Shim-pack Arata LC column
Brochures and specifications | 2019 | ShimadzuInstrumentation
In reversed-phase liquid chromatography, achieving sharp and symmetrical peaks for both basic and acidic analytes under acidic mobile-phase conditions is an ongoing challenge due to unwanted silanol interactions and long column equilibration times. Optimizing column chemistry to overcome these limitations is critical for pharmaceutical quality control, environmental monitoring and LC–MS applications.
This whitepaper presents the development and performance evaluation of Shim-pack Arata LC columns, specifically designed to suppress silanol interactions and deliver unprecedented peak shape, resolution and stability for basic compounds, acidic drugs and peptides. The study encompasses comparative analyses vs. conventional ODS and hybrid columns, method transfer across different column dimensions and particle sizes, lot-to-lot reproducibility and peptide recovery experiments.
The unique end-capping and surface chemistry of Shim-pack Arata columns enable:
Anticipated developments include:
Shim-pack Arata columns represent a next-generation reversed-phase solution that effectively suppresses silanol interactions, delivering unmatched peak shape, rapid equilibration and seamless method transfer for basic and acidic small molecules as well as peptides. Their robust performance and reproducibility make them well suited for pharmaceutical, bioanalytical and industrial applications.
Consumables, LC columns
IndustriesManufacturerShimadzu
Summary
Significance of the Topic
In reversed-phase liquid chromatography, achieving sharp and symmetrical peaks for both basic and acidic analytes under acidic mobile-phase conditions is an ongoing challenge due to unwanted silanol interactions and long column equilibration times. Optimizing column chemistry to overcome these limitations is critical for pharmaceutical quality control, environmental monitoring and LC–MS applications.
Objectives and Overview of the Study
This whitepaper presents the development and performance evaluation of Shim-pack Arata LC columns, specifically designed to suppress silanol interactions and deliver unprecedented peak shape, resolution and stability for basic compounds, acidic drugs and peptides. The study encompasses comparative analyses vs. conventional ODS and hybrid columns, method transfer across different column dimensions and particle sizes, lot-to-lot reproducibility and peptide recovery experiments.
Methodology and Instrumentation
- Columns: Shim-pack Arata C18 (2.2 µm and 5 µm), Shim-pack Arata Peptide C18, hybrid C18, core shell C18, Shim-pack XR-ODSⅡ, Shim-pack VP-ODS
- LC Systems: Nexera™ X2 (SPD-20A semi-micro cell), Nexera™ X2 MP (M30A STD cell)
- Mobile Phases: 0.1 % formic acid or phosphoric buffer in H₂O/CH₃CN, phosphate buffers pH 2.5–7.0
- Detection: UV at 210–254 nm
- Column dimensions and flow rates: 2.0×150 mm at 0.2 mL/min, 3.0×75 mm at 0.8 mL/min, 4.6×150 mm at 1.0 mL/min
Main Results and Discussion
- Basic and Acidic Drug Separation: Under low ionic strength acidic conditions, Shim-pack Arata C18 delivered superior symmetry factors for 4 basic and 5 acidic drugs compared to hybrid and conventional ODS columns.
- Rapid Equilibration: Stable retention times of amitriptyline and its impurities were achieved after under one-hour equilibration with 0.1 % phosphoric acid, unlike typical ODS columns which required prolonged conditioning.
- Method Transfer: Consistent selectivity and retention factors were maintained when transferring gradients between 5 µm and 2.2 µm Arata columns, enabling 4× faster analysis and 5× lower solvent consumption.
- Lot-to-Lot Reproducibility: Three different silica gel lots exhibited negligible variation in retention and peak shape for uracil, amitriptyline and benzoic acid under strict QC conditions.
- Peptide Analysis: Shim-pack Arata Peptide C18 yielded excellent peak shape, rapid equilibration (< 30 min) and high peptide recovery in myoglobin tryptic digest experiments, outperforming core shell Peptide C18 and C8 columns.
Benefits and Practical Applications
The unique end-capping and surface chemistry of Shim-pack Arata columns enable:
- Improved robustness in pharmaceutical impurity profiling and QA/QC workflows
- Elimination of ion-pairing reagents in LC–MS/MS assays for basic and acidic analytes
- Streamlined method development and transfer between HPLC and UHPLC platforms
- Reduced solvent consumption and analysis time
- Enhanced reproducibility for regulated industries requiring stable performance
Future Trends and Opportunities
Anticipated developments include:
- Extension of Arata chemistry to multidimensional LC separations and proteomics
- Integration with high-resolution mass spectrometry for trace-level quantitation
- Green chromatography approaches using lower organic modifier concentrations
- Automated method optimization using AI-driven retention models
Conclusion
Shim-pack Arata columns represent a next-generation reversed-phase solution that effectively suppresses silanol interactions, delivering unmatched peak shape, rapid equilibration and seamless method transfer for basic and acidic small molecules as well as peptides. Their robust performance and reproducibility make them well suited for pharmaceutical, bioanalytical and industrial applications.
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