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Frontiers in Chemistry|June 4, 2021
Semi-Automated Glycoproteomic Data Analysis of LC-MS Data Using GlycopeptideGraphMS in Process Development of Monoclonal Antibody BiologicsKuin Tian Pang, Shi Jie Tay, Corrine Wan, et al.Analytical Chemistry|June 11, 2019
Combining Glucose Units, <i>m</i>/<i>z</i>, and Collision Cross Section Values: Multiattribute Data for Increased Accuracy in Automated Glycosphingolipid Glycan Identifications and Its Application in Triple Negative Breast CancerKatherine Wongtrakul-Kish, Ian Walsh, Lyn Chiin Sim, et al.Bioinformatics (Oxford, England)|June 14, 2018
GlycoStore: a database of retention properties for glycan analysisSophie Zhao, Ian Walsh, Jodie L Abrahams, et al.Analytical Chemistry|June 25, 2020
Cysteine Aminoethylation Enables the Site-Specific Glycosylation Analysis of Recombinant Human Erythropoietin using TrypsinSteffen Lippold, Alexander Büttner, Matthew S F Choo, et al.Beilstein Journal of Organic Chemistry|September 21, 2020
Clustering and curation of electropherograms: an efficient method for analyzing large cohorts of capillary electrophoresis glycomic profiles for bioprocessing operationsIan Walsh, Matthew S F Choo, Sim Lyn Chiin, et al.Neoplasia (New York, N.Y.)|April 27, 2007
Plant-derived MINA-05 inhibits human prostate cancer proliferation in vitro and lymph node spread in vivoKate Vandyke, Melanie Y White, Terry Nguyen-Khuong, et al.Analytical Chemistry|November 9, 2020
Utility of Ion-Mobility Spectrometry for Deducing Branching of Multiply Charged Glycans and Glycopeptides in a High-Throughput Positive ion LC-FLR-IMS-MS WorkflowEdward G Pallister, Matthew S F Choo, Ian Walsh, et al.Proteomics|March 19, 2009
Alterations to the protein profile of bladder carcinoma cell lines induced by plant extract MINA-05 in vitroTerry Nguyen-Khuong, Melanie Y White, Tzong-Tyng Hung, et al.Scientific Reports|November 16, 2019
A human expression system based on HEK293 for the stable production of recombinant erythropoietinChristine Lin Chin, Justin Bryan Goh, Harini Srinivasan, et al.Biochemistry|October 4, 2019
Exploiting the Disialyl Galactose Activity of α2,6-Sialyltransferase from <i>Photobacterium damselae</i> To Generate a Highly Sialylated Recombinant α-1-AntitrypsinEdward G Pallister, Matthew S F Choo, Jien-Nee Tai, et al.Pageof 4