Literature DB >> 11013264

Use of diethyl(2-methylpyrrolidin-2-yl)phosphonate as a highly sensitive extra- and intracellular 31P NMR pH indicator in isolated organs. Direct NMR evidence of acidic compartments in the ischemic and reperfused rat liver.

S Pietri1, S Martel, M Culcasi, M C Delmas-Beauvieux, P Canioni, J L Gallis.   

Abstract

The novel phosphorylated pyrrolidine diethyl(2-methylpyrrolidin-2-yl)phosphonate (DEPMPH) was evaluated as a (31)P NMR probe of the pH changes associated with ischemia/reperfusion of rat isolated hearts and livers. In vitro titration curves indicated that DEPMPH exhibited a 4-fold larger amplitude of chemical shift variation than inorganic phosphate yielding an enhanced NMR sensitivity in the pH range of 5.0-7.5 that allowed us to assess pH variations of less than 0.1 pH units. At the non-toxic concentration of 5 mm, DEPMPH distributed into external and cytosolic compartments in both normoxic organs, as assessed by the appearance of two resonance peaks. An additional peak was observed in normoxic and ischemic livers, assigned to DEPMPH in acidic vesicles (pH 5.3-5.6). During severe myocardial ischemia, a third peak corresponding to DEPMPH located in ventricular and atrial cavities appeared (pH 6.9). Mass spectrometry and NMR analyses of perchloric extracts showed that no significant metabolism of DEPMPH occurred in the ischemic liver. Reperfusion with plain buffer resulted in a rapid washout of DEPMPH from both organs. It was concluded that the highly pH-sensitive DEPMPH could be of great interest in noninvasive ex vivo studies of pH gradients that may be involved in many pathological processes.

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Year:  2000        PMID: 11013264     DOI: 10.1074/jbc.M008023200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  7 in total

1.  Electron paramagnetic resonance monitoring of ischemia-induced myocardial oxygen depletion and acidosis in isolated rat hearts using soluble paramagnetic probes.

Authors:  Denis A Komarov; Ilirian Dhimitruka; Igor A Kirilyuk; Dmitrii G Trofimiov; Igor A Grigor'ev; Jay L Zweier; Valery V Khramtsov
Journal:  Magn Reson Med       Date:  2011-12-12       Impact factor: 4.668

2.  Internal pH indicators for biomolecular NMR.

Authors:  Olga K Baryshnikova; Thomas C Williams; Brian D Sykes
Journal:  J Biomol NMR       Date:  2008-04-09       Impact factor: 2.835

3.  Variable radio frequency proton-electron double-resonance imaging: application to pH mapping of aqueous samples.

Authors:  Olga V Efimova; Ziqi Sun; Sergey Petryakov; Eric Kesselring; George L Caia; David Johnson; Jay L Zweier; Valery V Khramtsov; Alexandre Samouilov
Journal:  J Magn Reson       Date:  2011-01-15       Impact factor: 2.229

4.  Variable Field Proton-Electron Double-Resonance Imaging: Application to pH mapping of aqueous samples.

Authors:  Valery V Khramtsov; George L Caia; Keerthi Shet; Eric Kesselring; Sergey Petryakov; Jay L Zweier; Alexandre Samouilov
Journal:  J Magn Reson       Date:  2009-11-26       Impact factor: 2.229

5.  Response of cytoplasmic pH to anoxia in plant tissues with altered activities of fermentation enzymes: application of methyl phosphonate as an NMR pH probe.

Authors:  D L Couldwell; R Dunford; N J Kruger; D C Lloyd; R G Ratcliffe; A M O Smith
Journal:  Ann Bot       Date:  2008-09-29       Impact factor: 4.357

6.  Synthesis and characterization of amino derivatives of persistent trityl radicals as dual function pH and oxygen paramagnetic probes.

Authors:  Ilirian Dhimitruka; Andrey A Bobko; Christopher M Hadad; Jay L Zweier; Valery V Khramtsov
Journal:  J Am Chem Soc       Date:  2008-07-18       Impact factor: 15.419

7.  Novel Sterically Crowded and Conformationally Constrained α-Aminophosphonates with a Near-Neutral pKa as Highly Accurate 31P NMR pH Probes. Application to Subtle pH Gradients Determination in Dictyostelium discoideum Cells.

Authors:  Caroline Delehedde; Marcel Culcasi; Emilie Ricquebourg; Mathieu Cassien; Didier Siri; Bruno Blaive; Sylvia Pietri; Sophie Thétiot-Laurent
Journal:  Molecules       Date:  2022-07-14       Impact factor: 4.927

  7 in total

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