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首页> 外文期刊>Inorganic Chemistry Communications >HPLC separation, NMR and QTOF/MS/MS structure elucidation of a prominent nitric oxide donor agent based on an isomeric composition of a nitrosyl ruthenium complex
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HPLC separation, NMR and QTOF/MS/MS structure elucidation of a prominent nitric oxide donor agent based on an isomeric composition of a nitrosyl ruthenium complex

机译:基于亚硝酰基钌配合物的异构体组成,通过高效液相色谱(HPLC)分离,NMR和QTOF / MS / MS结构解析一氧化氮供体

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摘要

A new and promising nitrosyl ruthenium complex, [Ru(NO)(bdqi-COOH)(terpy)](PF6)3, bdqi-COOH is 3,4-diiminebenzoic acid and terpy is 2,2'-terpyridine, has been synthesized as a NO donor agent. The procedure used for [Ru(NO)(bdqi-COOH)(terpy)](PF5)3 synthesis has, apparently, yielded the formation of two isomers in which the ligand bdqi-COOH appears to be coordinated in its reduced form (bdcat-COOH), which could have differences in their pharmacological properties. Therefore, it was intended to separate the two possible isomers by high-performance liquid chromatography (HPLC) and to characterize them by high resolution mass spectrometry (QTOF MS) and by magnetic nuclear resonance spectroscopy (NMR). The results obtained by MS showed that the ESI-MS mass spectra of both HPLC column fractions, e.g. peak 1 and peak 2, are essentially equal, showing that both isomers display nearly identical gas-phase behavior with clusters of isotopologue ions centered at m/z 573, m/z 543 and m/z 513. Regarding the NMR analysis, the results showed that the positional isomerism is located in the bdqi-COOH ligand. From the observed results it can be concluded that the synthesis procedure that has been used results in the formation of two [Ru(terpy)(bdqi-COOH)NO](PF6)3 isomers.
机译:合成了一种新的有前途的亚硝酰基钌配合物[Ru(NO)(bdqi-COOH)(terpy)](PF6)3,bdqi-COOH是3,4-二亚胺基苯甲酸,terpy是2,2'-吡啶作为NO供体[Ru(NO)(bdqi-COOH)(terpy)](PF5)3合成所用的方法显然产生了两种异构体,其中配体bdqi-COOH似乎以其还原形式被配位(bdcat -COOH),其药理特性可能有所不同。因此,旨在通过高效液相色谱(HPLC)分离两种可能的异构体,并通过高分辨率质谱(QTOF MS)和核磁共振谱(NMR)对其进行表征。通过MS获得的结果表明,两种HPLC柱馏分的ESI-MS质谱,例如峰1和峰2基本相等,表明这两种异构体均表现出几乎相同的气相行为,且同位素分子簇以m / z 573,m / z 543和m / z 513为中心。关于NMR分析,结果结果表明位置异构现象位于bdqi-COOH配体中。从观察到的结果可以得出结论,已经使用的合成方法导致形成了两种[Ru(terpy)(bdqi-COOH)NO](PF6)3异构体。

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