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Development of high-sensitivity atmospheric pressure (AP) matrix-assisted laser desorption/ionization (MALDI) and open air ionization techniques for the analysis of biomolecules by mass spectrometry.

机译:高灵敏度大气压(AP)基质辅助激光解吸/电离(MALDI)和露天电离技术的发展,用于通过质谱分析生物分子。

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摘要

Matrix-assisted laser desorption/ionization (MALDI) has been celebrated as a soft ionization method for analyzing very diverse biological species including large proteins, peptides, carbohydrates, lipids and metabolites. The fact that MALDI is tolerant to salts and buffers and that it mostly produces singly charged ions from intact biomolecules is considered highly advantageous over electrospray ionization (ESI). Almost two decades after the introduction of vacuum MALDI, the technique was successfully implemented under atmospheric pressure (AP) conditions by Laiko and co-workers. Some of the most salient advantages of AP-MALDI over vacuum MALDI are its ability to generate intact ions from labile species with minimal fragmentation due to collisional cooling under AP, the ability of performing MSn experiments, and its exchangeability with other ion sources. However, AP-MALDI suffers from limited sensitivity due to low ion transmission efficiency under AP conditions. Because sensitivity is a function of the sample pretreatment method of choice, both preconcentration and selective sample fractionation can be used during the initial stages of the analytical pipeline to improve detectability.;To that end, the first part of the work presented in this thesis is aimed at investigating various approaches to improve the sensitivity of AP-MALDI for mass spectrometric analysis of biomolecules. Chapter 1 reviews the history of laser desorption ionization (LDI), presenting salient features of vacuum MALDI and AP-MALDI, and concludes with a brief overview of leading ambient ionization techniques, such as Direct Analysis in Real Time (DART) ionization. Chapter 2 presents an investigation of an on-chip sample preconcentration approach coupled to AP-MALDI for high-sensitivity analysis of neuropeptides extracted from Aedes aegypti mosquito heads. The theme of exploring efficient and reproducible purification methods for complex biosamples is continued in Chapter 3, where an evaluation of new on-tip solid-phase extraction (SPE) micro columns with various functional groups is presented. A second approach for enhancing AP-MALDI sensitivity by constructing a new pneumatically-assisted (PA)-AP-MALDI ion source is presented in Chapter 4, where various factors affecting the performance of this device are investigated. Chapter 5 describes work involving the evaluation of DART ionization as a high-throughput method for the detection and identification of small terpene molecules central to the Aedes aegypti mosquito lifecycle.
机译:基质辅助激光解吸/电离(MALDI)已被誉为一种软电离方法,用于分析非常多样的生物物种,包括大蛋白,肽,碳水化合物,脂质和代谢产物。相对于电喷雾电离(ESI),MALDI可以耐受盐和缓冲液,并且它主要从完整的生物分子中产生单电荷离子,这一事实被认为具有很高的优势。引入真空MALDI技术近二十年后,Laiko及其同事在大气压(AP)条件下成功实施了该技术。与真空MALDI相比,AP-MALDI的一些最明显的优势是:它能够从不稳定的物种中产生完整的离子,并且由于AP的碰撞冷却而产生的碎片最少,具有执行MSn实验的能力以及与其他离子源的可交换性。然而,由于AP条件下离子传输效率低,AP-MALDI具有有限的灵敏度。由于灵敏度是所选择的样品预处理方法的函数,因此在分析管线的初始阶段可以同时使用预浓缩和选择性样品分馏来提高可检测性。为此,本论文的第一部分是旨在研究各种方法来提高AP-MALDI在生物分子质谱分析中的敏感性。第1章回顾了激光解吸电离(LDI)的历史,介绍了真空MALDI和AP-MALDI的显着特征,并以领先的环境电离技术(例如实时直接分析(DART)电离)作了简要概述。第2章介绍了一种芯片上样品预富集方法的研究,该方法与AP-MALDI结合用于高灵敏度分析从埃及伊蚊(Aedes aegypti)蚊子头中提取的神经肽。在第3章中继续探讨探索用于复杂生物样品的高效且可重现的纯化方法的主题,其中对具有各种官能团的新型尖端固相萃取(SPE)微柱进行了评估。第4章介绍了通过构造新的气动辅助(PA)-AP-MALDI离子源来提高AP-MALDI灵敏度的第二种方法,其中研究了影响该设备性能的各种因素。第5章介绍了涉及DART电离的评估工作,该方法是一种高通量方法,用于检测和识别埃及伊蚊的生命周期中心的小萜分子。

著录项

  • 作者

    Navare, Arti T.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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