Analysis of Gastrodin, p-hydroxybenzyl alcohol and Parishins in Gastrodia Tuber
Applications | 2023 | ShimadzuInstrumentation
The analysis of phenolic glucosides and related parishins in Gastrodia tuber is essential for ensuring quality, safety and efficacy of Chinese herbal medicines. Quantifying compounds such as gastrodin and p-hydroxybenzyl alcohol underpins both pharmacological research and industrial quality control.
This work aims to establish a robust reversed-phase HPLC protocol to separate and quantify gastrodin, p-hydroxybenzyl alcohol, parishin E, parishin B, parishin C and parishin in both control medicinal material and commercially available Gastrodia powders. The study evaluates sample pretreatment, chromatographic parameters and detection conditions.
The optimized gradient method provided baseline separation of all six target analytes within 42 min. Chromatograms of standard mixtures and real samples exhibited sharp, well-resolved peaks and consistent retention times. The elution order confirmed clear discrimination between gastrodin, p-hydroxybenzyl alcohol and the various parishins.
Integration with mass spectrometry could improve sensitivity and compound identification. Automation of the extraction workflow and adoption of high-throughput systems would accelerate routine testing. The application of chemometric techniques may further refine the chemical fingerprinting of herbal extracts.
The developed HPLC method on Shim-pack VP-ODS demonstrates robust performance for simultaneous determination of key phenolic constituents in Gastrodia tubers, addressing critical needs in herbal medicine standardization and supporting pharmacological studies.
Consumables, HPLC, LC columns
IndustriesPharma & Biopharma
ManufacturerShimadzu
Summary
Significance of the Topic
The analysis of phenolic glucosides and related parishins in Gastrodia tuber is essential for ensuring quality, safety and efficacy of Chinese herbal medicines. Quantifying compounds such as gastrodin and p-hydroxybenzyl alcohol underpins both pharmacological research and industrial quality control.
Objectives and Study Overview
This work aims to establish a robust reversed-phase HPLC protocol to separate and quantify gastrodin, p-hydroxybenzyl alcohol, parishin E, parishin B, parishin C and parishin in both control medicinal material and commercially available Gastrodia powders. The study evaluates sample pretreatment, chromatographic parameters and detection conditions.
Methodology and Instrumentation
- Column: Shim-pack VP-ODS (250 mm × 4.6 mm I.D., 5 µm).
- Mobile Phase: A) 0.1% phosphoric acid; B) acetonitrile; gradient from 3% to 95% B over 42 min.
- Flow Rate: 0.8 mL/min; Column Temperature: 30 °C; Injection Volume: 3 µL.
- Detection: UV at 220 nm.
- Sample Preparation: 0.5 g sample extracted with 25 mL of 50% methanol–water using ultrasonication (500 W, 40 kHz, 30 min), followed by cooling, filtration and vial transfer.
Key Results and Discussion
The optimized gradient method provided baseline separation of all six target analytes within 42 min. Chromatograms of standard mixtures and real samples exhibited sharp, well-resolved peaks and consistent retention times. The elution order confirmed clear discrimination between gastrodin, p-hydroxybenzyl alcohol and the various parishins.
Benefits and Practical Applications
- Enables accurate quality control of Gastrodia-derived herbal products.
- Facilitates neuroprotective research by delivering precise quantification of phenolic compounds.
- Adaptable to both laboratory reference materials and consumer-grade powders.
Future Trends and Applications
Integration with mass spectrometry could improve sensitivity and compound identification. Automation of the extraction workflow and adoption of high-throughput systems would accelerate routine testing. The application of chemometric techniques may further refine the chemical fingerprinting of herbal extracts.
Conclusion
The developed HPLC method on Shim-pack VP-ODS demonstrates robust performance for simultaneous determination of key phenolic constituents in Gastrodia tubers, addressing critical needs in herbal medicine standardization and supporting pharmacological studies.
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