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Graphene-Coated Glass Substrate for Continuous Wave Laser Desorption and Atmospheric Pressure Mass Spectrometric Imaging of a Live Hippocampal Tissue

Authors
Kim, Jae YoungLim, HeejinLee, Sun YoungSong, CheolPark, Ji-WonShin, Hyeon HoLim, Dong-KwonMoon, Dae Won
Issue Date
31-Jul-2019
Publisher
AMER CHEMICAL SOC
Keywords
mass spectrometry imaging; graphene-coated substrate; laser desorption; ambient mass spectrometry; hippocampal tissue
Citation
ACS APPLIED MATERIALS & INTERFACES, v.11, no.30, pp.27153 - 27161
Indexed
SCIE
SCOPUS
Journal Title
ACS APPLIED MATERIALS & INTERFACES
Volume
11
Number
30
Start Page
27153
End Page
27161
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/131406
DOI
10.1021/acsami.9b02620
ISSN
1944-8244
Abstract
The atmospheric pressure mass spectrometric (AP-MS) imaging technology combined with an inverted optical microscopic system is a powerful tool for determining the presence and spatial distributions of specific biomolecules of interest in live tissues. Efficient desorption and ionization are essential to acquire mass spectrometric (MS) information in an ambient environment. In this study, we demonstrate a new and efficient desorption process using a graphene-coated glass substrate and a continuous wave (CW) laser for high resolution AP-MS imaging of a live hippocampal tissue. We found that desorption of biomolecules in a live tissue slice was possible with the aid of a graphene-coated glass substrate and indirect application of a 532 nm CW laser on the graphene substrate. Interestingly, the desorption efficiency of a live tissue on the graphene-coated substrate was strongly dependent on the number of graphene layers. Single-layer graphene was found to be the most sensitive substrate for efficient desorption and reproducible high-resolution hippocampal tissue imaging applications. The subsequent ionization process using nonthermal plasma generated sufficient amounts of molecular ions to obtain high resolution two-dimensional MS images of the cornu ammonis and the dentate gyrus regions of the hippocampus. Therefore, graphene-coated substrates could be a promising platform to induce an efficient desorption process essential for highly reproducible ambient MS imaging.
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