Analysis of Salidroside in Ligustrum (Shim-pack VP-ODS)
Applications | 2023 | ShimadzuInstrumentation
Salidroside is a bioactive phenolic glycoside found in plants of the Rhodiola and Ligustrum genera. Accurate quantification of this compound supports quality control in herbal products and research on its therapeutic potentials, including adaptogenic and antioxidant properties.
The study aimed to develop and validate a straightforward HPLC method for determining salidroside levels in commercially sourced Ligustrum powder. Emphasis was placed on creating a reproducible sample preparation workflow and achieving clear chromatographic separation under isocratic conditions.
Chromatograms of the standard and Ligustrum extract revealed a well-resolved peak for salidroside with no significant interferences. The method demonstrated high repeatability in retention time and peak area. The optimized isocratic system ensured a stable baseline and efficient run times, making it suitable for routine analyses.
Continued advances may include coupling this approach with mass spectrometry for enhanced specificity or integrating automated sample handling for larger sample batches. Exploration of other phenolic glycosides in related species can broaden the method’s utility in phytochemical research and industry.
The developed HPLC protocol provides a robust tool for accurate salidroside determination in Ligustrum powder. Its simplicity and performance support its adoption in both research laboratories and quality control settings to ensure product consistency and safety.
Consumables, HPLC, LC columns
IndustriesFood & Agriculture
ManufacturerShimadzu
Summary
Significance of the Topic
Salidroside is a bioactive phenolic glycoside found in plants of the Rhodiola and Ligustrum genera. Accurate quantification of this compound supports quality control in herbal products and research on its therapeutic potentials, including adaptogenic and antioxidant properties.
Objectives and Study Overview
The study aimed to develop and validate a straightforward HPLC method for determining salidroside levels in commercially sourced Ligustrum powder. Emphasis was placed on creating a reproducible sample preparation workflow and achieving clear chromatographic separation under isocratic conditions.
Methodology and Instrumentation
- Column: Shim-pack VP-ODS, 250 mm × 4.6 mm I.D., 5 µm particle size
- Mobile Phase: Water (A) and Methanol (B) mixed at 85:15 ratio, isocratic elution
- Flow Rate: 1.0 mL/min; Column Temperature: 40 °C; Injection Volume: 10 µL
- Detection: UV absorbance at 275 nm
- Vials: LabTotal LC/LCMS vials to ensure sample integrity
- Weigh 0.5 g Ligustrum powder; transfer to a conical flask.
- Add 50 mL of 70 % methanol; seal and record weight.
- Ultrasonicate at 500 W and 40 kHz for 30 minutes.
- After cooling, adjust with 70 % methanol to original weight; mix and filter.
Main Results and Discussion
Chromatograms of the standard and Ligustrum extract revealed a well-resolved peak for salidroside with no significant interferences. The method demonstrated high repeatability in retention time and peak area. The optimized isocratic system ensured a stable baseline and efficient run times, making it suitable for routine analyses.
Benefits and Practical Applications
- Rapid and reliable quantification of salidroside in plant materials.
- Minimal solvent consumption due to isocratic elution.
- Straightforward sample preparation compatible with high-throughput workflows.
- Applicability to quality control in nutraceutical and herbal supplement manufacturing.
Future Trends and Opportunities
Continued advances may include coupling this approach with mass spectrometry for enhanced specificity or integrating automated sample handling for larger sample batches. Exploration of other phenolic glycosides in related species can broaden the method’s utility in phytochemical research and industry.
Conclusion
The developed HPLC protocol provides a robust tool for accurate salidroside determination in Ligustrum powder. Its simplicity and performance support its adoption in both research laboratories and quality control settings to ensure product consistency and safety.
Reference
- Shimadzu Corporation (2023) Analysis of Salidroside in Ligustrum. Application Note ERAS-1000-0037.
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