Literature DB >> 9015801

Molar quantitation of hepatic metabolites in vivo in proton-decoupled, nuclear Overhauser effect enhanced 31P NMR spectra localized by three-dimensional chemical shift imaging.

C W Li1, W G Negendank, J Murphy-Boesch, K Padavic-Shaller, T R Brown.   

Abstract

Proton decoupling and nuclear Overhauser effect (NOE) enhancement significantly improve the signal-to-noise ratio and enhance resolution of metabolites in in vivo 31P MRS. We obtained proton-decoupled, NOE-enhanced, phospholipid-saturated 31P spectra localized to defined regions within the normal liver using three-dimensional chemical shift imaging. Proton-decoupling resulted in the resolution of two major peaks in the phosphomonoester (PME) region, three peaks in the phosphodiester (PDE) region and a diphosphodiester peak. In order to obtain molar quantitation, we measured the NOE of all hepatic phosphorus resonances, and we corrected for saturation effects by measuring hepatic metabolite T1 using the variable nutation angle method with phase-cycled, B1-independent rotation, adiabatic pulses. After corrections for saturation effects, NOE enhancement, B1 variations and point spread effects, the following mean concentrations (mmol/l of liver) (+/-SD) were obtained: [PME1] = 1.2 +/- 0.4, [PME2 + 2,3-DPG] = 1.1 +/- 0.1, [Pi + 2,3-DPG] = 2.8 +/- 0.5, [GPEth] = 2.8 +/- 0.7, [GPChol] = 3.5 +/- 0.6 and [beta-NTP] = 3.8 +/- 0.3. T1 and NOE enhancement were strongly correlated (r = 90), and indicated that the fractional contribution of 1H-31P dipolar relaxation to total 31P relaxation is minimal for NTPs, moderate for PMEs and high for PDEs in liver. Proton-decoupling and NOE enhancement permit one to obtain more information about in vivo metabolism of liver than previously available and should enhance the utility of 31P MRS for the study of hepatic disorders.

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Year:  1996        PMID: 9015801     DOI: 10.1002/(SICI)1099-1492(199606)9:4<141::AID-NBM403>3.0.CO;2-P

Source DB:  PubMed          Journal:  NMR Biomed        ISSN: 0952-3480            Impact factor:   4.044


  14 in total

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2.  Imaging transgene activity in vivo.

Authors:  Terence P F Gade; Jason A Koutcher; William M Spees; Bradley J Beattie; Vladimir Ponomarev; Michael Doubrovin; Ian M Buchanan; Tatiana Beresten; Kristen L Zakian; H Carl Le; William P Tong; Philipp Mayer-Kuckuk; Ronald G Blasberg; Juri G Gelovani
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3.  Proton and phosphorous MR spectroscopy in squamous cell carcinomas of the head and neck.

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4.  Absolute quantification of human liver metabolite concentrations by localized in vivo 31P NMR spectroscopy in diffuse liver disease.

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5.  Band inversion amplifies 31 P-31 P nuclear overhauser effects: Relaxation mechanism and dynamic behavior of ATP in the human brain by 31 P MRS at 7 T.

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6.  Parametric exploration of the liver by magnetic resonance methods.

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Review 7.  In-vivo31P-MRS of skeletal muscle and liver: A way for non-invasive assessment of their metabolism.

Authors:  Ladislav Valkovič; Marek Chmelík; Martin Krššák
Journal:  Anal Biochem       Date:  2017-01-21       Impact factor: 3.365

8.  Repeatability of (31) P MRSI in the human brain at 7 T with and without the nuclear Overhauser effect.

Authors:  Miriam W Lagemaat; Bart L van de Bank; Pascal Sati; Shizhe Li; Marnix C Maas; Tom W J Scheenen
Journal:  NMR Biomed       Date:  2015-12-08       Impact factor: 4.044

9.  Human hippocampal energy metabolism is impaired during cognitive activity in a lipid infusion model of insulin resistance.

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Journal:  Brain Behav       Date:  2013-02-15       Impact factor: 2.708

10.  Absolute Quantification of Human Liver Phosphorus-Containing Metabolites In Vivo Using an Inhomogeneous Spoiling Magnetic Field Gradient.

Authors:  Adil Bashir; Robert Gropler; Joseph Ackerman
Journal:  PLoS One       Date:  2015-12-03       Impact factor: 3.240

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