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Surface plasmon resonance-laser desorption/ionization-time-of-flight mass spectrometry

机译:表面等离子体激元共振激光解吸/电离飞行时间质谱

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The laser desorption/ionization (LDI) process is investigated under surface plasmon resonance (SPR) conditions using time-of-flight mass spectrometry (TOFMS). We demonstrate that LDI-TOFMS at the SPR angle requires a lower minimum laser fluence for the production of silver monomer and cluster cations from ablation of a thin silver film substrate. In the LDI of gramicidin S deposited on a thin silver film substrate, the largest intensity for the molecular cation peak occurs when the laser light is incident on the substrate at a specific SPR angle. These results fully confirm SPR enhancement of the LDI process. The capability to perform SPR-LDI on a larger molecular weight analyte (1141 amu for gramicidin S) represents a new milestone beyond the previous achievement with rhodamine B (479 amu). A better understanding of the SPR mechanism is gained with respect to the substrate metals (silver vs aluminum), desorption (microscopic vs mesoscopic), and ionization (chemical vs multiphoton). These findings may be useful in the future design of SPR-LDI techniques for better TOFMS analysis of higher mass biomolecules. [References: 16]
机译:使用飞行时间质谱(TOFMS)在表面等离振子共振(SPR)条件下研究了激光解吸/电离(LDI)过程。我们证明,在SPR角处的LDI-TOFMS需要较低的最小激光通量,以便从薄银膜基板的烧蚀中生产银单体和簇阳离子。在沉积在薄银膜基底上的短杆菌肽S的LDI中,当激光以特定的SPR角入射到基底上时,分子阳离子峰的最大强度出现。这些结果充分证实了LDI工艺的SPR增强。对较大分子量分析物(对于短杆菌肽S为1141 amu)执行SPR-LDI的能力,代表了超越若丹明B(479 amu)先前成就的新里程碑。关于基材金属(银对铝),解吸(微观对介观)和电离(化学对多光子),对SPR机理有了更好的了解。这些发现可能在将来设计SPR-LDI技术以更好地对更高质量的生物分子进行TOFMS分析时可能有用。 [参考:16]

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