Turney Kevin, Drake Timothy J, Smith Joshua E, Tan Weihong, Harrison W W
Department of Chemistry, University of Florida, PO Box 117200, Gainesville, FL 32611-7200, USA.
Rapid Commun Mass Spectrom. 2004;18(20):2367-74. doi: 10.1002/rcm.1634.
Nanoparticles for the extraction of peptides and subsequent analysis using atmospheric pressure matrix-assisted laser desorption/ionization (APMALDI) have been evaluated. The atmospheric pressure source allows for particles to be directly introduced in the liquid matrix, minimizing sample loss and analysis time. Described in this work are two sample preparation procedures for liquid APMALDI analysis: a C18 functionalized silica nanoparticle for hydrophobic extractions, and an aptamer functionalized magnetite core nanoparticle for rapid, affinity extractions. The C18 particles provide a non-selective support for rapid profiling applications, while the aptamer particles are directed towards reducing the complexity in biological samples. The aptamer functionalized particles provide a more selective analyte-nanoparticle interaction whereby the tertiary structure of the analyte becomes more critical to the extraction. In both cases, the liquid APMALDI matrix provides a support for ionization, and acts as the releasing agent for the analyte-particle interaction. Additionally, analyte enrichment was possible due to the large surface-to-volume ratio of the particles. The experiments conducted with functionalized nanoparticles, in an atmospheric pressure liquid matrix, present a basis for further methodologies and utilities of silica nanoparticles to be developed.
已对用于肽提取及随后使用常压基质辅助激光解吸/电离(APMALDI)进行分析的纳米颗粒进行了评估。常压源允许将颗粒直接引入液体基质中,从而将样品损失和分析时间降至最低。本文介绍了两种用于液体APMALDI分析的样品制备程序:一种用于疏水萃取的C18功能化二氧化硅纳米颗粒,以及一种用于快速亲和萃取的适体功能化磁铁矿核纳米颗粒。C18颗粒为快速分析应用提供了非选择性支持,而适体颗粒旨在降低生物样品的复杂性。适体功能化颗粒提供了更具选择性的分析物 - 纳米颗粒相互作用,由此分析物的三级结构对萃取变得更为关键。在这两种情况下,液体APMALDI基质为电离提供支持,并充当分析物 - 颗粒相互作用的释放剂。此外,由于颗粒的大表面积与体积比,分析物富集是可能的。在常压液体基质中使用功能化纳米颗粒进行的实验为进一步开发二氧化硅纳米颗粒的方法和应用奠定了基础。