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Gas-phase ion-molecule reactions and laser-induced acoustic desorption mass spectrometry for complex mixture analysis and structural elucidation.

机译:气相离子分子反应和激光诱导的声解吸质谱用于复杂的混合物分析和结构解析。

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摘要

Mass spectrometry (MS) has proven invaluable in the field of mixture analysis and structural elucidation of mixture components, due to its high sensitivity, selectivity and speed. Tandem mass spectrometry (MS/MS) utilizing collision-activated dissociation (CAD) has become the technique of choice for structural elucidation of unknown analytes. The coupling of MS with high performance liquid chromatography (HPLC) has allowed the trace level analysis of components in very complex mixtures. However, these experiments alone do not always allow for unambiguous identification of an unknown analyte in a mixture.;The experiments described in this thesis were aimed at providing more detailed structural information of mixture components that is difficult to obtain by established methods. In the first section (chapters 3, 4 and 5), gas-phase ion-molecule reactions were developed and implemented on a commercially available linear quadrupole ion trap (LQIT) mass spectrometer (Finnigan LTQ) to make these methods more widely applicable to the pharmaceutical industry. First, the performance a reagent mixing manifold that allows ion-molecule reactions to be carried out in the LQIT was probed by examining an established ion-molecule reaction previously employed on a Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometer. Next, a novel ion-molecule reaction was developed using the new setup that exploits the favored formation of sodium and ammonium ion adducts when oxygen-containing analytes are ionized via electrospray ionization (ESI). Finally, the modified instrument was coupled with an HPLC to demonstrate that LC-MS3 using ion-molecule reactions and collision-activated dissociation (CAD) provides a powerful technique for the analysis of low level drug metabolites and impurities in pharmaceutical mixtures. Further, these methods were automated using the data-dependent features of the instrument, allowing for detailed structural information of unknown analytes "on-the-fly.";The second section (chapters 6, 7 and 8) focus on the development of laser-induced acoustic desorption (LIAD) methodology for structural elucidation. First, the coupling of this technique with a LQIT is presented and LIAD experiments are compared to those performed in a FT-ICR. Next, the use of LIAD in studies on the gas-phase reactivity of phenyl radicals toward tetrapeptides is presented. Very interesting results were obtained on the susceptibility of the disulfide bond to radical attack, especially considering the important role these bonds play in defining proteins' structures. Finally, the ability of LIAD-based methods to perform unparalleled characterization of petroleum fractions is presented. Also, the development of ClMn(H2O)+ chemical ionization (CI) on the LQIT is examined. The coupling of this CI method with LIAD on the LQIT is the initial step for future implementation of this methodology on a hydrid LQIT/FT-ICR instrument to provide one of the most powerful instruments for petroleum characterization in the industry.
机译:质谱(MS)由于其高灵敏度,高选择性和高速度而在混合物分析和混合物成分的结构阐明领域已被证明具有不可估量的价值。利用碰撞激活解离(CAD)的串联质谱(MS / MS)已成为未知分析物结构解析的首选技术。 MS与高效液相色谱(HPLC)的结合已允许对非常复杂的混合物中的组分进行痕量分析。然而,仅这些实验并不能总能对混合物中的未知分析物进行明确的鉴定。本论文中描述的实验旨在提供难以通过既定方法获得的混合物成分的更详细的结构信息。在第一部分(第3、4和5章)中,开发了气相离子分子反应,并在市售的线性四极离子阱(LQIT)质谱仪(Finnigan LTQ)上进行了实施,以使这些方法更广泛地应用于制药业。首先,通过检查先前在傅立叶变换离子回旋共振(FT-ICR)质谱仪上使用的已建立离子分子反应,探查了允许在LQIT中进行离子分子反应的试剂混合歧管的性能。接下来,使用该新装置开发了一种新型的离子分子反应,该反应利用含氧分析物通过电喷雾电离(ESI)进行电离时钠和铵离子加合物的有利形成。最后,将改进的仪器与HPLC结合使用,证明使用离子分子反应和碰撞活化解离(CAD)的LC-MS3为分析药物混合物中的低水平药物代谢物和杂质提供了强大的技术。此外,这些方法使用仪器的数据相关功能实现了自动化,从而可以“实时”获得未知分析物的详细结构信息。第二部分(第6、7和8章)着重介绍了激光的发展。诱导声解吸(LIAD)方法进行结构解析。首先,介绍了该技术与LQIT的耦合,并将LIAD实验与在FT-ICR中进行的实验进行了比较。接下来,介绍了LIAD在研究苯基自由基对四肽的气相反应性中的用途。关于二硫键对自由基攻击的敏感性,获得了非常有趣的结果,特别是考虑到这些键在定义蛋白质结构中的重要作用。最后,介绍了基于LIAD的方法对石油馏分进行无与伦比的表征的能力。同样,研究了LQIT上ClMn(H2O)+化学电离(CI)的发展。将该CI方法与LAD上的LIAD结合使用,是将来在液压LQIT / FT-ICR仪器上实施此方法的第一步,以提供业内最强大的石油表征仪器之一。

著录项

  • 作者

    Habicht, Steven C.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 243 p.
  • 总页数 243
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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