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BOOK OF ABSTRACTS - 4th International Symposium on RECENT ADVANCES IN FOOD ANALYSIS (RAFA)

Others | 2009 | RAFAInstrumentation
GC, GC/MSD, HPLC, LC/MS
Industries
Food & Agriculture
Manufacturer

Summary

Extraction and Purification of Inositols and Iminosugars from Plant Extracts


Significance of the Topic


  • Inositols and iminosugars are bioactive carbohydrates with health benefits and pharmaceutical potential.
  • Efficient extraction and clean-up methods are required to isolate these compounds from complex plant matrices.

Study Objectives and Overview


  • Develop a simplified procedure to isolate inositols and iminosugars from plant samples using ion exchange and solid-phase extraction.
  • Apply the method to model plant matrices to demonstrate selectivity and yield.

Methodology


  • Plant material was extracted with an aqueous solvent to release target carbohydrates.
  • Primary purification by ion exchange chromatography at controlled pH to remove salts and phenolics.
  • Secondary cleanup by solid-phase extraction to concentrate inositols and iminosugars.
  • Final analysis and quantification by appropriate chromatographic techniques (e.g. HPLC with refractive index or evaporative light scattering detection).

Main Findings


  • The combined ion exchange–SPE approach efficiently removed matrix interferences while retaining the target compounds.
  • Recovery rates exceeded 85 % for both inositols and iminosugars from spiked model extracts.
  • Method showed good reproducibility (RSD < 5 %) across multiple replicates and sample types.

Practical Applications


  • Routine screening of functional plant ingredients for health-promoting carbohydrates.
  • High-throughput sample preparation for industrial quality control.
  • Adaptable to a variety of botanical matrices.

Future Trends and Potential Uses


  • Automation of the cleanup steps to increase throughput.
  • Coupling with mass spectrometry for structural confirmation of novel iminosugars.
  • Application to metabolic profiling in functional food research.

Conclusion


  • The optimized extraction-purification protocol delivers high yields and purity of inositols and iminosugars from plant samples.
  • The method balances simplicity, robustness, and selectivity for routine analysis.

References


  • Standard analytical texts on carbohydrate extraction techniques.
  • Recent reviews on functional inositols and iminosugar bioactivity in foods.

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