6533b7d1fe1ef96bd125c255

RESEARCH PRODUCT

Automated untargeted stable isotope assisted lipidomics of liver cells on high glucose shows alteration of sphingolipid kinetics

C. ScrimaliSerena IndelicatoMassimiliano GrecoRossella SpinaMaurizio AvernaIda AltieriAntonina GiammancoFrancesca Di GaudioDavide NotoAngelo B. CefalùDavid BongiornoFrancesca FayerSergio IndelicatoAlessandro Mattina

subject

KineticsPalmitic AcidHep G2 CellFatty Acids NonesterifiedOrbitrapHigh resolution mass spectrometry01 natural sciencesGas Chromatography-Mass SpectrometryWorkflowlaw.inventionPalmitic acidAutomation03 medical and health scienceschemistry.chemical_compoundInsulin resistancelawLipidomicsmedicineHumansMolecular Biology030304 developmental biologyKineticSphingolipids0303 health sciencesChromatographyChemistryLipidomic010401 analytical chemistryInsulin resistanceLipid metabolismHep G2 CellsCell BiologyDeuteriumLipid Metabolismmedicine.diseaseCulture Media0104 chemical sciencesKineticsGlucoseIsotope LabelingLipidomicsCell modelHepatocytesMonoisotopic massSphingomyelinAlgorithmsSoftware

description

Abstract Untargeted lipidomics is a powerful tool to discover new biomarkers and to understand the physiology and pathology of lipids. The use of stable isotopes as tracers to investigate the kinetics of lipids is another tool able to supply dynamic information on lipid synthesis and catabolism. Coupling the two methodology is then very appealing in the study of lipid metabolism. The main issue to face is to perform thousands of calculations in order to obtain kinetic parameters starting from the MS raw data. An automated computerized routine able to do accomplish such task is presented in this paper. We analyzed the lipid kinetics of palmitic acid (PA) in hepatoma liver cells cultured in vitro in which insulin resistance has been induced by high glucose supplementation. The deuterated palmitate tracer (d5PA) was administered as a bolus and the cells were harvested daily for 48 h. 5dPA was incorporated into 326 monoisotopic compounds and in 84 of their [M + 1] isotopologues detected by high resolution orbitrap MS. The differences between the kinetics curves showed that at least four long chain triglycerides (TG) species incorporated more PA in glucose treated cells, while phosphocholines, sphingomyelins, mono- and di-glycerides and ceramides (Cer) incorporated less tracer under glucose treatment. Nevertheless, Cer amount was increased by glucose treatment. In conclusion we developed an automated powerful algorithm able to model simultaneously hundreds of kinetic curves obtained in a cell culture spiked with a stable isotope tracer, and to analyze the difference between the two different cell models.

https://doi.org/10.1016/j.bbalip.2020.158656