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Shim-pack™ Mix-HILIC columns

Technical notes | 2024 | ShimadzuInstrumentation
Consumables, LC columns
Industries
Metabolomics
Manufacturer
Shimadzu

Summary

Significance of the Topic


Metabolomics delivers a direct readout of an organism’s phenotype by profiling its small-molecule complement. Hydrophilic metabolites such as amino acids, nucleotides, organic acids and coenzymes play critical roles in cellular processes. Reliable separation and quantification of these compounds support applications in drug discovery, nutritional science, metabolic engineering and clinical diagnostics.

Objectives and Study Overview


The primary goals of this work were to assess the performance of the Shim-pack Mix-HILIC column for broad‐spectrum hydrophilic metabolite analysis and to demonstrate its applicability to complex biological samples. Key objectives included:
  • Developing a gradient HILIC method for simultaneous separation of diverse polar compounds
  • Demonstrating detection of metabolites in standard mixtures and real samples
  • Integrating chromatography with high-sensitivity MS detection for metabolome profiling

Methodology and Instrumentation


A gradient elution HILIC method was employed to resolve nucleobases, nucleosides, amino acids, organic acids, coenzymes and nucleotides in a single run. Separation was achieved by combined hydrophilic and ionic interactions on the stationary phase, with retention times spanning approximately 3.5 to 20 minutes. Detection was performed in MRM mode using electrospray ionization to maximize sensitivity and selectivity.

Instrumentation Used


  • Shim-pack Mix-HILIC column (150 mm × 2.1 mm I.D., 5 µm)
  • Nexera X3 UPLC system with Analytical Intelligence functions
  • LCMS-8060NX triple-quadrupole mass spectrometer with ESI source
  • LabSolutions Insight software for streamlined data processing
  • Peakintelligence for automated peak integration

Main Results and Discussion


The Shim-pack Mix-HILIC column enabled baseline separation of over 40 hydrophilic metabolites in under 20 minutes. Key findings included:
  • Early elution of nucleobases, nucleosides and amino acids followed by organic acids, coenzymes and nucleotides
  • Clear MRM chromatograms demonstrating resolution and reproducibility
  • Successful profiling of 44 metabolites in Escherichia coli extracts and 25 in human plasma

These results highlight the column’s capacity to handle compounds with diverse polarity and charge characteristics in a single workflow.

Benefits and Practical Applications


The developed platform offers:
  • Simultaneous analysis of a wide metabolite panel without multiple chromatographic methods
  • High sensitivity and reduced matrix effects via optimized ESI-MS conditions
  • Improved laboratory throughput through rapid run times and integrated software tools
  • Broad utility in research, QA/QC and clinical metabolomics studies

Future Trends and Potential Applications


Advances expected in the coming years include:
  • Integration with automation and high-throughput robotics for large-scale studies
  • Application of AI-driven algorithms for peak annotation and multivariate data analysis
  • Development of next-generation HILIC phases for enhanced selectivity and stability
  • Coupling with complementary omics platforms (proteomics, lipidomics) for systems biology

Conclusion


The Shim-pack Mix-HILIC column, combined with Nexera X3 and LCMS-8060NX, provides a robust, sensitive and high-throughput solution for comprehensive hydrophilic metabolite profiling. Its broad range of detectable compounds and streamlined workflow facilitate diverse research and industrial applications in metabolomics.

References


No specific literature references were provided in the original document.

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