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A thiophene-containing compound as a matrix for matrix-assisted laser desorption/ionization mass spectrometry and the electrical conductivity of matrix crystals

机译:含噻吩的化合物作为基质用于激光辅助解吸/电离质谱和基质晶体的电导率

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摘要

The electrical conductivity of the matrix crystal might be a new factor to enhance matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MSl sensitivity. In MALDI-MS, several compounds are used as a standard matrix. Utilization of such compounds is based on an a posteriori approach, but there is no theoretical guidance for selecting a matrix. In an attempt to further understand performance in MALDI-MS, we utilized peptide detection for random screening of a chemical library (12,383 compounds) for compounds with matrix functions in MALDI-MS. A lot of thiophene compounds were found to be a matrix, in which 2-[5-(2,4-dichlorobenzoyl)-2-thienyl] acetic acid (DCBTAl provided an important clue to measure the electrical conductivity of the matrix crystal, because the structure of DCBTA is analogous to conductive polymers and organic solar cells. Most of the crystals of standard matrices, such as a-cyano-4-hydroxycinnamic acid (CHCAl, 3, 5-dimethoxy-4-hydroxycinnamic acid [sinapinic acid, (SA)], and DCBTA showed electrical conductivity, whereas the conductivity of crystal was not observed in 2, 5-dihydroxybenzoic acid (2,5-DHB). On the other hand, super-DHB using 2-hydroxy-5-methoxybenzoic acid [5-methoxysalicylic acid, (MSA)] as an additive to 2, 5-DHB, improved the electrical conductivity of the crystal, that followed the enhancement of peak intensity in MS spectrum. These observations might indicate that the electrical conductivity of matrix crystals is a key consideration in obtaining efficient MALDI performance.
机译:基质晶体的电导率可能是增强基质辅助激光解吸/电离质谱法(MALDI-MS1灵敏度)的新因素。在MALDI-MS中,几种化合物用作标准基质。为了进一步了解MALDI-MS的性能,我们采用了肽检测技术来随机筛选化学文库(12,383个化合物)中具有MALDI功能的化合物-MS。许多噻吩化合物被发现是基质,其中2- [5-(2,4-二氯苯甲酰基)-2-噻吩基]乙酸(DCBTAl提供了重要的线索来测量基质的电导率晶体,因为DCBTA的结构类似于导电聚合物和有机太阳能电池。大多数标准基质的晶体,例如a-氰基-4-羟基肉桂酸(CHCAl,3,5-二甲氧基-4-羟基肉桂酸[sinap硫酸(SA)]和DCBTA显示出导电性,而在2,5-二羟基苯甲酸(2,5-DHB)中未观察到晶体的导电性。另一方面,使用2-羟基-5-甲氧基苯甲酸[5-甲氧基水杨酸(MSA)]作为2,-5-DHB的添加剂的super-DHB改善了晶体的电导率,随之提高了MS光谱中的峰强度。这些观察结果可能表明,基质晶体的电导率是获得有效MALDI性能的关键考虑因素。

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