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Matrix-Assisted Laser Desorption Electrospray Ionization: Fundamental Principles and Applications Towards Molecular Imaging.

机译:基质辅助激光解吸电喷雾电离:分子成像的基本原理和应用。

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摘要

The past decade has shown numerous advancements in the field of Ambient Mass Spectrometry. Every year there have been new iterations of existing ionization sources as well as the continued development of new methods of producing ions under atmospheric pressure conditions. Among these ambient ionization techniques is a source that was developed in the Muddiman lab in 2005 that combines features and attributes of the two most commonly used ionization methods for biological analysis. By fusing electrospray ionization with matrix-assisted laser desorption ionization, the matrix assisted laser desorption electrospray ionization (MALDESI) technique demonstrates the advantages to hybrid ionization methods.;Along with advancements in instrumentation, including ionization methods as well as developments in mass analyzer technology, there have also been new ways to apply these scientific innovations to answer complex biological problems. The ability to obtain spatial information of unlabeled analyte with the specificity of mass spectrometric detection in the growing field of mass spectrometry imaging has had a significant impact on a number of research areas including drug development, biomarker discovery, and clinical diagnostics.;This work describes the path along the development of a novel ionization source from inception to its continued advancement and application to real world problems. The initial goals involved optimizing the technology to determine the limits of what the source is capable of. Along the way MALDESI was improved to allow for the ability to perform mass spectrometry imaging. With this new enhancement, MALDESI has been utilized to determine the distribution of dosed drugs within tissue sections. This spatial information can provide insight into the pharmacokinetic and pharmacodynamic properties of the drug.;In addition to its application in mass spectrometry imaging, the MALDESI source also displays potential as a direct analysis technique. The ambient nature of MALDESI makes it well suited for fast analyses with minimal sample preparation. One such application of these capabilities of MALDESI is shown in the direct analysis of dyed fabric and fibers. This experiment can be performed in seconds and provide valuable information about the identity of the dye as well the fabric polymer type.;Undoubtedly, the MALDESI technology will continue to improve and advance along with other developments in mass spectrometry. New methods of analysis and applications are bound to be developed providing avenues for MALDESI to discover other practical uses.
机译:在过去的十年中,环境质谱领域取得了许多进步。每年都有新的现有电离源迭代,以及不断发展的在大气压条件下产生离子的新方法。在这些环境电离技术中,有一种源于2005年在Muddiman实验室中开发,该源结合了两种最常用的生物分析电离方法的特征和属性。通过将电喷雾电离与基质辅助激光解吸电离融合,基质辅助激光解吸电喷雾电离(MALDESI)技术证明了混合电离方法的优势。随着仪器的发展,包括电离方法以及质量分析仪技术的发展,还有一些新的方法可以将这些科学创新应用于解决复杂的生物学问题。在不断增长的质谱成像领域中,利用质谱检测的特异性获得未标记分析物的空间信息的能力已对包括药物开发,生物标志物发现和临床诊断在内的许多研究领域产生了重大影响。新型电离源从诞生到持续发展,一直到解决现实问题的过程。最初的目标涉及优化技术以确定源能力的限制。在此过程中,对MALDESI进行了改进,使其能够执行质谱成像。通过这种新的增强功能,MALDESI已被用于确定组织切片内已分配药物的分布。该空间信息可以提供有关药物的药代动力学和药效动力学特性的见解。除了在质谱成像中的应用以外,MALDESI来源还显示出了作为直接分析技术的潜力。 MALDESI的环境性质使其非常适合于以最少的样品制备量进行快速分析。在染色织物和纤维的直接分析中显示了MALDESI的这些功能的一种此类应用。该实验可以在几秒钟内完成,并提供有关染料以及织物聚合物类型的身份的有价值的信息。毫无疑问,MALDESI技术将随着质谱的其他发展而不断改进和发展。分析和应用的新方法势必会发展,为MALDESI发现其他实际用途提供途径。

著录项

  • 作者

    Barry, Jeremy Alan.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Analytical chemistry.;Biochemistry.;Pharmacology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 299 p.
  • 总页数 299
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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