Analysis of dextran using an AZURA® SEC System

Applications | 2025 | KNAUERInstrumentation
GPC/SEC, Consumables, LC columns
Industries
Manufacturer
KNAUER

Summary

Significance of the Topic


Dextran is a high-molecular-weight polysaccharide widely applied in food, pharmaceutical and cosmetic industries. Its functional properties, including viscosity, solubility and drug-carrier capacity, depend critically on molecular weight distribution. Accurate characterization of dextran’s molecular profile is therefore essential for quality control and research developments in various sectors.

Objectives and Study Overview


This study demonstrates the determination of dextran molecular weight distribution using the KNAUER AZURA® SEC system. By coupling AppliChrom® SuperOH-P 300 and 350 columns in series, the method aims to cover a broad range from 1 000 to 1 000 000 Da while maintaining high resolution and reliable identification of dextran in unknown matrices.

Methodology and Instrumentation


An isocratic SEC method with water/PBS buffer (pH 7.1) at a flow rate of 1 ml/min and 25 °C was established. Key parameters:
  • Injection volume: up to 50 µl
  • Detection: Refractive index detector (RID) at 10 Hz data rate, 0.1 s time constant
  • Run time: 30 min
Critical instrumentation elements:
  • Pump: AZURA® P 6.1L LPG with 10 ml stainless steel pump head
  • Autosampler: AZURA® AS 6.1L (analytical HPLC)
  • Detector: AZURA® RID 2.1L (refractive index)
  • Thermostat: AZURA® CT 2.1
  • Eluent tray: AZURA® E 2.1L
  • Columns: AppliChrom® SuperOH-P 300 (7 µm, 300 × 8 mm, 1 000–300 000 Da) and SuperOH-P 350 (10 µm, 300 × 8 mm, 2 500–1 000 000 Da) in series
  • Software: ClarityChrom® 9.1.0 with SEC/GPC extension

Main Results and Discussion


The SEC analysis of dextran produced a clear peak at 10.47 min, confirming the method’s ability to identify and resolve dextran across the targeted molecular weight range. The series connection of SuperOH-P 300 and 350 columns provided high plate counts and excellent resolution, enabling precise molecular weight profiling in a single 30 min run. This performance supports reliable characterization in complex or unknown sample matrices.

Benefits and Practical Applications


  • Comprehensive molecular weight coverage from 1 000 to 1 000 000 Da
  • High resolution and reproducibility for routine quality control
  • Applicability to food, pharmaceutical and cosmetic product development
  • Simple isocratic conditions with minimal method development

Future Trends and Opportunities


Advancements in SEC are anticipated to focus on multi-detector configurations, reduced solvent consumption and higher throughput formats. Emerging developments include micro-SEC systems for nanoscale analysis, integration with mass spectrometry for detailed structural insights and automated workflows for real-time quality assurance.

Conclusion


The KNAUER AZURA® SEC system, combined with AppliChrom® SuperOH-P columns, offers a robust, high-resolution platform for dextran molecular weight analysis. Its broad coverage and reliable performance make it an effective tool for research and industrial quality control.

References


  1. Díaz-Montes, E. (2021). Dextran: Sources, Structures, and Properties. Polysaccharides, 2(3), 554–565.
  2. Aman, A., Siddiqui, N. N., & Qader, S. A. U. (2011). Characterization and potential applications of high molecular weight dextran produced by Leuconostoc mesenteroides AA1. Carbohydrate Polymers, 87(1), 910–915.
  3. Kim, C. J., Hamielec, A. E., & Benedek, A. (1982). Characterization of Dextrans by Size Exclusion Chromatography Using DRI/LALLSP Detector System. Journal Of Liquid Chromatography, 5(3), 425–441.
  4. Huang, G., & Huang, H. (2018). Application of Dextran As Nanoscale Drug Carriers. Nanomedicine, 13(24), 3149–3158.
  5. De Belder, A. N. (1993). Dextran. In Elsevier eBooks (pp. 399–425).

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

Downloadable PDF for viewing
 

Similar PDF

Toggle
Fast protein analysis of mucins using an AZURA® SEC System
Science with Passion J. Wesolowski1, J.L. Dauwe2, C. Dauwe2, J. Kramer1, K. Folmert1, G. Greco1; [email protected] 1KNAUER Wissenschaftliche Geräte GmbH, Hegauer Weg 38, 14163 Berlin; www.knauer.net 2 AppliChrom GmbH®, Germendorfer Allee 20, 16515 Oranienburg bei Foto: KI-generiert Fast protein analysis…
Key words
mucins, mucinssec, secazura, azuravivosep, vivosepapplichrom, applichrommucin, mucinsubmaxillary, submaxillarymucous, mucousmucus, mucusknauer, knauerprotein, proteingastric, gastricpassion, passionlinked, linkedporcine
SEC for fingerprint analysis of gummy candies
Science with Passion SEC for fingerprint analysis of gummy candies – ensuring product quality and process control J. Wesolowski, J. Kramer, K. Folmert, U. Krop; [email protected] KNAUER Wissenschaftliche Geräte GmbH, Hegauer Weg 38, 14163 Berlin; www.knauer.net SUMMARY Size Exclusion Chromatography…
Key words
candies, candiesgummy, gummygelatin, gelatinsec, secgelling, gellingpassion, passionfingerprint, fingerprintproduct, productpectin, pectinquality, qualityprocess, processfingerprints, fingerprintsensuring, ensuringsunflower, sunflowersuperoh
Optimizing molecular weight determination: A comprehensive guide to SEC/GPC
Science with Passion Optimizing molecular weight determination: A comprehensive guide to SEC/GPC J. Wesolowski, J. Kramer, K. Folmert, G. Greco; [email protected] KNAUER Wissenschaftliche Geräte GmbH, Hegauer Weg 38, 14163 Berlin; www.knauer.net SUMMARY This application note provides a comprehensive guide to…
Key words
gpc, gpcmolar, molarpullulan, pullulansec, seccalibration, calibrationthf, thfseparation, separationmolecular, molecularsizes, sizespore, poreµriu, µriulog, logrange, rangepassion, passioncap
Characterization of fructans in fermentation products with GPC/SEC
Science Together Characterization of fructans in fermentation products with GPC/SEC Johannes Menke, Yannick Krauke, Kate Monks; [email protected] KNAUER Wissenschaftliche Geräte GmbH, Hegauer Weg 38, 14163 Berlin; www.knauer.net. Stanislav Parsin, Technische Universität Hamburg SUMMARY Recent efforts to improve the efficiency of…
Key words
fructans, fructansknauer, knaueraboa, aboaapplichrom, applichromsec, secscaleup, scaleupfermentation, fermentationgpc, gpccharacterization, characterizationsoftware, softwareconverter, converterpump, pumpscience, sciencetogether, togetherbiorefineries
Other projects
GCMS
ICPMS
Follow us
FacebookX (Twitter)LinkedInYouTube
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