Analysis of Kakkonto by Nexera-e and SPD-M30A Photodiode Array Detector (Part 1)

Applications | 2015 | ShimadzuInstrumentation
HPLC
Industries
Pharma & Biopharma
Manufacturer
Shimadzu

Summary

Importance of the Topic


Traditional herbal medicines such as Kakkonto contain multiple bioactive constituents with therapeutic potential. Accurate analysis of these complex mixtures is critical for quality control, ensuring safety and efficacy in pharmaceutical and nutraceutical applications.

Study Objectives and Overview


This study demonstrates a comprehensive two-dimensional liquid chromatography (2D-LC) approach using the Nexera-e system coupled with an SPD-M30A photodiode array detector to separate and quantify glycyrrhizic acid in Kakkonto extract. The work highlights improvements in separation efficiency and peak integrity through the use of an auto-gradient program.

Methodology


The sample was prepared by extracting 1.5 g of Kakkonto granules in 15 mL of methanol/water (1:1, v/v) with stirring and sonication, followed by centrifugation and filtration. A 2 µL aliquot of the clarified supernatant was injected into the 2D-LC system.

Used Instrumentation


  • Nexera-e comprehensive two-dimensional liquid chromatograph
  • SPD-M30A photodiode array detector (standard cell 1 µL, 254 nm)

Main Results and Discussion


Comparison of constant versus auto-gradient conditions in the second dimension revealed that the auto-gradient program markedly improved the peak shape and resolution of glycyrrhizic acid. Calibration over 50–1000 mg/L exhibited excellent linearity (R² = 0.9998). Repeatability tests for five replicates showed relative standard deviations of 0.37% for 2D retention time and 5.4% for peak area. The glycyrrhizic acid content in the commercial Kakkonto sample was determined to be 608.4 mg/L.

Benefits and Practical Applications


  • Enhanced separation power for complex herbal matrices.
  • High reproducibility in retention time and quantitation.
  • Robust analytical protocol suitable for routine quality control.

Future Trends and Potential Applications


Further developments may include integration of mass spectrometric detection for structural elucidation, automation of gradient optimization for faster throughput, and extension of this 2D-LC methodology to other multi-component botanical extracts and quality assurance in industrial settings.

Conclusion


The application of an auto-gradient program in comprehensive 2D-LC allows reliable separation and precise quantitation of glycyrrhizic acid in a complex traditional medicine matrix, supporting stringent quality control requirements.

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