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Agilent BioHPLC Column Selection Guide

Guides | 2015 | Agilent TechnologiesInstrumentation
Consumables, LC columns
Industries
Manufacturer
Agilent Technologies

Summary

Significance of Topic


Effective selection of liquid chromatography columns and methods is critical for accurate, reproducible analysis of biomolecules such as proteins, peptides, oligonucleotides and glycans. Proper column choice and method development guide workflows from discovery through QA/QC, enabling faster decision making and regulatory compliance while addressing challenges of complex biopharmaceutical characterization.

Objectives and Overview


This guide presents a comprehensive portfolio of Agilent BioHPLC columns and sample-prep products, along with best-practice method development strategies. It covers selection guidelines for reversed-phase, ion-exchange, size-exclusion and hydrophilic interaction chromatography, provides tips on solvent, pH and temperature optimization, and introduces sample preparation kits and instrumentation solutions for a full biomolecule workflow.

Methodology and Instrumentation


Column selection is structured by analyte class, separation mechanism and molecular weight:
  • Reversed-phase (RP) for primary structure analysis of intact proteins, antibody fragments and peptide maps.
  • Ion-exchange (IEX) for charge variant and isoform analysis of monoclonal antibodies and proteins.
  • Size-exclusion (SEC) for quantitation of monomers, dimers and aggregates.
  • Hydrophilic interaction (HILIC) for glycan mapping and glycopeptide analysis.
  • Affinity for titer determination and depletion of high-abundance proteins in biological fluids.

Method optimization addresses mobile phase composition, organic modifiers, buffer pH and ionic strength, temperature, gradient design and sample solubilization to maximize resolution and recovery.

Used Instrumentation


Key platforms include:
  • Agilent 1260 Infinity Bio-inert Quaternary LC for metal-free, UHPLC-capable biocompatible separations.
  • Agilent 1290 Infinity Binary and Quaternary LC systems for highest speed, resolution and flexibility.
  • Agilent 1260 Infinity Multi-detector Bio-SEC solution with UV, light scattering and refractive index detectors.
  • Agilent 6100/6200 Series Accurate-Mass LC/MS for peptide, glycan and oligonucleotide identification.

Main Findings and Discussion


Agilent’s Bio SEC-3 and SEC-5 columns deliver fast, high-resolution aggregate analysis with a choice of pore sizes from 100 Å to 2000 Å. AdvanceBio RP-mAb superficially porous phases ensure rapid, high-definition monoclonal antibody variant separation in under 2 minutes. AdvanceBio Peptide Mapping columns (2.7 µm) provide robust, reproducible peptide maps and glycan mapping columns (1.8 µm and 2.7 µm) enable glycan profiling in under 10 minutes. PLRP-S, PL-SAX and PL-SCX polymer phases extend pH stability and improve oligonucleotide and peptide separations. Bio-Monolith affinity columns and MARS kits streamline titer determination and high-abundance protein depletion.

Benefits and Practical Applications


Core advantages:
  • Accelerated workflows: UHPLC speeds, rapid column regeneration, method transfer tools.
  • Enhanced data quality: improved resolution of charge variants, aggregates and glycans.
  • Comprehensive workflows: from cell culture supernatant titer to glycan and peptide mapping.
  • Scalable solutions: analytical to preparative columns and custom media.
  • Integrated sample prep: kits for n-glycan release, antibody binding and depletion.

Future Trends and Possibilities


Ongoing innovations include integration of AI-driven method development, advanced superficially porous materials for even faster separations, expanded UHPLC/MS workflows for intact mass and glycopeptide characterization, and high-throughput automated sample preparation for large-scale biosimilar and biobetter screening.

Conclusion


The Agilent BioHPLC column portfolio and workflow solutions empower laboratories to address the analytical challenges of modern biopharmaceutical research and production. By combining high-performance columns, robust sample preparation kits and advanced instrumentation, analysts can achieve rapid, reproducible and in-depth characterization of biomolecules, improving throughput and reliability across discovery, development and QA/QC stages.

References


No specific literature references were provided in the source document.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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