[PDF][PDF] Omics-driven systems interrogation of metabolic dysregulation in COVID-19 pathogenesis

JW Song, SM Lam, X Fan, WJ Cao, SY Wang, H Tian… - Cell metabolism, 2020 - cell.com
JW Song, SM Lam, X Fan, WJ Cao, SY Wang, H Tian, GH Chua, C Zhang, FP Meng, Z Xu…
Cell metabolism, 2020cell.com
Summary The coronavirus disease 2019 (COVID-19) pandemic presents an unprecedented
threat to global public health. Herein, we utilized a combination of targeted and untargeted
tandem mass spectrometry to analyze the plasma lipidome and metabolome in mild,
moderate, and severe COVID-19 patients and healthy controls. A panel of 10 plasma
metabolites effectively distinguished COVID-19 patients from healthy controls (AUC= 0.975).
Plasma lipidome of COVID-19 resembled that of monosialodihexosyl ganglioside (GM3) …
Summary
The coronavirus disease 2019 (COVID-19) pandemic presents an unprecedented threat to global public health. Herein, we utilized a combination of targeted and untargeted tandem mass spectrometry to analyze the plasma lipidome and metabolome in mild, moderate, and severe COVID-19 patients and healthy controls. A panel of 10 plasma metabolites effectively distinguished COVID-19 patients from healthy controls (AUC = 0.975). Plasma lipidome of COVID-19 resembled that of monosialodihexosyl ganglioside (GM3)-enriched exosomes, with enhanced levels of sphingomyelins (SMs) and GM3s, and reduced diacylglycerols (DAGs). Systems evaluation of metabolic dysregulation in COVID-19 was performed using multiscale embedded differential correlation network analyses. Using exosomes isolated from the same cohort, we demonstrated that exosomes of COVID-19 patients with elevating disease severity were increasingly enriched in GM3s. Our work suggests that GM3-enriched exosomes may partake in pathological processes related to COVID-19 pathogenesis and presents the largest repository on the plasma lipidome and metabolome distinct to COVID-19.
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