PR001469 (Project)

Description:Severe manifestations of coronavirus disease 2019 (COVID-19) and mortality have been associated with physiological alterations that provide insights into the pathogenesis of the disease. Moreover, factors that drive recovery from COVID-19 can be explored to identify correlates of protection. The cellular metabolism represents a potential target to improve survival upon severe disease, but the associations between the metabolism and the inflammatory response during COVID-19 are not well defined. We analyzed blood laboratorial parameters, cytokines, and metabolomes of 150 individuals with mild to severe disease, of which 33 progressed to a fatal outcome. A subset of 20 individuals was followed-up after hospital discharge and recovery of acute disease. We used hierarchical community networks to integrate metabolomics profiles with cytokines and markers of inflammation, coagulation, and tissue damage. Infection by severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) promotes significant alterations in the plasma metabolome, whose activity varies according to disease severity and correlates with oxygen saturation. Differential metabolism underlying death was marked by amino acids and related metabolites, such as glutamate, tryptophan and oxoproline; and lipids, including progesterone, phosphocholine and lysophosphatidylcholines (lysoPCs). Individuals that recovered from severe disease displayed persistent alterations enriched for metabolism of purines, phosphatidylinositol phosphate and glycolysis. Recovery of mild disease was associated with vitamin E metabolism. Data integration shows that the metabolic response is a hub connecting other biological features during disease and recovery. Infection by SARS-CoV-2 induces concerted activity of metabolic and inflammatory responses that depend on disease severity and collectively predict clinical outcomes of COVID-19.
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Project

Metabolomics

Subject

A subject from Metabolomics produced as part of the PR001469 project

Biosample

A biosample from Metabolomics produced as part of the PR001469 project

Biosample

A biosample from Metabolomics produced as part of the PR001469 project

Biosample

A biosample from Metabolomics produced as part of the PR001469 project

Biosample

A biosample from Metabolomics produced as part of the PR001469 project

Biosample

A biosample from Metabolomics produced as part of the PR001469 project

Biosample

A biosample from Metabolomics produced as part of the PR001469 project

Biosample

A biosample from Metabolomics produced as part of the PR001469 project

Biosample

A biosample from Metabolomics produced as part of the PR001469 project


  • Subject

    A subject from Metabolomics produced as part of the PR001469 project


  • Biosample

    A biosample from Metabolomics produced as part of the PR001469 project


  • Biosample

    A biosample from Metabolomics produced as part of the PR001469 project


  • Biosample

    A biosample from Metabolomics produced as part of the PR001469 project


  • Biosample

    A biosample from Metabolomics produced as part of the PR001469 project


  • Biosample

    A biosample from Metabolomics produced as part of the PR001469 project


  • Biosample

    A biosample from Metabolomics produced as part of the PR001469 project


  • Biosample

    A biosample from Metabolomics produced as part of the PR001469 project


  • Biosample

    A biosample from Metabolomics produced as part of the PR001469 project

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