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Methods in Molecular Biology (Clifton, N.J.)|March 10, 2015
Affinity chromatography: a historical perspectiveDavid S Hage, Ryan MatsudaJournal of Separation Science|September 15, 2006
Affinity monolith chromatographyRangan Mallik, David S HageJournal of Chromatography. A|November 20, 2016
Glycoform analysis of alpha1-acid glycoprotein by capillary electrophoresisChenhua Zhang, David S HageJournal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences|November 25, 2021
Evaluation of microcolumn stability in ultrafast affinity extraction for binding and rate studiesSazia Iftekhar, David S HageJournal of Chromatography. A|August 30, 2011
Characterization of interaction kinetics between chiral solutes and human serum albumin by using high-performance affinity chromatography and peak profilingZenghan Tong, David S HageJournal of Pharmaceutical and Biomedical Analysis|January 18, 2017
Analysis of stereoselective drug interactions with serum proteins by high-performance affinity chromatography: A historical perspectiveZhao Li, David S HageJournal of Separation Science|August 10, 2006
Evaluation of a hydrazide-linked alpha1-acid glycoprotein chiral stationary phase: separation of R- and S-propranololHai Xuan, David S HageAnalytica Chimica Acta|July 31, 2019
Development and evaluation of silica-based lectin microcolumns for glycoform analysis of alpha1-acid glycoproteinChenhua Zhang, David S HageNature Biotechnology|October 27, 2004
Quantitative analysis of allosteric drug-protein binding by biointeraction chromatographyJianzhong Chen, David S HageAnalytical Biochemistry|October 18, 2005
Immobilization of alpha(1)-acid glycoprotein for chromatographic studies of drug-protein bindingHai Xuan, David S HagePageof 19