4.7 Article

Unsaturated lipid isomeric imaging based on the Paterno-Buchi reaction in the solid phase in ambient conditions

期刊

TALANTA
卷 235, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.talanta.2021.122816

关键词

Mass spectrometry imaging; Lipids; Spraying; Solid phase; Paterno-BuChi reaction; Air-flow-assisted desorption electrospray ionisation

资金

  1. National Natural Science Foundation of China [21927808]

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The development of unsaturated lipid isomeric imaging based on the Patern`o-Buchi (PB) reaction has significantly improved in recent years. A method of PB reaction in the solid phase in ambient conditions was developed in this paper, combined with air-flow-assisted desorption electrospray ionisation mass spectrometry (AFADESI-MS) to achieve in situ imaging of lipids at an isomeric level. This method simplifies reaction conditions in the imaging process and may be useful for future studies on lipid isomers in tissues.
In recent years, the development of unsaturated lipid isomeric imaging based on the Patern`o-Buchi (PB) reaction has improved significantly. However, research on this imaging method in ambient conditions needs to expand. In this paper, a method of PB reaction in the solid phase in ambient conditions is developed, which is combined with air-flow-assisted desorption electrospray ionisation mass spectrometry (AFADESI-MS) to achieve in situ imaging of lipids at an isomeric level. Experiments showed that the efficiency of the PB reaction was much higher when spraying the reagent solution than when sprinkling the reactant powder directly, and it was not lower than that in the liquid phase. This method can simplify the reaction conditions in the imaging process and can be applied to tissue section samples with only 10 min of pre-processing. The study successfully demonstrated the spatial distribution of unsaturated lipid isomers, and the isomeric ratio corresponded to the lesion areas in mouse brain cancer tissues. Due to its simple operation and performance in ambient conditions, this method may be useful for future studies on lipid isomers in tissues.

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