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首页> 外文期刊>Journal of Chemical Education >Utilization of negative ion ESI-MS and tandem mass spectrometry to detect and confirm the NADH-boric acid complex
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Utilization of negative ion ESI-MS and tandem mass spectrometry to detect and confirm the NADH-boric acid complex

机译:利用负离子ESI-MS和串联质谱法检测并确认NADH-硼酸络合物

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摘要

Mass spectrometry (MS) is a powerful analytical technique that is now widely used in the chemical, physical, engineering, and life sciences, with rapidly growing applications in many areas including clinical, forensic, pharmaceutical, and environmental fields. The increase in use of MS in both academic and industrial settings for research and development over the past decade has created excellent employment opportunities for those conversant with the technique. Electrospray ionization mass spectrometry (ESI-MS) is applicable to a wide range of molecules, from drugs to proteins, and is easy to use. ESI-MS can be used in either the positive or negative mode to create gas-phase ions from positively and negatively charged molecules; however, there is a lack of laboratory experiments that introduce students to negative ion ESI-MS and tandem mass spectrometry (MS/MS). This experiment investigates the complexation between NADH and boric acid using negative ion ESI-MS. The experiment then uses MS/MS to determine the site of boric acid binding to the nucleotide, demonstrating the power of gas-phase fragmentation patterns for structural assignments.
机译:质谱(MS)是一种功能强大的分析技术,目前已广泛用于化学,物理,工程和生命科学领域,在包括临床,法医,制药和环境领域在内的许多领域中,其应用都在迅速增长。在过去的十年中,MS在学术和工业环境中用于研究和开发的使用增加,为那些熟悉该技术的人创造了绝佳的就业机会。电喷雾电离质谱(ESI-MS)适用于从药物到蛋白质的各种分子,并且易于使用。 ESI-MS可用于正电荷或负电荷模式,以从带正电荷和带负电荷的分子产生气相离子。但是,缺乏将学生引入负离子ESI-MS和串联质谱(MS / MS)的实验室实验。本实验使用负离子ESI-MS研究了NADH与硼酸之间的络合作用。然后,实验使用MS / MS确定硼酸与核苷酸的结合位点,证明了气相片段化模式在结构分配中的作用。

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