ThoMSon Mass Spectrometry Laboratory, Institute of Chemistry, University of Campinas-UNICAMP, Campinas, SP 13083-970, Brazil.
Anal Bioanal Chem. 2010 Sep;398(1):265-94. doi: 10.1007/s00216-010-3808-3. Epub 2010 Jun 3.
Mass spectrometry has recently undergone a second contemporary revolution with the introduction of a new group of desorption/ionization (DI) techniques known collectively as ambient mass spectrometry. Performed in an open atmosphere directly on samples in their natural environments or matrices, or by using auxiliary surfaces, ambient mass spectrometry (MS) has greatly simplified and increased the speed of MS analysis. Since its debut in 2004 there has been explosive growth in the applications and variants of ambient MS, and a very comprehensive set of techniques based on different desorption and ionization mechanisms is now available. Most types of molecules with a large range of masses and polarities can be ionized with great ease and simplicity with the outstanding combination of the speed, selectivity, and sensitivity of MS detection. This review describes and compares the basis of ionization and the concepts of the most promising ambient MS techniques known to date and illustrates, via typical analytical and bioanalytical applications, how ambient MS is helping to bring MS analysis deeper than ever into the "real world" open atmosphere environment--to wherever MS is needed.
质谱分析技术最近经历了第二次当代革命,引入了一组新的解吸/电离(DI)技术,统称为环境质谱分析。在开放的大气环境中,直接对样品在其自然环境或基质中进行操作,或者通过使用辅助表面,环境质谱分析(MS)极大地简化和加快了 MS 分析的速度。自 2004 年问世以来,环境 MS 的应用和变体呈爆炸式增长,并且现在已经有了非常全面的基于不同解吸和电离机制的技术。大多数具有广泛质量和极性范围的分子都可以通过 MS 检测的速度、选择性和灵敏度的出色结合,非常轻松和简单地进行离子化。本综述描述和比较了迄今为止已知的最有前途的环境 MS 技术的电离基础和概念,并通过典型的分析和生物分析应用说明了环境 MS 如何帮助将 MS 分析深入到“真实世界”的开放大气环境——无论 MS 在哪里都需要进行分析。