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聚集诱导发射化合物作为新型辅助基质用于激光解吸/电离飞行时间质谱分析。

Aggregation-induced emission compounds as new assisted matrices for laser desorption/ionization time-of-flight mass spectrometry.

机构信息

Key Laboratory of Theoretical and Computational Photochemistry, College of Chemistry, Beijing Normal University, Beijing 100875, PR China.

Key Laboratory for Cell Proliferation and Regulation Biology, Ministry of Education, Beijing Normal University, Beijing 100875, PR China.

出版信息

Anal Chim Acta. 2015 Jan 1;853:375-383. doi: 10.1016/j.aca.2014.09.047. Epub 2014 Oct 8.

DOI:10.1016/j.aca.2014.09.047
PMID:25467482
Abstract

Here, N,N'-bis(4-hydroxylsalicylidene)-p-phenylenediamine (BSPD-OH), N,N'-bis(4-methoxylsalicylidene)-p-phenylenediamine (BSPD-OMe) and N,N'-bis(salicylidene)-p-phenylenediamine (BSPD), which belong to the same category of aggregation-induced emission (AIE) compounds based on Schiff base reactions, were synthesized and applied as new matrices in the analysis of small molecules by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS). This type of AIE compounds can be good MALDI matrices. Conventional organic matrices often produce large amounts of matrix ions, hindering the analysis of low molecular weight (LMW) compounds. However, these AIE compounds generate few matrix ions and less background interference because their presence as aggregates decreases the generation of matrix interference. The sensitivity of the AIE matrix is high because the aggregates can improve the absorption of the applied laser emissions. We can regulate the ionization efficiency of the AIE matrix by changing its aggregation state. During this study, BSPD-OH exhibited better ionization efficiency than the other two AIE matrices because it has more phenolic hydroxyl groups. BSPD-OH was successfully applied to the analysis of various LMW compounds including amino acids, organic amine compounds, isoquinoline compounds and fluoroquinolones compounds. This material also can be employed during the qualitative and quantitative analysis of LMW metabolites in human urine without requiring complicated separation processes.

摘要

这里,N,N'-双(4-羟基水杨醛基)-对苯二胺(BSPD-OH)、N,N'-双(4-甲氧基水杨醛基)-对苯二胺(BSPD-OMe)和 N,N'-双(水杨醛基)-对苯二胺(BSPD),它们属于基于希夫碱反应的聚集诱导发射(AIE)化合物类别,被合成并应用于小分子的分析中,通过基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)。这种类型的 AIE 化合物可以作为很好的 MALDI 基质。传统的有机基质通常会产生大量的基质离子,阻碍对低分子量(LMW)化合物的分析。然而,由于这些 AIE 化合物以聚集态存在,减少了基质干扰的产生,因此产生的基质离子和背景干扰较少。由于聚集态可以提高所施加激光发射的吸收,AIE 基质的灵敏度较高。我们可以通过改变其聚集态来调节 AIE 基质的电离效率。在本研究中,BSPD-OH 表现出比其他两种 AIE 基质更好的电离效率,因为它具有更多的酚羟基。BSPD-OH 成功地应用于各种 LMW 化合物的分析,包括氨基酸、有机胺化合物、异喹啉化合物和氟喹诺酮化合物。这种材料还可以用于无需复杂分离过程的人尿中 LMW 代谢物的定性和定量分析。

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