Montezinho Liliana P, Fonseca Carla P, Geraldes Carlos F G C, Castro M Margarida C A
Department of Biochemistry University of Coimbra P.O. Box 3126 Coimbra 3001-401 Portugal.
Met Based Drugs. 2002;9(1-2):69-80. doi: 10.1155/MBD.2002.69.
Magnesium is an essential element for all living systems. The quantification of free intracellular Mg(2+) concentration (Mg(2+)) is of utmost importance since changes in its basal value may be an indication of different pathologies due to abnormalities of Mg(2+) metabolism. In this work we used (31)P NMR and fluorescence spectroscopy to determine the resting Mg(2+) in bovine chromaffin cells, a neuron-like cellular model, as well as confocal laser scanning microscopy to study the free Mg(2+) spatial distribution in these cells. (31)P NMR spectroscopy did not prove to be effective for the determination of Mg(2+) in this particular case due to some special morphological and physiological properties of this cell type. A basal Mg(2+) value of 0.551 +/- 0.008 mM was found for these cells using fluorescence spectroscopy and the Mg(2+)-sensitive probe furaptra; this value falls in the concentration range reported in the literature for neurons from different sources. This technique proved to be an accurate and sensitive tool to determine the Mg(2+).lntraceilular free Mg(2+) seems to be essentially localized in the nucleus and around it, as shown by confocal microscopy with the Mg(2+)-sensitive probe Magnesium Green. It was not possible to derive any conclusion about free Mg(2+) localization inside the chromaffin granules and/or in the cytoplasm due to the lack of sufficient spatial resolution and to probe compartmentalization.
镁是所有生命系统必需的元素。细胞内游离镁离子浓度([Mg(2+)]i)的定量分析至关重要,因为其基础值的变化可能表明由于镁离子代谢异常导致的不同病理状态。在这项工作中,我们使用磷-31核磁共振((31)P NMR)和荧光光谱法来测定牛嗜铬细胞(一种神经元样细胞模型)中的静息[Mg(2+)]i,并使用共聚焦激光扫描显微镜研究这些细胞中游离镁离子的空间分布。由于这种细胞类型具有一些特殊的形态和生理特性,在这种特定情况下,磷-31核磁共振光谱法被证明对于测定[Mg(2+)]i无效。使用荧光光谱法和镁离子敏感探针氟硼二吡咯(furaptra),发现这些细胞的基础[Mg(2+)]i值为0.551±0.008 mM;该值落在文献报道的来自不同来源的神经元的浓度范围内。该技术被证明是测定[Mg(2+)]i的一种准确且灵敏的工具。如使用镁离子敏感探针镁绿(Magnesium Green)的共聚焦显微镜所示,细胞内游离镁离子似乎主要定位于细胞核及其周围。由于缺乏足够的空间分辨率和探针区室化,无法得出关于嗜铬颗粒内部和/或细胞质中游离镁离子定位的任何结论。