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Liquid Chromatography Tandem Mass Spectrometry and Nuclear Magnetic Resonance Spectroscopy of Magnesium (II) Gluconate Solution

机译:液相色谱串联质谱与镁(II)葡萄糖酸盐溶液的质谱和核磁共振光谱

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摘要

Magnesium gluconate is a classical pharmaceutical compound used as a source of magnesium for the prevention and treatment of hypomagnesemia. To the best of our knowledge, a robust and reliable liquid chromatography tandem mass spectrometry technique has not yet been reported for the qualitative and quantitative analysis of magnesium gluconate. This study describes the method development for the LC-ESI-MS/MS analysis of magnesium gluconate using three different reversed-phase HPLC conditions (Method I-III) with comprehensive fragmentation pattern and the structural characterization by NMR spectroscopy. The LC-MS and NMR data were found in accordance with the structure of magnesium gluconate. When magnesium gluconate was dissolved in the acetonitrile and water-methanol solutions, it exists in situ in three different forms: magnesium gluconate itself, gluconic acid, and magnesium gluconate chelate with gluconic acid by a coordinate covalent bond. Method I exhibited pseudo-molecular ion peaks with more magnesium gluconate chelates with gluconic acid, while method II showed an adduct of magnesium gluconate with the solvent along with the molecular ion peak. There was no pseudo-molecular ion peaks found in method III. Thus, method III was found to be the more accurate, robust and reliable LC-MS method for the qualitative and quantitative analysis, structural characterization, and could also be suitable for the pharmacokinetic study of magnesium gluconate. The detailed fragmentation analysis might be useful for the structural characterization of unknown divalent organometallics.
机译:葡萄糖酸镁是一种古典药物化合物,用作预防和治疗镁镁血症的镁来源。据我们所知,尚未概述稳健且可靠的液相色谱串联质谱技术尚未讨论葡萄糖酸镁的定性和定量分析。本研究描述了使用三种不同反相HPLC条件(方法I-III)的LC-ESI-MS / MS / MS分析的方法开发,具有综合碎片模式和NMR光谱的结构表征。根据葡萄糖酸镁的结构,找到LC-MS和NMR数据。当葡萄糖酸镁溶解在乙腈和水 - 甲醇溶液中时,它以三种不同的形式原位存在:葡萄糖醇本身,葡萄糖酸和葡萄糖酸镁通过坐标共价键与葡萄糖酸螯合物。方法I表现出与葡萄糖酸的更多葡萄糖酸镁螯合物的伪分子离子峰,而方法II显示葡萄糖酸镁与溶剂以及分子离子峰的加合物。在方法III中没有发现伪分子离子峰。因此,发现方法III是用于定性和定量分析,结构表征,结构表征的更准确,稳健和可靠的LC-MS方法,也可以适用于葡萄糖型镁的药代动力学研究。详细的碎片分析可能对未知二价管有机金属的结构表征有用。

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