Laser-Induced Acoustic Desorption of Natural and Functionalized Biochromophores

Laser-induced acoustic desorption (LIAD) has recently been established as a tool for analytical chemistry. It is capable of launching intact, neutral, or low charged molecules into a high vacuum environment. This makes it ideally suited to mass spectrometry. LIAD can be used with fragile biomolecule...

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Veröffentlicht in:Analytical chemistry (Washington) 2015-06, Vol.87 (11), p.5614-5619
Hauptverfasser: Sezer, Uğur, Wörner, Lisa, Horak, Johannes, Felix, Lukas, Tüxen, Jens, Götz, Christoph, Vaziri, Alipasha, Mayor, Marcel, Arndt, Markus
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Sprache:eng
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Zusammenfassung:Laser-induced acoustic desorption (LIAD) has recently been established as a tool for analytical chemistry. It is capable of launching intact, neutral, or low charged molecules into a high vacuum environment. This makes it ideally suited to mass spectrometry. LIAD can be used with fragile biomolecules and very massive compounds alike. Here, we apply LIAD time-of-flight mass spectrometry (TOF-MS) to the natural biochromophores chlorophyll, hemin, bilirubin, and biliverdin and to high mass fluoroalkyl-functionalized porphyrins. We characterize the variation in the molecular fragmentation patterns as a function of the desorption and the VUV postionization laser intensity. We find that LIAD can produce molecular beams an order of magnitude slower than matrix-assisted laser desorption (MALD), although this depends on the substrate material. Using titanium foils we observe a most probable velocity of 20 m/s for functionalized molecules with a mass m = 10 000 Da.
ISSN:0003-2700
1520-6882
1520-6882
DOI:10.1021/acs.analchem.5b00601