AI Article Synopsis

  • The study focuses on developing metal-organic framework (MOF) matrices to enhance matrix-assisted laser desorption ionization mass spectrometry imaging (MALDI-MSI) for analyzing small molecules, particularly hepatotoxic compounds.
  • Ti-based MOF nanosheets were found to have advantages over traditional organic matrices, showing less background noise, greater stability, and better salt resistance during imaging.
  • The research demonstrated that these MOF nanosheets improved detection of specific hepatotoxic components during the steaming process, revealing their unique spatial distribution and contributing valuable insights for the study of small molecules.

Article Abstract

The selection of the matrix is crucial for matrix assisted laser desorption ionization mass spectrometry imaging (MALDI-MSI). This work successfully synthesized metal-organic framework (MOF) matrices to address the limitations on the application of traditional organic matrices in the study of small molecule compositions, and Ti-based MOF nanosheets were screened as matrices for imaging the hepatotoxic components of . Comparison between six MOF materials and traditional organic matrices showed that Ti-based MOF nanosheets have less background interference, significant stability, and high salt resistance. The imaging results indicated that the main components of , free anthraquinone and stilbene glycoside have unique spatial distribution characteristics. Successful application of the synthesized Ti-based MOF nanosheets in mass spectrometry imaging improved the detection ability of mass spectrometry imaging in the small molecule field, and spatiotemporal content changes of hepatotoxic components in during the steaming process were observed, providing a scientific basis for steaming.

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Source
http://dx.doi.org/10.1039/d4an00964aDOI Listing

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