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Multicenter analysis of neutrophil extracellular trap dysregulation in adult and pediatric COVID-19
Carmelo Carmona-Rivera; Yu Zhang; Kerry Dobbs; Tovah Markowitz; Clifton Dalgard; Andrew Oler; Dillon Claybaugh; Deborah Draper; Meng Truong; Ottavi Delmonte; Francesco Licciardi; Ugo Ramenghi; Nicoletta Crescenzio; Luisa Imberti; Alessandra Sottini; Virginia Quaresima; Chiara Fiorini; Valentina Discepolo; Andrea Lovecchio; Alfredo Guarino; Luca Pierri; Andrea Catzola; Andrea Biondi; Paolo Bonfanti; Maria Cecilia Poli Harlowe; Yasmin Espinosa; Camila Astudillo; Emma rey-Jurado; Cecilia Vial; Javiera De la Cruz; Ricardo Gonzalez; Cecilia Pinera; Jacqueline Mays; Ashley Ng; Andrew Platt; Beth Drolet; John Moon; Edward Cowen; Heather Kenney; Sarah Weber; Riccardo Castagnoli; Mary Magliocco; M Austin Stack; Gina Montealegre; Karyl Barron; Stephen Hewitt; Lisa Arkin; Daniel Chertow; Helen Su; Luigi Daniele Notarangelo; Mariana J Kaplan.
Afiliação
  • Carmelo Carmona-Rivera; NIAMS
  • Yu Zhang; NIAID
  • Kerry Dobbs; NIAID
  • Tovah Markowitz; NIAID
  • Clifton Dalgard; USUHS
  • Andrew Oler; NIAID
  • Dillon Claybaugh; NIAMS
  • Deborah Draper; NIAID
  • Meng Truong; NIAID
  • Ottavi Delmonte; NIAID
  • Francesco Licciardi; University of Turin
  • Ugo Ramenghi; University of Turin
  • Nicoletta Crescenzio; University of Turin
  • Luisa Imberti; Spedali Civili di Brescia
  • Alessandra Sottini; Spedali Civili di Brescia
  • Virginia Quaresima; Spedali Civili di Brescia
  • Chiara Fiorini; Spedali Civili di Brescia
  • Valentina Discepolo; University of Naples Federico II
  • Andrea Lovecchio; University of Naples Federico II
  • Alfredo Guarino; University of Naples Federico II
  • Luca Pierri; University of Naples Federico II
  • Andrea Catzola; University of NaplesFederico II
  • Andrea Biondi; University of Milano-Bicocca
  • Paolo Bonfanti; University of Milano-Bicocca
  • Maria Cecilia Poli Harlowe; Universidad del Desarrollo
  • Yasmin Espinosa; Hospital Roberto del Rio
  • Camila Astudillo; Hospital Roberto del Rio
  • Emma rey-Jurado; Universidad del Desarrollo
  • Cecilia Vial; Universidad del Desarrollo
  • Javiera De la Cruz; Universidad del Desarrollo
  • Ricardo Gonzalez; Hospital Exequiel Gonzalez Cortes
  • Cecilia Pinera; University of Chile
  • Jacqueline Mays; NIDCR
  • Ashley Ng; University of Wisconsin
  • Andrew Platt; NIAID
  • Beth Drolet; University of Wisconsin-Madison
  • John Moon; University of Wisconsin-Madison
  • Edward Cowen; NIAMS
  • Heather Kenney; NIAID
  • Sarah Weber; NIAID
  • Riccardo Castagnoli; NIAID
  • Mary Magliocco; NIAID
  • M Austin Stack; NIAID
  • Gina Montealegre; NIAID
  • Karyl Barron; NIAID
  • Stephen Hewitt; NCI
  • Lisa Arkin; University of Wisconsin-Madison
  • Daniel Chertow; NIAID
  • Helen Su; NIAID
  • Luigi Daniele Notarangelo; National Institute of Allergy and Infectious Diseases, NIH
  • Mariana J Kaplan; National Institute of Arthritis and Musculoskeletal and Skin Diseases, NIH
Preprint em En | PREPRINT-MEDRXIV | ID: ppmedrxiv-22271475
ABSTRACT
Dysregulation in neutrophil extracellular trap (NET) formation and degradation may play a role in the pathogenesis and severity of COVID-19; however, its role in the pediatric manifestations of this disease including MIS-C and chilblain-like lesions (CLL), otherwise known as "COVID toes", remains unclear. Studying multinational cohorts, we found that, in CLL, NETs were significantly increased in serum and skin. There was geographic variability in the prevalence of increased NETs in MIS-C, in association with disease severity. MIS-C and CLL serum samples displayed decreased NET degradation ability, in association with C1q and G-actin or anti-NET antibodies, respectively, but not with genetic variants of DNases. In adult COVID-19, persistent elevations in NETs post-disease diagnosis were detected but did not occur in asymptomatic infection. COVID-19-affected adults displayed significant prevalence of impaired NET degradation, in association with anti-DNase1L3, G-actin, and specific disease manifestations, but not with genetic variants of DNases. NETs were detected in many organs of adult patients who died from COVID-19 complications. Infection with the Omicron variant was associated with decreased levels of NETs when compared to other SARS-CoV-2 strains. These data support a role for NETs in the pathogenesis and severity of COVID-19 in pediatric and adult patients. SummaryNET formation and degradation are dysregulated in pediatric and symptomatic adult patients with various complications of COVID-19, in association with disease severity. NET degradation impairments are multifactorial and associated with natural inhibitors of DNase 1, G-actin and anti-DNase1L3 and anti-NET antibodies. Infection with the Omicron variant is associated with decreased levels of NETs when compared to other SARS-CoV-2 strains.
Licença
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Texto completo: 1 Coleções: 09-preprints Base de dados: PREPRINT-MEDRXIV Tipo de estudo: Cohort_studies / Observational_studies / Prognostic_studies Idioma: En Ano de publicação: 2022 Tipo de documento: Preprint
Texto completo: 1 Coleções: 09-preprints Base de dados: PREPRINT-MEDRXIV Tipo de estudo: Cohort_studies / Observational_studies / Prognostic_studies Idioma: En Ano de publicação: 2022 Tipo de documento: Preprint