Daniele Fabris

Chemistry University of Maryland, Baltimore County 
Analytical Chemistry
"Daniele Fabris"
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Myers CA, D'Esposito RJ, Fabris D, et al. (2019) CoSIMS: An Optimized Trajectory Based Collision Simulator for Ion Mobility Spectrometry. The Journal of Physical Chemistry. B
Wang R, Ranganathan SV, Haruehanroengra P, et al. (2018) Construction and Structure Studies of DNA-bipyridine Complexes as Versatile Scaffolds for Site-Specific Incorporation of Metal Ions into DNA. Journal of Biomolecular Structure & Dynamics. 1-56
Garabedian A, Butcher D, Lippens JL, et al. (2016) Structures of the kinetically trapped i-motif DNA intermediates. Physical Chemistry Chemical Physics : Pccp. 18: 26691-26702
Lippens JL, Ranganathan SV, D'Esposito RJ, et al. (2016) Modular calibrant sets for the structural analysis of nucleic acids by ion mobility spectrometry mass spectrometry. The Analyst
Rose RE, Pazos MA, Curcio MJ, et al. (2016) Global Epitranscriptomics Profiling of RNA Post-Transcriptional Modifications as an Effective Tool for Investigating the Epitranscriptomics of Stress Response. Molecular & Cellular Proteomics : McP. 15: 932-44
Lippens JL, Mangrum JB, McIntyre W, et al. (2016) A simple heated-capillary modification improves the analysis of non-covalent complexes by Z-spray electrospray ionization Rapid Communications in Mass Spectrometry. 30: 773-783
Rose RE, Quinn R, Sayre JL, et al. (2015) Profiling ribonucleotide modifications at full-transcriptome level: a step toward MS-based epitranscriptomics. Rna (New York, N.Y.). 21: 1361-74
Asare-Okai PN, Agustin E, Fabris D, et al. (2014) Site-specific fluorescence labelling of RNA using bio-orthogonal reaction of trans-cyclooctene and tetrazine. Chemical Communications (Cambridge, England). 50: 7844-7
Scalabrin M, Siu Y, Asare-Okai PN, et al. (2014) Structure-specific ribonucleases for MS-based elucidation of higher-order RNA structure. Journal of the American Society For Mass Spectrometry. 25: 1136-45
Stephenson W, Asare-Okai PN, Chen AA, et al. (2013) The essential role of stacking adenines in a two-base-pair RNA kissing complex. Journal of the American Chemical Society. 135: 5602-11
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