Optimization of Analytical Conditions, and Scale-up from Analytical to Preparative Scale Using Supercritical Fluid Chromatography
Technical notes | 2019 | ShimadzuInstrumentation
High-purity fractionation in preparative supercritical fluid chromatography (SFC) is critical for obtaining pure compounds with minimal solvent use and high throughput. Systematic optimization of analytical conditions ensures efficient method development and reliable scale-up to preparative operations.
This report details the scouting of analytical SFC conditions for separating a five-component mixture (linalool, ibuprofen, ketoprofen, caffeine, theophylline) using a Nexera UC system, followed by scale-up of the optimized method to a preparative Nexera UC Prep system.
The pentabromobenzyl (UC-PBr) column delivered the best separation among the screened phases. Increasing injection volume to 20 µL did not compromise peak shape or resolution. Scale-up to preparative dimensions yielded chromatograms equivalent to analytical conditions, confirming proportional adjustments by column cross-sectional area.
Advances may include integration of artificial intelligence for automated method scouting, more diverse stationary phases, greener modifiers, and online analytics for real-time optimization. Expanded applicability to complex biological and natural product matrices is anticipated.
Comprehensive analytical SFC method scouting with diverse stationary phases, followed by systematic scale-up, enables efficient preparative separations with high purity and throughput. The proportional scaling approach based on column geometry ensures robust method transfer.
SFC, PrepLC
IndustriesManufacturerShimadzu
Summary
Importance of the Topic
High-purity fractionation in preparative supercritical fluid chromatography (SFC) is critical for obtaining pure compounds with minimal solvent use and high throughput. Systematic optimization of analytical conditions ensures efficient method development and reliable scale-up to preparative operations.
Objectives and Study Overview
This report details the scouting of analytical SFC conditions for separating a five-component mixture (linalool, ibuprofen, ketoprofen, caffeine, theophylline) using a Nexera UC system, followed by scale-up of the optimized method to a preparative Nexera UC Prep system.
Methodology and Instrumentation
- Method Scouting Solution software on Nexera UC (analytical): evaluation of six Shim-pack UC columns (Sil II, HyP, PBr, Py, PyE, Diol II) with 20% methanol modifier, 3.0 mL/min flow, 40 °C, BPR 10 MPa, UV detection at 225 nm.
- Loading study at analytical scale: injection volumes increased from 2 µL to 20 µL using a preparative cell to assess peak integrity.
- Preparative scale-up on Nexera UC Prep: 250 × 20 mm I.D. PBr column, 56.7 mL/min flow (18.9×), 500 µL injection (25×), other conditions matching analytical scale.
Main Results and Discussion
The pentabromobenzyl (UC-PBr) column delivered the best separation among the screened phases. Increasing injection volume to 20 µL did not compromise peak shape or resolution. Scale-up to preparative dimensions yielded chromatograms equivalent to analytical conditions, confirming proportional adjustments by column cross-sectional area.
Benefits and Practical Applications
- Rapid identification of optimal chromatographic conditions with minimal sample and solvent use.
- Seamless transfer from analytical scouting to preparative purification.
- Enhanced purity and throughput for compound isolation in pharmaceutical and fine-chemical workflows.
Future Trends and Potential Uses
Advances may include integration of artificial intelligence for automated method scouting, more diverse stationary phases, greener modifiers, and online analytics for real-time optimization. Expanded applicability to complex biological and natural product matrices is anticipated.
Conclusion
Comprehensive analytical SFC method scouting with diverse stationary phases, followed by systematic scale-up, enables efficient preparative separations with high purity and throughput. The proportional scaling approach based on column geometry ensures robust method transfer.
Reference
- Tanaka K., Matsumoto K., Funada Y., Optimization of Analytical Conditions and Technical Scale-up Using Supercritical Fluid Chromatography, Shimadzu Technical Report C190-E246, 2019.
- Shimadzu Corporation, Improving Efficiency in CMC Test Report Preparation Using Multi Data Report, Technical Report C191-E046.
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