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Extraction and Fractionation of Functional Ingredients with Online SFE-SFC

Technical notes | 2023 | ShimadzuInstrumentation
Sample Preparation, SFC
Industries
Manufacturer
Shimadzu

Summary

Significance of the Topic


Functional bioactive compounds such as carotenoids (e.g., lycopene) have strong potential in disease prevention and nutraceutical applications, but their extraction and purification require rapid handling under mild conditions to avoid degradation and isomerization. Conventional liquid chromatography-based workflows involve multiple instruments and lengthy sample pretreatment steps, increasing the risk of analyte decomposition and prolonging analysis time.

Study Objectives and Overview


This work introduces a preparative online supercritical fluid extraction-supercritical fluid chromatography (SFE-SFC) system that seamlessly integrates extraction, chromatographic separation, and fraction collection using supercritical carbon dioxide. The goal is to automate the entire workflow for efficient isolation of functional ingredients from complex matrices while preserving analyte stability and reducing manual effort.

Methodology and Instrumentation


The system performs static extraction (sample contacted with scCO₂ at 40 °C for 3 min) followed by dynamic extraction (flowing scCO₂ for 6 min). Extracts are directly transferred to an SFC column for gradient separation (CO₂ with acetonitrile modifier) and detected by a photodiode array detector. Fractions are collected by a preparative fraction collector equipped with a LotusStream™ gas-liquid separator to avoid scattering from CO₂ depressurization.
  • CO₂ pump, modifier pump, makeup pump (acetone)
  • Back-pressure regulators and column oven
  • Fraction collector with LotusStream separator
  • Photodiode array detector (190–800 nm)
  • Preparative SFC columns (Shim-pack UC-ODS 10 mm I.D., 5 µm)
  • Analytical SFC scouting columns (UC-ODS, UC-Sil II, UC-Diol II, UC-PolyVP, UC-PolyBT, UC-PBr)

Main Results and Discussion


Column scouting identified UC-ODS with acetonitrile modifier as optimal for separating lycopene from β-carotene. Analytical gradients (15→40 % acetonitrile over 10 min) provided sharp, baseline separation. When applied to a processed tomato product, the system achieved complete lycopene resolution in a single run. Automated sample pretreatment using an absorbent shortened preparation time from ~60 min to 5 min. Scaling to preparative isolation (0.5 g sample, 10 mm column, 5 mL/min flow) yielded reproducible lycopene fractions with RSD ≤ 1.1 % for extract peak area and ≤ 0.7 % for recovered fraction.

Benefits and Practical Applications


This preparative online SFE-SFC platform offers:
  • Fully automated extraction, separation, and fractionation in one system
  • Minimal sample pretreatment and reduced solvent use
  • High sensitivity for labile, light-sensitive compounds
  • Rapid turnaround suitable for preparative isolation of functional ingredients
  • Applications in nutraceutical research, food quality control, and industrial purification workflows

Future Trends and Applications


Integration with mass spectrometry for direct structural confirmation, expansion to multi-dimensional separation, further scale-up for manufacturing-scale isolation, and application to other heat- and oxidation-sensitive compounds are anticipated. Advancements in green solvents, AI-driven method optimization, and modular automation promise broader adoption in pharmaceutical, food safety, and natural product research.

Conclusion


The described preparative online SFE-SFC system demonstrates a streamlined, automated approach to extract, analyze, and isolate high-value functional ingredients under mild conditions. It delivers significant time savings, improved reproducibility, and gentle handling of target compounds, making it an attractive solution for preparative purification in research and industry.

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