Area of research
Environmental Chemistry · Geophysics
Research interest
Research focused on Proteomics and Urine, with related work in Proteome, Quantitative proteomics, Computational biology. Notable publications include 'Genomic responses in mouse models poorly mimic human inflammatory diseases', 'Tandem mass spectrometry identifies many mouse brain O -GlcNAcylated proteins including EGF domain-specific O -GlcNAc transferase targets', and 'Sources of Technical Variability in Quantitative LC–MS Proteomics: Human Brain Tissue Sample Analysis'.
Mining the human urine proteome for monitoring renal transplant injury
Perturbations in the Urinary Exosome in Transplant Rejection
Compensatory Islet Response to Insulin Resistance Revealed by Quantitative Proteomics
Genomic responses in mouse models poorly mimic human inflammatory diseases
Sources of Technical Variability in Quantitative LC–MS Proteomics: Human Brain Tissue Sample Analysis
A Highly Sensitive Targeted Mass Spectrometric Assay for Quantification of AGR2 Protein in Human Urine and Serum
Determination of Burn Patient Outcome by Large-Scale Quantitative Discovery Proteomics
Phosphate-Containing Polyethylene Glycol Polymers Prevent Lethal Sepsis by Multidrug-Resistant Pathogens
Tandem mass spectrometry identifies many mouse brain <i>O</i> -GlcNAcylated proteins including EGF domain-specific <i>O</i> -GlcNAc transferase targets
Label-Free Quantitative LC–MS Proteomics of Alzheimer’s Disease and Normally Aged Human Brains