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FluoMALDI Microscopy: Matrix Co-Crystallization Simultaneously Enhances Fluorescence and MALDI Imaging. | LitMetric

AI Article Synopsis

  • - The authors found that co-crystallizing fluorophores with MALDI imaging matrices can boost fluorophore brightness significantly (up to 79 times), enhancing tissue autofluorescence.
  • - This method, called FluoMALDI, allows simultaneous imaging of biological samples using both fluorescence microscopy and MALDI imaging, simplifying the process since both methods can target the exact same cells without physical alterations.
  • - The study demonstrates FluoMALDI's potential with various fluorophores in brain and kidney tissues, indicating it could advance imaging techniques in fields like cell biology and pathology.

Article Abstract

Here, the authors report that co-crystallization of fluorophores with matrix-assisted laser desorption/ionization (MALDI) imaging matrices significantly enhances fluorophore brightness up to 79-fold, enabling the amplification of innate tissue autofluorescence. This discovery facilitates FluoMALDI, the imaging of the same biological sample by both fluorescence microscopy and MALDI imaging. The approach combines the high spatial resolution and specific labeling capabilities of fluorescence microscopy with the inherently multiplexed, versatile imaging capabilities of MALDI imaging. This new paradigm simplifies registration by avoiding physical changes between fluorescence and MALDI imaging, allowing to image the exact same cells in tissues with both modalities. Matrix-fluorophore co-crystallization also facilitates applications with insufficient fluorescence brightness. The authors demonstrate  feasibility of FluoMALDI imaging with endogenous and exogenous fluorophores and autofluorescence-based FluoMALDI of brain and kidney tissue sections. FluoMALDI will advance structural-functional microscopic imaging in cell biology, biomedicine, and pathology.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10724403PMC
http://dx.doi.org/10.1002/advs.202304343DOI Listing

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