bioRxiv · 10.1101/2021.05.06.442995
Quantifying Central Metabolic Fluxes in Human Platelets Using Metabolic Flux Analysis
Abstract
Platelet metabolism is linked to platelet hyper- and hypoactivity in numerous human diseases. Developing a detailed understanding of the link between metabolic shifts and platelet activation state is integral to improving human health. Here, we show the first application of isotopically nonstationary 13C metabolic flux analysis to quantitatively measure carbon fluxes in both resting and thrombin activated platelets. Resting platelets primarily metabolize glucose to lactate via glycolysis, while acetate is oxidized to fuel the tricarboxylic acid cycle. Upon activation with thrombin, a potent platelet agonist, platelets increase their uptake of glucose 3-fold. This results in an absolute increase in flux throughout central metabolism, but when compared to resting platelets they redistribute carbon dramatically. Activated platelets decrease relative flux to the oxidative pentose phosphate pathway and TCA cycle from glucose and increase relative flux to lactate. These results provide the first report of reaction-level carbon fluxes in platelets and allow us to distinguish metabolic fluxes with much higher resolution than previous studies.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sake, C. L., Metcalf, A. J., DiPaola, J., Neeves, K. B., Boyle, N.. 2021-05-07. Quantifying Central Metabolic Fluxes in Human Platelets Using Metabolic Flux Analysis. https://doi.org/10.1101/2021.05.06.442995
Cite the original work for its findings. Save a collection to share your selection of sources.