2025
Deuterium MRS for In Vivo Measurement of Lipogenesis in the Liver
Gursan A, de Graaf R, Thomas M, Prompers J, De Feyter H. Deuterium MRS for In Vivo Measurement of Lipogenesis in the Liver. NMR In Biomedicine 2025, 38: e70014. PMID: 39994887, DOI: 10.1002/nbm.70014.Peer-Reviewed Original ResearchConceptsH-MRSHepatic DNLMRS dataLiver tissueMeasurement of lipogenesisDietary interventionLiver lipidsHepatic de novo lipogenesisLow density lipoproteinDetection of deuteriumGold standard measureMetabolic diseasesIncreased hepatic DNLLiverDensity lipoproteinDrinking waterDeuterium labelingIn vivo measurementsNMR dataExcised liver tissueTissueDeuteriumMRSMethylene resonancesDeuterated water
2024
α,β‐Dehydrogenation Adjacent to Sulfur‐ and Phosphorus‐ Containing Compounds
Sun Y, Newhouse T. α,β‐Dehydrogenation Adjacent to Sulfur‐ and Phosphorus‐ Containing Compounds. Angewandte Chemie 2024, 136 DOI: 10.1002/ange.202411859.Peer-Reviewed Original ResearchAllyl methyl carbonateDeuterium incorporation studiesOrganozinc intermediatesMethyl carbonateReaction sequencePhosphorus-containing compoundsSide productsPhosphorus groupsReaction optimizationReactionSulfurDiverse array of substratesArray of substratesDiastereoselectivitiesSubstrateDeuteriumFormationIntermediateCompoundsα,β‐Dehydrogenation Adjacent to Sulfur‐ and Phosphorus‐ Containing Compounds
Sun Y, Newhouse T. α,β‐Dehydrogenation Adjacent to Sulfur‐ and Phosphorus‐ Containing Compounds. Angewandte Chemie International Edition 2024, 63: e202411859. PMID: 39264684, DOI: 10.1002/anie.202411859.Peer-Reviewed Original ResearchAllyl methyl carbonateDeuterium incorporation studiesOrganozinc intermediatesMethyl carbonateReaction sequencePhosphorus-containing compoundsSide productsPhosphorus groupsReaction optimizationReactionSulfurDiverse array of substratesArray of substratesDiastereoselectivitiesSubstrateDeuteriumFormationIntermediateCompoundsLipid removal in deuterium metabolic imaging (DMI) using spatial prior knowledge
de Graaf R, Liu Y, Corbin Z, De Feyter H. Lipid removal in deuterium metabolic imaging (DMI) using spatial prior knowledge. Magnetic Resonance 2024, 5: 21-31. PMID: 39980872, PMCID: PMC11836565, DOI: 10.5194/mr-5-21-2024.Peer-Reviewed Original Research
2023
Deuterium imaging of the Warburg effect at sub‐millimolar concentrations by joint processing of the kinetic and spectral dimensions
Montrazi E, Bao Q, Martinho R, Peters D, Harris T, Sasson K, Agemy L, Scherz A, Frydman L. Deuterium imaging of the Warburg effect at sub‐millimolar concentrations by joint processing of the kinetic and spectral dimensions. NMR In Biomedicine 2023, 36: e4995. PMID: 37401393, DOI: 10.1002/nbm.4995.Peer-Reviewed Original ResearchTime-resolved spectroscopic imagingSub-millimolar concentrationsDeuterated substratesLow-concentration metabolitesDeuterium metabolic imagingSignal-to-noise ratioResonance positionsWarburg effectDeuteriumDetection of low-concentration metabolitesPancreatic cancer studiesSteady-state free precessionBalanced steady-state free precessionKineticsDiagnosed cancerMetabolic kineticsSignal-to-noise ratio improvementMetabolic imagingChemical shift imaging
1979
[49] On the feasibility and interpretation of intersubunit distance measurements using neutron scattering
Moore P, Engelman D. [49] On the feasibility and interpretation of intersubunit distance measurements using neutron scattering. Methods In Enzymology 1979, 59: 629-638. PMID: 440089, DOI: 10.1016/0076-6879(79)59118-6.Peer-Reviewed Original Research
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