Analysis of Glucosylceramides and Steryl glucosides
Applications | 2024 | ShimadzuInstrumentation
The analysis of glycosphingolipids such as glucosylceramides and steryl glucosides is essential in lipidomics, nutritional science and pharmaceutical research. These compounds influence cell membrane structure, signaling pathways and food quality. Rapid and accurate quantitation supports studies of biological function, quality control and regulatory compliance.
This application note describes the development of a supercritical fluid chromatography method for baseline separation and detection of six target lipids. The aim is to achieve fast, reproducible analysis of glucosylceramide homologues and steryl glucosides using the Shim-pack UC-PolyBT column.
Mobile phases:
The optimized method resolves five glucosylceramide species (C16, C18, C20, C22, C24) and a steryl glucoside within a 12-minute run time. Chromatographic peaks exhibit sharp shape and consistent retention times, demonstrating the method’s robustness across lipid variants. ELSD detection provides reliable quantification despite structural differences.
This SFC-ELSD approach offers:
Advances in SFC technology and detectors will enable enhanced lipidomics workflows. Future directions include integration with mass spectrometry for structural analysis, microfluidic platforms for higher throughput, and expanded lipid libraries for comprehensive profiling.
The described SFC method using Shim-pack UC-PolyBT and ELSD detection delivers an efficient and eco-friendly solution for glucosylceramide and steryl glucoside analysis. It meets the demands of research, quality control and industrial applications.
Shimadzu Corporation. Application note ERAS-1000-0542: Analysis of Glucosylceramides and Steryl Glucosides by SFC. First Edition, February 2024.
SFC, Consumables, LC columns
IndustriesLipidomics
ManufacturerShimadzu
Summary
Significance of the Topic
The analysis of glycosphingolipids such as glucosylceramides and steryl glucosides is essential in lipidomics, nutritional science and pharmaceutical research. These compounds influence cell membrane structure, signaling pathways and food quality. Rapid and accurate quantitation supports studies of biological function, quality control and regulatory compliance.
Objectives and Study Overview
This application note describes the development of a supercritical fluid chromatography method for baseline separation and detection of six target lipids. The aim is to achieve fast, reproducible analysis of glucosylceramide homologues and steryl glucosides using the Shim-pack UC-PolyBT column.
Used Instrumentation
- Nexera UC SFC system (Shimadzu)
- Shim-pack UC-PolyBT column (250 mm × 4.6 mm I.D., 5 µm)
- Evaporative Light Scattering Detector (ELSD)
Methodology
Mobile phases:
- Component A: Supercritical CO2
- Component B: 20 mmol/L ammonium formate in methanol
- 0–6.5 min: 15 % B
- 6.51–9.0 min: 30 % B
- 9.01–12.0 min: 15 % B
- Flow rate: 3.0 mL/min
- Column temperature: 30 °C
- Back pressure: 10 MPa (controller A), 40 MPa (controller B)
- Back pressure regulator temperature: 50 °C
- Injection volume: 2 µL
- ELSD sampling rate: 500 ms
Main Results and Discussion
The optimized method resolves five glucosylceramide species (C16, C18, C20, C22, C24) and a steryl glucoside within a 12-minute run time. Chromatographic peaks exhibit sharp shape and consistent retention times, demonstrating the method’s robustness across lipid variants. ELSD detection provides reliable quantification despite structural differences.
Benefits and Practical Applications
This SFC-ELSD approach offers:
- High throughput with sub-15-minute cycle time
- Reduced organic solvent consumption compared to HPLC
- Simplified sample preparation for complex lipid mixtures
- Reproducible and sensitive detection of minor components
Future Trends and Potential Applications
Advances in SFC technology and detectors will enable enhanced lipidomics workflows. Future directions include integration with mass spectrometry for structural analysis, microfluidic platforms for higher throughput, and expanded lipid libraries for comprehensive profiling.
Conclusion
The described SFC method using Shim-pack UC-PolyBT and ELSD detection delivers an efficient and eco-friendly solution for glucosylceramide and steryl glucoside analysis. It meets the demands of research, quality control and industrial applications.
Reference
Shimadzu Corporation. Application note ERAS-1000-0542: Analysis of Glucosylceramides and Steryl Glucosides by SFC. First Edition, February 2024.
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