in communities with high COVID-19 rates. This new condition is heterogenous but resembles Kawasaki disease (KD), a well-known but poorly understood and clinically heterogenous pediatric inflammatory condition for which weak associations have been found with a myriad of viral illnesses. Epidemiological data clearly indicate that SARS-CoV-2 is the trigger for MIS-C, which typically occurs about 1 mo after infection. These findings support the hypothesis of viral triggers for the various forms of classic KD. We further suggest that rare inborn errors of immunity (IEIs) altering the immune response to SARS-CoV-2 may underlie the pathogenesis of MIS-C in some children. The discovery of monogenic IEIs underlying MIS-C would shed light on its pathogenesis, paving the way for a new genetic approach to classic KD, revisited as a heterogeneous collection of IEIs to viruses.
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Human genetic and immunological determinants of critical COVID-19 pneumonia
Nature Cilt 603 ss. 587-598
Scopus Havuzumuzda Open Access 316 atıf almış
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.
Atıf Yapan Makale Bilgileri
Kurumlar (90)
Academy of Athens Athens, Greece
Al Jalila Children’s Hospital Dubai, United Arab Emirates
Amsterdam Neuroscience Amsterdam, Netherlands
Ankara City Hospital Ankara, Turkey
Ankara Yildirim Beyazit University Ankara, Turkey
A-Star, Infectious Disease Lab Singapore City, Singapore
Berliner Institut für Gesundheitsforschung Berlin, Germany
Center for Infection and Immunity of Lille (CIIL) Lille, France
Centre Hospitalier Universitaire Vaudois Lausanne, Switzerland
Centre Universitaire de Santé McGill Montreal, Canada