Plasma Linoleate Diols Are Potential Biomarkers for Severe COVID-19 Infections
570
Coronaviruses
Physiology
Medical Physiology
DiHOME
610
lipid mediators
Medical Biochemistry and Metabolomics
Cardiovascular
03 medical and health sciences
Medical physiology
leukotoxin
2.1 Biological and endogenous factors
Psychology
QP1-981
Lung
0303 health sciences
Biomedical and Clinical Sciences
Inflammatory and immune system
COVID-19
3. Good health
Emerging Infectious Diseases
Infectious Diseases
inflammation
Biochemistry and cell biology
ARDS
linoleate diol
EpOME
DOI:
10.3389/fphys.2021.663869
Publication Date:
2021-04-01T07:26:03Z
AUTHORS (8)
ABSTRACT
Polyunsaturated fatty acids are metabolized into regulatory lipids important for initiating inflammatory responses in the event of disease or injury and for signaling the resolution of inflammation and return to homeostasis. The epoxides of linoleic acid (leukotoxins) regulate skin barrier function, perivascular and alveolar permeability and have been associated with poor outcomes in burn patients and in sepsis. It was later reported that blocking metabolism of leukotoxins into the vicinal diols ameliorated the deleterious effects of leukotoxins, suggesting that the leukotoxin diols are contributing to the toxicity. During quantitative profiling of fatty acid chemical mediators (eicosanoids) in COVID-19 patients, we found increases in the regioisomeric leukotoxin diols in plasma samples of hospitalized patients suffering from severe pulmonary involvement. In rodents these leukotoxin diols cause dramatic vascular permeability and are associated with acute adult respiratory like symptoms. Thus, pathways involved in the biosynthesis and degradation of these regulatory lipids should be investigated in larger biomarker studies to determine their significance in COVID-19 disease. In addition, incorporating diols in plasma multi-omics of patients could illuminate the COVID-19 pathological signature along with other lipid mediators and blood chemistry.
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