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COVID-19: A Possible Contribution of the MAPK Pathway

  • Jessica Cusato
  • , Alessandra Manca
  • , Alice Palermiti
  • , Jacopo Mula
  • , Martina Costanzo
  • , Miriam Antonucci
  • , Mattia Trunfio
  • , Silvia Corcione
  • , Francesco Chiara
  • , Elisa Delia De Vivo
  • , Alice Ianniello
  • , Micol Ferrara
  • , Giovanni Di Perri
  • , Francesco Giuseppe De Rosa
  • , Antonio D'Avolio
  • , Andrea CALCAGNO

Risultato della ricerca: Contributo su rivistaArticolo in rivistapeer review

Abstract

Background: COVID-19 is characterized by an uncontrolled inflammatory response with high pro-inflammatory cytokine production through the activation of intracellular pathways, such as mitogen-activated protein kinase (MAPK). Viruses are able to exploit the MAPK pathway to their advantage; this pathway relevance to severe COVID-19 is poorly described. The aim of this study was to quantify biomarkers involved in the MAPK pathway and to clarify its possible role in affecting some COVID-19-related clinical features. Methods: H-RAS, C-RAF, MAPK1, MAPK2, and ERK were quantified through ELISA, and genetic polymorphisms were evaluated through real-time PCR. Results: We prospectively recruited 201 individuals (158 positive and 43 negative for SARS-CoV-2): 35 were male, and their median age was 65 years. MAPK-related biomarker levels were increased in SARS-CoV-2-positive participants (n = 89) compared to negative ones (n = 29). Dyspnea was reported by 48%; this symptom was associated with PBMC C-RAF levels in positive participants (p = 0.022) and type of ventilation (p = 0.031). The highest degree of ventilation was used by 8% for invasive ventilation and 41% for continuous positive airway pressure (CPAP). Conclusions: This is the first study that showed a possible contribution of MAPK-related biomarkers in affecting COVID-19 clinical features, and this may be relevant for identifying COVID-19 positive participants at risk of serious complications.
Lingua originaleInglese
pagine (da-a)1459-1469
Numero di pagine11
RivistaBiomedicines
Volume11
Numero di pubblicazione5
DOI
Stato di pubblicazionePubblicato - 2023

Keywords

  • PBMCs
  • SARS-CoV-2
  • inflammation mechanism
  • molecular pathway
  • oxygenation

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