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Identification of Microalgae by Laser Desorption/Ionization Mass Spectrometry Coupled with Multiple Nanomatrices
Authors:Lung-Hsiang Peng  Binesh Unnikrishnan  Chi-Yu Shih  Tung-Ming Hsiung  Jeng Chang  Pang-Hung Hsu  Tai-Chia Chiu  Chih-Ching Huang
Institution:1.Department of Bioscience and Biotechnology,National Taiwan Ocean University,Keelung,Taiwan;2.Institute of Marine Biology,National Taiwan Ocean University,Keelung,Taiwan;3.Center of Excellence for the Oceans,National Taiwan Ocean University,Keelung,Taiwan;4.Institute of Marine Environmental Chemistry and Ecology,National Taiwan Ocean University,Keelung,Taiwan;5.Department of Applied Science,National Taitung University,Taitung,Taiwan;6.School of Pharmacy, College of Pharmacy,Kaohsiung Medical University,Kaohsiung,Taiwan
Abstract:In this study, we demonstrate a simple method to identify microalgae by surface-assisted laser desorption/ionization mass spectrometry (SALDI-MS) using three different substrates: HgSe, HgTe, and HgTeSe nanostructures. The fragmentation/ionization processes of complex molecules in algae varied according to the heat absorption and transfer efficiency of the nanostructured matrices (NMs). Therefore, the mass spectra obtained for microalgae showed different patterns of m/z values for different NMs. The spectra contained both significant and nonsignificant peaks. Constructing a Venn diagram with the significant peaks obtained for algae when using HgSe, HgTe, and HgTeSe NMs in m/z ratio range 100–1000, a unique relationship among the three sets of values was obtained. This unique relationship of sets is different for each species of microalgae. Therefore, by observing the particular relationship of sets, we successfully identified different algae such as Isochrysis galbana, Emiliania huxleyi, Thalassiosira weissflogii, Nannochloris sp., Skeletonema cf. costatum, and Tetraselmis chui. This simple and cost-effective SALDI-MS analysis method coupled with multi-nanomaterials as substrates may be extended to identify other microalgae and microorganisms in real samples.
Graphical Abstract Identification of microalgae by surface-assisted laser desorption/ionization mass spectrometry coupled with three different mercury-based nanosubstrates
Keywords:
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