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Markers of Fungal Translocation Are Elevated During Post-Acute Sequelae of SARS-CoV-2 Infection and Induce NF-κB Triggered Inflammation.
Leila B. Giron; Michael Peluso; Jianyi Ding; Grace Kenny; Netanel F Zilberstein; Jane Koshy; Kai Ying Hong; Heather Rasmussen; Greg Miller; Faraz Bishehsari; Robert A. Balk; James N. Moy; Rebecca Hoh; Scott Lu; Aaron R. Goldman; Hsin-Yao Tang; Brandon C. Yee; Ahmed Chenna; John W. Winslow; Christos J. Petropoulos; J. Daniel Kelly; Haimanot Wasse; Jeffrey N. Martin; Qin Liu; Ali Keshavarzian; Alan Landay; Steven G. Deeks; Timothy J. Henrich; Mohamed Abdel-Mohsen.
Afiliação
  • Leila B. Giron; The Wistar Institute
  • Michael Peluso; University of California San Francisco
  • Jianyi Ding; The Wistar Institute
  • Grace Kenny; University College Dublin
  • Netanel F Zilberstein; Rush University
  • Jane Koshy; The Wistar Institute
  • Kai Ying Hong; The Wistar Institute
  • Heather Rasmussen; University of Nebraska-Lincoln
  • Greg Miller; Northwestern University
  • Faraz Bishehsari; Rush University
  • Robert A. Balk; Rush University
  • James N. Moy; Rush University
  • Rebecca Hoh; University of California San Francisco
  • Scott Lu; University of California San Francisco
  • Aaron R. Goldman; The Wistar Institute
  • Hsin-Yao Tang; The Wistar Institute
  • Brandon C. Yee; LabCorp-Monogram Biosciences
  • Ahmed Chenna; LabCorp-Monogram Biosciences
  • John W. Winslow; LabCorp-Monogram Biosciences
  • Christos J. Petropoulos; LabCorp-Monogram Biosciences
  • J. Daniel Kelly; University of California San Francisco
  • Haimanot Wasse; Rush University
  • Jeffrey N. Martin; University of California San Francisco
  • Qin Liu; The Wistar Institute
  • Ali Keshavarzian; Rush University
  • Alan Landay; Rush University
  • Steven G. Deeks; University of California San Francisco
  • Timothy J. Henrich; University of California San Francisco
  • Mohamed Abdel-Mohsen; The Wistar Institute
Preprint em Inglês | bioRxiv | ID: ppbiorxiv-488051
ABSTRACT
Long COVID, a type of Post-Acute Sequelae of SARS CoV-2 infection (PASC), has been associated with sustained elevated levels of immune activation and inflammation. However, the pathophysiological mechanisms that drive this inflammation remain unknown. Inflammation during acute Coronavirus Disease 2019 (COVID-19) could be exacerbated by microbial translocation (from the gut and/or lung) to the blood. Whether microbial translocation contributes to inflammation during PASC is unknown. We found higher levels of fungal translocation - measured as {beta}-glucan, a fungal cell wall polysaccharide - in the plasma of individuals experiencing PASC compared to those without PASC or SARS-CoV-2 negative controls. The higher {beta}-glucan correlated with higher levels of markers of inflammation and elevated levels of host metabolites involved in activating N-Methyl-D-aspartate receptors (such as metabolites within the tryptophan catabolism pathway) with established neuro-toxic properties. Mechanistically, {beta}-glucan can directly induce inflammation by binding to myeloid cells (via the Dectin-1 receptor) and activating Syk/NF-{kappa}B signaling. Using an in vitro Dectin-1/NF-{kappa}B reporter model, we found that plasma from individuals experiencing PASC induced higher NF-{kappa}B signaling compared to plasma from SARS-CoV-2 negative controls. This higher NF-{kappa}B signaling was abrogated by the Syk inhibitor Piceatannol. These data suggest a potential targetable mechanism linking fungal translocation and inflammation during PASC.
Licença
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Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Idioma: Inglês Ano de publicação: 2022 Tipo de documento: Preprint
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Idioma: Inglês Ano de publicação: 2022 Tipo de documento: Preprint
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