Capture of histidine-tagged molecules using Biacore His Capture Kit |
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Aldehyde coupling of ligand to Biacore sensor chips |
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Amine coupling of ligand to Biacore sensor chips |
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Biotinylation for streptavidin/neutravidin-biotin capture on Biacore sensor chips |
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Buffer and sample preparation for Biacore direct binding assay in 2% DMSO |
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Buffer and sample preparation for Biacore direct binding assay in 5% DMSO |
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Capture of histidine-tagged molecules to Biacore Sensor Chip NTA |
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Calibration-free concentration analysis (CFCA) in Biacore T200 using Getting Started reagents: antigen as ligand |
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Calibration-free concentration analysis (CFCA) in Biacore T200 using Getting Started reagents: antibody as ligand |
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Calibration-free concentration analyses (CFCA) using the anti-β2-microglobulin/ β2-microglobulin model system in Biacore™ X100 |
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Ligand thiol coupling to Biacore sensor chips |
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Inject and elute injection command using Biacore™ 1S+ and Biacore 1K+ SPR systems |
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Maleimide coupling to Biacore sensor chips using EMCH or BMPH |
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Maleimide coupling to Biacore sensor chips using sulfo-GMBS |
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Screening and analysis of fragments using Biacore systems |
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Preparation of 4-point solvent correction and samples for binding assay in 2% DMSO |
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Preparation of 4-point solvent correction and samples for binding assay in 5% DMSO |
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Surface thiol coupling of ligand to Biacore sensor chips |
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Two-site steady-state binding model in Biacore T200 |
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Overview of kinetic analysis using Biacore systems |
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Working at low ligand attachment levels in Biacore T200 |
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Preparation of Biacore immobilization buffers of different pH |
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Preparation of Biacore regeneration buffers of different pH |
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Steady-state affinity analysis using Biacore systems |
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GFP VHH capture surface for Biacore assays |
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Working with liposomes and membrane proteins in Biacore™ systems |
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