Sodium TQF NMR and intracellular sodium in isolated crystalloid perfused rat heart
- 1 April 1998
- journal article
- research article
- Published by Wiley in Magnetic Resonance in Medicine
- Vol. 39 (4) , 557-563
- https://doi.org/10.1002/mrm.1910390408
Abstract
The feasibility of monitoring intracellular sodium changes using Na triple quantum filtered NMR without a chemical shift reagent (SR) was investigated in an isolated rat heart during a variety of interventions for Ma, loading. Perfusion with 1 mM ouabain or without K+ present in the perfusate for 30 min produced a rise of the Na TQF signal with a plateau of ‐190% and ˜228% relative to the preintervention level, respectively. Stop‐flow ischemia for 30 min resulted in a TQF signal growth of ˜147%. The maximal Na TQF signal increase of 460% was achieved by perfusion without K+/Ca2+, corresponding to an elimination of the Na transmembrane gradient. The observed values of Na NMR TQF growth in the physiological and pathological ranges are in agreement with reported data by other methods and have a linear correlation with intracellular sodium content as determined in this study by Co‐EDTA method and by sucrose‐histidine washout of the extracellular space. Our data indicate that the increase in Na TQF NMR signal is determined by the growth of Nai, and the extracellular Na contribution to the total TQF signal is unchanged at ˜64%. In conclusion, Na TQF NMR without using SR offers a unique and noninvasive opportunity to monitor alterations of intracellular sodium. It may provide valuable insights for developing car‐dioprotective strategies and for observing the effects of pharmaceutical treatments on sodium homeostasis.Keywords
This publication has 41 references indexed in Scilit:
- 23 Na Nuclear Magnetic Resonance Spectral Changes During and After Forebrain Ischemia in Hypoglycemic, Normoglycemic, and Hyperglycemic RatsStroke, 1996
- Commentaries on the end of year editorial on the definition of ischaemia in last December's issueCardiovascular Research, 1995
- Commentaries on the end of year editorial on the definition of ischaemia in last December's issueCardiovascular Research, 1995
- Properties of the Fluorescent Sodium Indicator “SBFI” in Rat and Rabbit Cardiac MyocytesJournal of Cardiovascular Electrophysiology, 1994
- Quantification of 1-D and 2-D magnetic resonance time domain signalsPublished by Walter de Gruyter GmbH ,1992
- Absolute quantification of intracellular Na+ using triple-quantum-filtered sodium-23 NMRJournal of Magnetic Resonance (1969), 1991
- In vivo NMR spectral parameter estimation: A comparison between time and frequency domain methodsMagnetic Resonance in Medicine, 1991
- The effects of bathing sodium ions upon the intracellular sodium activity in calcium-free media and the calcium paradox of isolated ferret ventricular muscleJournal of Molecular and Cellular Cardiology, 1990
- Determination of the extracellular space with nonradioactive Co3+EDTA and simultaneous estimation of Na, K, Ca, and Mg contents in isolated guinea-pig heart preparations by atomic absorption spectrometryBasic Research in Cardiology, 1987
- Selective detection of intracellular sodium by coherence-transfer NMRJournal of Magnetic Resonance (1969), 1987