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Graphene oxide-metal oxide nanocomposites for on-target enrichment and analysis of phosphorylated biomolecules. | LitMetric

AI Article Synopsis

  • - The study focuses on enhancing signal strength in matrix-assisted laser desorption/ionization mass spectrometry by modifying the target surface with graphene oxide-lanthanide metal oxides (like samarium, gadolinium, dysprosium, and erbium) nanocomposites for better detection of phosphopeptides and phospholipids.
  • - A detailed protocol for enriching phosphopeptides from β-casein digest and phospholipids from phosphatidylcholine is established, demonstrating improved detection capabilities with the nanocomposites, especially notable for their sensitivity with GO-Gd O achieving detection limits as low as 0.5 fmol.
  • - The method shows practical advantages including rapid enrichment (10 minutes), high reproducibility

Article Abstract

The surface of matrix-assisted laser desorption/ionization mass spectrometry target is modified for improved signal strength and detection of analytes. The developed method includes on-target enrichment and detection of phosphopeptides/phospholipids using graphene oxide-lanthanide metal oxides (samarium, gadolinium, dysprosium, and erbium) nanocomposites. Enriched phosphopeptides are detected using material enhanced laser desorption/ionization mass spectrometry and phospholipids by laser desorption/ionization-mass spectrometry. Nanocomposites are prepared using graphene oxide with respective metal salts at high pH. They are characterized for nano-morphology, chemistry, porosity, composition, crystallinity, and thermal stability. Phosphopeptides enrichment protocol is developed and optimized for tryptic β-casein digest and that of phospholipids by phosphatidylcholine standard. Statistical analyses of phosphopeptides and phospholipids from milk show overlapping results for gadolinium, dysprosium, and erbium oxide nanocomposites. GO-Gd O has better enrichment efficiency and application as LDI material. Selectivity for GO-Dy O is 1:2500, for GO-Sm O is 1:3500, and 1:4000 for GO-Gd O . GO-Er O has a sensitivity of 25 fmol, whereas the highest sensitivity is down to 0.5 fmol for GO-Gd O . On-target enrichment is batch to batch reproducible with a standard deviation of <1, reduced time of enrichment to 10 min, and ease of operation compared to solid-phase batch extraction. The developed method enriches serum phosphopeptides characteristic of cancer-related phosphoproteins.

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Source
http://dx.doi.org/10.1002/jssc.202001276DOI Listing

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