Papers
2
Total Citations
28
H-Index
2
About
Gabe Nagy is a rising researcher at the forefront of analytical chemistry and bioanalytical mass spectrometry, with a core focus on developing innovative separation technologies for complex biological samples. His key research areas include nanoflow liquid chromatography (nanoLC), ion mobility spectrometry (IMS), and high-throughput mass spectrometry-based assays for functional genomics. Nagy's major contribution is the development of a "nanowell-mediated multidimensional separation" platform that integrates nanoLC with Structures for Lossless Ion Manipulations (SLIM) ion mobility-mass spectrometry. This work, published in 2018 and garnering 20 citations, enables rapid, high-peak-capacity proteomic analyses by dramatically improving the speed and resolution of peptide separations—a critical advance for deep proteome coverage. Additionally, Nagy pioneered a high-throughput mass spectrometry-based assay for identifying the biochemical functions of putative glycosidases (2017, 8 citations). This method overcomes the limitations of traditional bulky fluorescent or UV-tagged substrates, offering a label-free approach that allows for broader and more physiologically relevant substrate characterization. Through these innovations, Nagy is pushing the boundaries of how we separate and identify biomolecules, with significant implications for proteomics, glycomics, and functional enzyme discovery.
Research Focus
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Top Papers
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