LCMS
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike

Evaluating the Performance of the ACQUITY Arc Bio UHPLC System for the Size-Exclusion Chromatography Analysis of a Monoclonal Antibody

Applications | 2018 | WatersInstrumentation
GPC/SEC
Industries
Pharma & Biopharma
Manufacturer
Waters

Summary

Significance of the Topic


Size-exclusion chromatography is essential for evaluating protein therapeutics under native conditions. Monitoring high molecular weight aggregates and low molecular weight fragments of monoclonal antibodies ensures product safety and stability. Reliable separation and quantification support regulatory compliance and patient safety.

Objectives and Study Overview


This study compares three chromatographic systems for analyzing trastuzumab. It focuses on extra column dispersion and its impact on the resolution of aggregates and fragments. Systems include an HPLC platform, a biocompatible UHPLC system, and a high performance UHPLC system.

Methodology and Instrumentation


  • Systems : Alliance HPLC, ACQUITY Arc Bio UHPLC, ACQUITY UPLC H-Class Bio
  • Detectors : UV/Vis, tunable UV (TUV)
  • Columns : XBridge Protein BEH SEC 200Å 3.5µm, ACQUITY UPLC Protein BEH SEC 200Å 1.7µm
  • Software : Empower 3 for data acquisition and analysis
  • Samples : Trastuzumab formulation, BEH200 protein standard mixture
  • Mobile phases : Phosphate buffers with high salt concentration and water/acetonitrile mixtures

Main Results and Discussion


Extra column dispersion was lowest in the UPLC H-Class Bio system, intermediate in the Arc Bio system, and highest in the HPLC system. Lower dispersion translated into sharper peaks, higher plate counts, and better resolution between antibody monomer, aggregates, and fragments.
  • High molecular weight aggregates were well resolved in all configurations.
  • Low molecular weight fragments could only be quantified reliably with the 1.7µm UHPLC column or two 3.5µm columns in series.
  • Tandem HPLC columns improved resolution but doubled analysis time and sample consumption.

Benefits and Practical Applications


  • Enhanced aggregate and fragment detection supports quality control in biopharmaceutical production.
  • Biocompatible UHPLC components resist corrosion in high salt buffers.
  • System selection can be tailored to throughput, sensitivity, and resource constraints.

Future Trends and Possibilities


Advances in column materials and system design are expected to further reduce dispersion and analysis time. Integration with automated sample handling and real-time data processing will improve throughput. Emerging detector technologies may enhance sensitivity for trace-level impurities.

Conclusion


The biocompatible UHPLC system offers a balance between throughput and resolution for monoclonal antibody analysis. Minimizing extra column dispersion is critical for accurate quantification of aggregates and fragments. System and column choice must align with analytical goals and operational parameters.

References


  1. Hong P Koza S Bouvier ES A review size exclusion chromatography for the analysis of protein biotherapeutics and their aggregates Journal of Liquid Chromatography and Related Technologies 2012 35 20 2923 2950
  2. Bouvier ES Koza SM Advances in size exclusion separations of proteins and polymers by UHPLC TrAC Trends in Analytical Chemistry 2014 63 85 94
  3. Neue UD HPLC columns Theory Technology and Practice 1997

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

Downloadable PDF for viewing
 

Similar PDF

Toggle
SIZE-EXCLUSION CHROMATOGRAPHY (SEC) OF PEPTIDES, PROTEINS, AND AAVs
[ APPLICATION NOTEBOOK ] SIZE-EXCLUSION CHROMATOGRAPHY (SEC) OF PEPTIDES, PROTEINS, AND AAVs [ SIZE-EXCLUSION CHROMATOGRAPHY ] [ SIZE-EXCLUSION CHROMATOGRAPHY ] Introduction Gel-permeation chromatography (GPC), size-exclusion chromatography (SEC), and gel-filtration chromatography (GFC) are commonly used terms to describe a liquid chromatographic…
Key words
sec, secexclusion, exclusionsize, sizeuplc, uplcacquity, acquitychromatography, chromatographyprotein, proteinaggregates, aggregateshplc, hplcdispersion, dispersioncolumn, columnmonomer, monomerigg, iggantibody, antibodybio
Impact of LC System Dispersion on the Size-Exclusion Chromatography Analysis of Monoclonal IgG Antibody Aggregates and Fragments:  Selecting the Optimal Column for Your Method
[ APPLICATION NOTE ] Impact of LC System Dispersion on the Size-Exclusion Chromatography Analysis of Monoclonal IgG Antibody Aggregates and Fragments: Selecting the Optimal Column for Your Method Stephan M. Koza, Corey E. Reed, and Weibin Chen Waters Corporation, Milford,…
Key words
hmws, hmwsdispersion, dispersionigg, iggaggregates, aggregatesexclusion, exclusionantibody, antibodyacquity, acquitybio, bioimpact, impactminutes, minutessize, sizemonomer, monomersystem, systemmonoclonal, monoclonaluplc
Successful Transfer of Size-Exclusion Separations Between HPLC and UPLC
Successful Transfer of Size-Exclusion Separations Between HPLC and UPLC Stephan Koza, Susan Serpa, Edouard Bouvier, and Kenneth J. Fountain Waters Corporation, Milford, MA, USA A P P L I C AT I O N B E N E F I…
Key words
uplc, uplchplc, hplcalliance, alliancescaled, scaledacquity, acquitybetween, betweentransfer, transferexclusion, exclusionprotein, proteinsuccessful, successfulseparations, separationssec, secfuplc, fuplcvhplc, vhplccolumns
High Resolution and High Throughput Size-Exclusion Chromatography Separations of IgG Antibody Aggregates and Fragments on UHPLC  and HPLC Systems with 2.5 μm BEH Particles
[ APPLICATION NOTE ] High Resolution and High Throughput Size-Exclusion Chromatography Separations of IgG Antibody Aggregates and Fragments on UHPLC and HPLC Systems with 2.5 µm BEH Particles Stephan M. Koza and Weibin Chen Waters Corporation, Milford, MA, USA APPLICATION…
Key words
vhmws, vhmwshmws, hmwsigg, iggaggregates, aggregatessize, sizefragments, fragmentsexclusion, exclusionmonomer, monomerseparations, separationssec, secantibody, antibodydispersion, dispersionthroughput, throughputhigh, highefficiencies
Other projects
GCMS
ICPMS
Follow us
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike