首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Immobilized carbon nanotubes as matrix for MALDI-TOF-MS analysis: Applications to neutral small carbohydrates
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Immobilized carbon nanotubes as matrix for MALDI-TOF-MS analysis: Applications to neutral small carbohydrates

机译:固定化碳纳米管作为基质用于MALDI-TOF-MS分析:在中性小碳水化合物中的应用

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In this work, we reported on the advantages of immobilized carbon nanotubes as a novel MALDI-matrix. Recently, carbon nanotubes have been reported to be an effective MALDI matrix for small molecules (Anal. Chem 2003, 75, 6191), as it can eliminate the interfering matrix peaks as well as form a web morphology to fully disperse the analyte and allow strong ultraviolet absorption for enhanced pulsed laser desorption and ionization. In our study, to overcome the problem that the carbon nanotube matrix may fly off from the target, a type of polyurethane adhesive, NIPPOLAN-DC-205, is introduced to immobilize carbon nanotubes on the target, which enables widespread application of carbon nanotubes as matrix for MALDI-MS analysis. At the same time, the properties of the carbon nanotubes as an efficient matrix remained after immobilization. The presence of NIPPOLAN-DC-205 increases the time for analysis at a particular desorption spot by minimizing the time-consuming search for "hot spots" and facilitating experiments such as post source decay (PSD) which need longer-lasting signals. Moreover, NIPPOLAN-DC-205 produces no interference peaks and can easily be cleaned with acetone. Fast evaporation technology may be used to enhance signal reproducibility in MALDI analysis using carbon nanotubes as matrix. Consequently, the applicability of the carbon nanotube as matrix for matrix-assisted laser desorption/ ionization mass spectrometry (MALDI-MS) analysis of low molecular mass analytes is highly improved. The feasibility of the method employing polyurethane is demonstrated by comparison of the results produced from the carbon nanotube matrix with and without immobilization. In addition, neutral small carbohydrates, which are difficult to be ionized normally, can be cationized with high efficiency by MALDI-TOF-MS using the immobilized carbon nanotube matrix. The method was further applied to analyze peptides and detect urine glucose successfully. (J Am Soc Mass Spectrom 2005, 16, 333-339) (C) 2005 American Society for Mass Spectrometry.
机译:在这项工作中,我们报告了固定碳纳米管作为新型MALDI基质的优势。最近,据报道碳纳米管是有效的小分子MALDI基质(Anal。Chem 2003,75,6191),因为它可以消除干扰的基质峰并形成网状形态以完全分散分析物并允许紫外线吸收可增强脉冲激光的解吸和电离作用。在我们的研究中,为了克服碳纳米管基质可能从目标飞出的问题,引入了一种聚氨酯粘合剂NIPPOLAN-DC-205将碳纳米管固定在目标上,这使得碳纳米管作为MALDI-MS分析的基质。同时,固定后保留了作为有效基质的碳纳米管的性能。 NIPPOLAN-DC-205的存在,通过最大程度地减少了对“热点”的耗时搜索并简化了诸如后源衰减(PSD)之类的需要较长信号持续时间的实验,从而增加了在特定解吸点进行分析的时间。此外,NIPPOLAN-DC-205不会产生干扰峰,并且很容易用丙酮清洗。在使用碳纳米管作为基质的MALDI分析中,快速蒸发技术可用于增强信号重现性。因此,大大提高了碳纳米管作为基质用于低分子量分析物的基质辅助激光解吸/电离质谱分析(MALDI-MS)的适用性。通过比较具有和不具有固定化的碳纳米管基质产生的结果,证明了采用聚氨酯的方法的可行性。此外,使用固定的碳纳米管基质,可以通过MALDI-TOF-MS高效地阳离子化通常难以离子化的中性小碳水化合物。该方法进一步应用于多肽分析,成功检测出尿中葡萄糖。 (J Am Soc Mass Spectrom 2005,16,333-339)(C)2005美国质谱学会。

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