Rapid Screening of Sialic Acids in Glycoproteins by HPAE-PAD
Applications | 2016 | Thermo Fisher ScientificInstrumentation
Glycoprotein sialylation significantly influences stability, bioavailability, metabolism and immunogenicity of therapeutic proteins. Monitoring N-acetylneuraminic acid (Neu5Ac) and N-glycolylneuraminic acid (Neu5Gc) is essential due to potential immunogenic response against nonhuman Neu5Gc.
This work develops a rapid, direct method for quantification of Neu5Ac and Neu5Gc in five representative glycoproteins. Acid hydrolysis releases sialic acids followed by high performance anion exchange chromatography with pulsed amperometric detection using a CarboPac PA20 Fast Sialic Acid column. The study aims to deliver high throughput analysis without sample derivatization.
Acid hydrolysis: glycoproteins hydrolyzed in 2 M acetic acid at 80 °C for 3 h and diluted 1 000-fold. Chromatography: Dionex ICS-3000 or ICS-5000 system with single or dual pump, DC detector, autosampler, pulsed amperometric detector with disposable gold on PTFE electrode and Ag/AgCl reference. Column: CarboPac PA20 Fast Sialic Acid, 3×30 mm. Eluents: 100 mM NaOH (A) and 1 M sodium acetate in 100 mM NaOH (B). Gradient: 70–300 mM acetate (0–2.5 min), hold 300 mM (2.5–2.9 min), return to 70 mM (2.9–3.0 min) with 1.5 min equilibration. Flow 0.5 mL/min, temperature 30 °C, injection 4.5 µL full loop. Calibration standards prepared from defined Neu5Ac and Neu5Gc stock solutions.
Neu5Ac and Neu5Gc separate in under 3 min with total run time of 4.5 min. Calibration is linear (r2>0.999), LODs of 0.11 pmol (Neu5Ac) and 0.058 pmol (Neu5Gc), LOQs of 0.34 pmol and 0.18 pmol. Retention time RSD <1%, area precision ~1–1.4% for standards. Analysis of five glycoproteins (fetuin, bovine and human transferrin, sheep and human α1-acid glycoprotein) showed consistent sialic acid content in agreement with literature. Intraday and interday precisions ranged from ~2.4–17% depending on sample and analyte. Recovery tests yielded 81–96% for Neu5Ac and 82–106% for Neu5Gc.
The direct HPAE-PAD method eliminates derivatization, reduces analysis time and reagent consumption, and allows high sample throughput. It provides sensitive and precise quantification suitable for process development, quality control and biotherapeutic characterization.
Further optimization of hydrolysis conditions for complete release and minimal degradation, application to complex biological matrices, integration with mass spectrometry for structural analysis, and automation for increased throughput and routine monitoring represent future directions.
A rapid, robust and high throughput HPAE-PAD method for direct quantification of Neu5Ac and Neu5Gc in glycoproteins has been established. Using CarboPac PA20 Fast Sialic Acid column and pulsed amperometry provides precise, sensitive and efficient analysis without derivatization, supporting biopharmaceutical research and quality control needs.
Ion chromatography
IndustriesProteomics
ManufacturerThermo Fisher Scientific
Summary
Importance of the topic
Glycoprotein sialylation significantly influences stability, bioavailability, metabolism and immunogenicity of therapeutic proteins. Monitoring N-acetylneuraminic acid (Neu5Ac) and N-glycolylneuraminic acid (Neu5Gc) is essential due to potential immunogenic response against nonhuman Neu5Gc.
Objectives and study overview
This work develops a rapid, direct method for quantification of Neu5Ac and Neu5Gc in five representative glycoproteins. Acid hydrolysis releases sialic acids followed by high performance anion exchange chromatography with pulsed amperometric detection using a CarboPac PA20 Fast Sialic Acid column. The study aims to deliver high throughput analysis without sample derivatization.
Methodology and instrumentation
Acid hydrolysis: glycoproteins hydrolyzed in 2 M acetic acid at 80 °C for 3 h and diluted 1 000-fold. Chromatography: Dionex ICS-3000 or ICS-5000 system with single or dual pump, DC detector, autosampler, pulsed amperometric detector with disposable gold on PTFE electrode and Ag/AgCl reference. Column: CarboPac PA20 Fast Sialic Acid, 3×30 mm. Eluents: 100 mM NaOH (A) and 1 M sodium acetate in 100 mM NaOH (B). Gradient: 70–300 mM acetate (0–2.5 min), hold 300 mM (2.5–2.9 min), return to 70 mM (2.9–3.0 min) with 1.5 min equilibration. Flow 0.5 mL/min, temperature 30 °C, injection 4.5 µL full loop. Calibration standards prepared from defined Neu5Ac and Neu5Gc stock solutions.
Main results and discussion
Neu5Ac and Neu5Gc separate in under 3 min with total run time of 4.5 min. Calibration is linear (r2>0.999), LODs of 0.11 pmol (Neu5Ac) and 0.058 pmol (Neu5Gc), LOQs of 0.34 pmol and 0.18 pmol. Retention time RSD <1%, area precision ~1–1.4% for standards. Analysis of five glycoproteins (fetuin, bovine and human transferrin, sheep and human α1-acid glycoprotein) showed consistent sialic acid content in agreement with literature. Intraday and interday precisions ranged from ~2.4–17% depending on sample and analyte. Recovery tests yielded 81–96% for Neu5Ac and 82–106% for Neu5Gc.
Benefits and practical applications
The direct HPAE-PAD method eliminates derivatization, reduces analysis time and reagent consumption, and allows high sample throughput. It provides sensitive and precise quantification suitable for process development, quality control and biotherapeutic characterization.
Future trends and opportunities
Further optimization of hydrolysis conditions for complete release and minimal degradation, application to complex biological matrices, integration with mass spectrometry for structural analysis, and automation for increased throughput and routine monitoring represent future directions.
Conclusion
A rapid, robust and high throughput HPAE-PAD method for direct quantification of Neu5Ac and Neu5Gc in glycoproteins has been established. Using CarboPac PA20 Fast Sialic Acid column and pulsed amperometry provides precise, sensitive and efficient analysis without derivatization, supporting biopharmaceutical research and quality control needs.
References
- Byrne B Donohoe GG OKennedy R Sialic Acids Carbohydrate Moieties that Influence Drug Discovery Today 2007 12 319 326
- Jenkins N Curling EM Glycosylation of Recombinant Proteins Enzyme Microb Technol 1994 12 354 364
- Kaneko Y Nimmerjahn F Ravetch JV Anti-Inflammatory Activity of Immunoglobulin G Science 2006 313 670 673
- Du J Meledeo MA Wang Z Khanna HS Paruchuri VDP Yarema JK Metabolic Glycoengineering Glycobiology 2009 19 1382 1401
- Klein A Diaz S Ferreira I Lamblin G Roussel R Manzi AE New Sialic Acids from Biological Sources Glycobiology 1997 7 421 432
- Angata T Varki A Chemical Diversity in the Sialic Acids Chem Rev 2004 102 439 469
- Varki A Glycan-Based Interactions Nature 2007 446 1023 1029
- Padler-Karavani V Yu H Cao H Chokhawala H Karp F Chen X Varki A Diversity in Specificity Glycobiology 2008 18 818 830
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
Similar PDF
Direct Determination of Sialic Acids in Glycoprotein Hydrolyzates by HPAE-PAD
2016|Thermo Fisher Scientific|Applications
Application Update 180 Direct Determination of Sialic Acids in Glycoprotein Hydrolyzates by HPAE-PAD INTRODUCTION Sialic acids are critical in determining glycoprotein bioavailability, function, stability, and metabolism.1 Although over 50 natural sialic acids have been identified,2 two forms are commonly determined…
Key words
sialic, sialicglycoprotein, glycoproteinhydrolysis, hydrolysishydrolyzates, hydrolyzatesoff, offpmol, pmolacid, acidfetuin, fetuinacids, acidsprotein, proteinneuraminidase, neuraminidasehpae, hpaepad, padglycoproteins, glycoproteinsanalyte
ICSialic Acid Determination in Glycoproteins: Comparison of Two Liquid Chromatography Methods
2011|Thermo Fisher Scientific|Posters
Sialic Acid Determination in Glycoproteins: Comparison of Two Liquid Chromatography Methods Deanne Hurum and Jeffrey Rohrer, Thermo Fisher Scientific, Sunnyvale, CA, USA Introduction Experimental Sialic acids are critical in determining glycoprotein bioavailability, function, stability, and eventual catabolism. Although over 50…
Key words
hpae, hpaepad, padfld, fldmol, molpmol, pmolsialic, sialicuhplc, uhplcuhplcfld, uhplcfldfetuin, fetuinanalyte, analytehpaepad, hpaepadprecision, precisionrsd, rsddmb, dmbprotein
Determination of glycoprotein sialic acid composition using HPAE-PAD in dual eluent generation cartridge mode
2021|Thermo Fisher Scientific|Applications
APPLICATION NOTE 74121 Determination of glycoprotein sialic acid composition using HPAE-PAD in dual eluent generation cartridge mode Authors: Jingli Hu and Jeffrey Rohrer Thermo Fisher Scientific, Sunnyvale, CA Keywords: Dionex CarboPac PA20-1 mm column, Dionex ICS-6000 HPIC system, electrochemical detection,…
Key words
sialic, sialickmsa, kmsaeluent, eluentegc, egcacid, acidprotein, proteinhydrolysis, hydrolysisglycoprotein, glycoproteinkoh, kohhpae, hpaeacids, acidsamount, amountoff, offsodium, sodiumpad
Monosaccharide and Sialic Acid Determinations in Biosimilars Using HPAE-PAD
2014|Thermo Fisher Scientific|Applications
Table of Contents Introduction Applications Innovative Analytical Technologies Monosaccharide and Sialic Acid Determinations in Biosimilars Using HPAE-PAD Introduction Table of Contents Introduction Applications Innovative Analytical Technologies A large number of innovator biotherapeutics are currently losing patent protection, resulting…
Key words
hpae, hpaepad, padinnovative, innovativesialic, sialiccontents, contentstechnologies, technologiestable, tableglycoprotein, glycoproteinapplications, applicationsdionex, dionexmonsaccharide, monsaccharideanion, anionglycosylation, glycosylationanalytical, analyticalcarbopac