Knubovets T, Shinar H, Navon G
School of Chemistry, Tel-Aviv University, Ramat Aviv, 69987, Israel.
J Magn Reson. 1998 Mar;131(1):92-6. doi: 10.1006/jmre.1997.1337.
23Na double-quantum-filtered (DQF) NMR enables the detection of anisotropic motion of sodium ions due to their interaction with ordered structures in biological tissues. Using the technique, anisotropic motion was found for sodium ions in mammalian red blood cell suspensions (RBC) and the effect was shown to correlate with the integrity of membrane cytoskeleton. In the present study relative contributions to the DQF and triple-quantum-filtered (TQF) spectra of sodium bound to anisotropic and isotropic binding sites in the intra- and extracellular sodium pools (Na content being 15 and 150 mM, respectively) of human RBC were quantified for different hematocrits. DQF spectra were measured by a modified Jeener-Broekaert pulse sequence which enabled exclusive detection of anisotropically moving sodium ions. The relative contributions of the extracellular sodium to the TQF and DQF spectra decreased as the hematocrit increased, but their efficiency relative to the sodium content increased. The contribution of the extracellular sodium to the TQF signal was found to dominate the spectrum of the RBC suspension at all hematocrits studied. The contribution of the extracellular sodium to the DQF was significantly smaller than that to the TQF and was only 22% at a high hematocrit of about 90%.
23Na双量子滤波(DQF)核磁共振能够检测钠离子的各向异性运动,这是由于它们与生物组织中的有序结构相互作用所致。利用该技术,在哺乳动物红细胞悬液(RBC)中发现了钠离子的各向异性运动,且该效应与膜细胞骨架的完整性相关。在本研究中,针对不同血细胞比容,对人红细胞细胞内和细胞外钠池(钠含量分别为15 mM和150 mM)中与各向异性和各向同性结合位点结合的钠对DQF和三量子滤波(TQF)谱的相对贡献进行了量化。DQF谱通过改良的Jeener-Broekaert脉冲序列进行测量,该序列能够专门检测各向异性移动的钠离子。随着血细胞比容增加,细胞外钠对TQF和DQF谱的相对贡献降低,但其相对于钠含量的效率增加。在所研究的所有血细胞比容下,发现细胞外钠对TQF信号的贡献主导了RBC悬液的谱。细胞外钠对DQF的贡献明显小于对TQF的贡献,在约90%的高血细胞比容下仅为22%。