High-Performance Anion-Exchange Chromatography with Pulsed Amperometric Detection (HPAE-PAD) - Carbohydrates Analysis Application Notebook
Guides | 2014 | Thermo Fisher ScientificInstrumentation
Strong need for sensitive, selective, and high-throughput carbohydrate analysis in fields such as glycoprotein characterization, quality control in food and beverage, biofuel process monitoring, clinical diagnostics, and glycomics research.
This Application Notebook consolidates the methodology of High-Performance Anion-Exchange Chromatography with Pulsed Amperometric Detection (HPAE-PAD) for direct, derivatization-free carbohydrate analysis. It covers applications in glycobiology, food and beverage, biofuels, and other emerging areas, presenting case studies and resources for successful implementation.
HPAE-PAD represents a powerful and versatile platform for comprehensive carbohydrate analysis across multiple industries. This Application Notebook provides a consolidated reference for implementing robust methods, instrumentation, and resources to achieve reliable results without derivatization.
Ion chromatography
IndustriesFood & Agriculture, Energy & Chemicals , Clinical Research
ManufacturerThermo Fisher Scientific
Summary
Importance of the topic
Strong need for sensitive, selective, and high-throughput carbohydrate analysis in fields such as glycoprotein characterization, quality control in food and beverage, biofuel process monitoring, clinical diagnostics, and glycomics research.
Objectives and overview of the Application Notebook
This Application Notebook consolidates the methodology of High-Performance Anion-Exchange Chromatography with Pulsed Amperometric Detection (HPAE-PAD) for direct, derivatization-free carbohydrate analysis. It covers applications in glycobiology, food and beverage, biofuels, and other emerging areas, presenting case studies and resources for successful implementation.
Methodology and Instrumentation
- Chromatography: Strong anion-exchange columns (CarboPac PA20, PA200, SA10, PA1, MA1) using hydroxide-based eluents generated electrolytically (Reagent-Free IC).
- Detection: Pulsed amperometric detection with four-potential waveform on disposable Au on PTFE working electrodes and Ag/AgCl reference electrodes.
- Systems: Thermo Scientific Dionex ICS-5000+ HPIC and ICS-4000 Capillary HPIC systems with Electrochemical Detector (ED40) and optional CMD 300 Desalter for MS coupling.
- Consumables: AminoTrap and BorateTrap sample pretreatment cartridges and Carbohydrate Removal Cartridge.
Main results and discussion
- Glycobiology: Monosaccharide composition and sialic acid profiling of therapeutic glycoproteins, low-quantity glycosylation analysis, and oligosaccharide profiling with high resolution.
- Food and Beverage: Fast determination of lactose, lactulose, coffee carbohydrates, myo-inositol in nutritionals, and beverage sugar profiling by capillary HPAE-PAD.
- Biofuels: Rapid quantification of monosaccharides and disaccharides in acid-hydrolyzed biomass, hydroxymethylfurfural in honey and feedstock, carbohydrate analysis in wood hydrolysates, and uronic acid determination.
- Other applications: Urine carbohydrate profiling and advanced glycomics solutions including 3-D amperometry for selective waveform integration and HPAE-PAD–MS coupling for unambiguous identification.
Benefits and practical applications
- Direct, underivatized carbohydrate analysis with high sensitivity and selectivity.
- Wide dynamic range, robust reproducibility, and minimal sample preparation.
- Fast throughput and compatibility with online process monitoring.
- Flexible formats from capillary to standard bore columns for diverse application needs.
Future trends and opportunities
- Integration of HPAE-PAD with mass spectrometry for structural confirmation in complex matrices.
- Automation of sample preparation and inline matrix elimination.
- Miniaturization and capillary formats for high-throughput glycomics and metabolomics.
- Development of novel column chemistries and disposable electrode technologies.
- Expanded applications in bioprocess monitoring and clinical diagnostics.
Conclusion
HPAE-PAD represents a powerful and versatile platform for comprehensive carbohydrate analysis across multiple industries. This Application Notebook provides a consolidated reference for implementing robust methods, instrumentation, and resources to achieve reliable results without derivatization.
Used instrumentation
- Thermo Scientific Dionex ICS-5000+ HPIC system with ED40 electrochemical detector.
- Thermo Scientific Dionex ICS-4000 capillary HPIC system with disposable Au on PTFE electrodes.
- Electrolytic eluent generators (EGC III KOH with CR-ATC trap), CMD 300 Desalter for MS coupling.
- Dionex CarboPac columns: PA20, PA200, SA10, PA1, MA1; AminoTrap, BorateTrap cartridges.
References
- Technical Note 20: Analysis of Carbohydrates by HPAE-PAD
- Technical Note 21: Optimal Settings for Pulsed Amperometric Detection of Carbohydrates
- Technical Note 71: Eluent Preparation for HPAE-PAD
- Technical Note 110: HPAE-PAD with Disposable Au on PTFE Working Electrodes
- Technical Note 125: Guidelines for the Use of Dionex AminoTrap Columns
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