Analysis of Mesotrione Drug Substance
Applications | 2021 | ShimadzuInstrumentation
Mesotrione is a widely used triketone herbicide applied for postemergence control of broadleaf weeds in maize. Accurate quantification of this active ingredient is essential for regulatory compliance, environmental monitoring and quality control in agrochemical production.
This application note presents a reversed-phase liquid chromatography method for the determination of mesotrione in pure drug substance. The aim is to demonstrate simple sample preparation, robust chromatographic separation and reliable quantification using Shimadzu Shim-pack GIST C18 columns.
Sample preparation involved weighing 0.1 g of mesotrione standard or test material into a 50 mL volumetric flask, dissolving in acetonitrile with ultrasonic assistance, then diluting with mobile phase. A 5 µL aliquot was injected for analysis. Chromatographic separation used a Shim-pack GIST C18 column (250 × 4.6 mm, 5 µm) with a mobile phase of acetonitrile and water (pH 3.0, adjusted with phosphoric acid) in a 40:60 ratio at 1.0 mL/min and 30 °C.
The method provided a sharp, well-resolved mesotrione peak with retention time consistency between reference and test solutions. Precision and repeatability were confirmed through replicate injections, demonstrating low relative standard deviations. The approach allows clear separation from potential impurities.
Advances may include coupling with mass spectrometry for enhanced sensitivity and selectivity, automation of sample handling to increase throughput, and adaptation to residue analysis in complex matrices such as soil and water.
The described reversed-phase LC method offers a straightforward, precise and reproducible protocol for mesotrione quantification. Its robustness and simplicity make it suitable for routine analysis in agricultural and environmental laboratories.
Consumables, HPLC, LC columns
IndustriesEnvironmental, Food & Agriculture
ManufacturerShimadzu
Summary
Importance of Mesotrione Analysis
Mesotrione is a widely used triketone herbicide applied for postemergence control of broadleaf weeds in maize. Accurate quantification of this active ingredient is essential for regulatory compliance, environmental monitoring and quality control in agrochemical production.
Objectives and Study Overview
This application note presents a reversed-phase liquid chromatography method for the determination of mesotrione in pure drug substance. The aim is to demonstrate simple sample preparation, robust chromatographic separation and reliable quantification using Shimadzu Shim-pack GIST C18 columns.
Methodology
Sample preparation involved weighing 0.1 g of mesotrione standard or test material into a 50 mL volumetric flask, dissolving in acetonitrile with ultrasonic assistance, then diluting with mobile phase. A 5 µL aliquot was injected for analysis. Chromatographic separation used a Shim-pack GIST C18 column (250 × 4.6 mm, 5 µm) with a mobile phase of acetonitrile and water (pH 3.0, adjusted with phosphoric acid) in a 40:60 ratio at 1.0 mL/min and 30 °C.
Used Instrumentation
- Shim-pack GIST C18 column (250 mm × 4.6 mm I.D., 5 µm)
- LC system equipped with UV detector set at 270 nm
- Shimadzu LabTotal™ vials for LC/LC-MS
Key Results and Discussion
The method provided a sharp, well-resolved mesotrione peak with retention time consistency between reference and test solutions. Precision and repeatability were confirmed through replicate injections, demonstrating low relative standard deviations. The approach allows clear separation from potential impurities.
Benefits and Practical Applications
- Fast and reliable assay for mesotrione in quality control laboratories
- Minimal sample preparation with ultrasonic dissolution
- Compatibility with routine LC-UV instrumentation
- Applicable for regulatory and environmental monitoring
Future Trends and Potential Applications
Advances may include coupling with mass spectrometry for enhanced sensitivity and selectivity, automation of sample handling to increase throughput, and adaptation to residue analysis in complex matrices such as soil and water.
Conclusion
The described reversed-phase LC method offers a straightforward, precise and reproducible protocol for mesotrione quantification. Its robustness and simplicity make it suitable for routine analysis in agricultural and environmental laboratories.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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