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Method Development and Evaluation for Multiresidue Pesticide analysis in Foods Using the 6475 Triple Quadrupole LC/MS System

Applications | 2022 | Agilent TechnologiesInstrumentation
LC/MS, LC/MS/MS, LC/QQQ
Industries
Food & Agriculture
Manufacturer
Agilent Technologies

Summary

Importance of the Topic

Monitoring pesticide residues in food is essential for public health and meeting global regulatory limits. High sensitivity multiresidue methods help ensure food safety, maintain consumer trust, and support compliance with guidelines from agencies such as the US EPA and the European Commission.

Study Objective and Overview

This work aimed to develop and validate a comprehensive liquid chromatography–tandem mass spectrometry (LC-MS/MS) method capable of quantifying over 500 pesticide compounds and metabolites in three challenging food matrices: wheat, olive oil, and black tea. The method was built on an existing Agilent triple quadrupole platform and adapted for the newer 6475 LC/TQ system combined with the Agilent 1290 Infinity II Bio LC and MassHunter 12.0 software.

Methodology and Instrumentation

Sample Preparation and Cleanup
  • QuEChERS-style extraction: acetonitrile extraction followed by dispersive SPE cleanup tailored to each matrix (universal dSPE for wheat, pigment removal for tea, EMR-Lipid cartridges for olive oil).
  • Matrix-matched calibration: standards spiked post-extraction at nine levels (0.1–50 µg/L), with final calibration ranges adjusted for each matrix dilution.
Used Instrumentation
  • Agilent 1290 Infinity II Bio LC with high-speed pump, multisampler (4 °C), and column thermostat.
  • Agilent 6475 triple quadrupole LC/MS equipped with Jet Stream electrospray ionization.
  • MassHunter Workstation 12.0 for data acquisition, dynamic MRM optimization, and ease of method transfer.


Main Results and Discussion

  • Method Transfer: Direct import of legacy MRM parameters; overlaid total ion chromatograms showed near-identical performance without reoptimization.
  • Dynamic MRM Expansion: New optimizer in MassHunter 12 enabled automated tuning of over 1,000 transitions for >500 pesticides, maintaining sharp peak shapes and adequate dwell times.
  • Quantitative Performance:
    – Linearity: R2 >0.99 for over 90% of compounds across all matrices.
    – Sensitivity: Lower limits of quantification mostly below default MRLs (0.5–10 µg/kg).
    – Recoveries: 70–120% for the majority of analytes, meeting SANTE guidelines.
  • Robustness: Continuous acquisition of 300 replicate injections of spiked tea extract over ~115 hours yielded consistent chromatograms and signal stability (%RSD 3.7–5.2% for representative pesticides).


Benefits and Practical Applications

  • Seamless migration from older instruments to a modern LC/TQ platform with minimal method redevelopment.
  • High-throughput screening with broad pesticide coverage in diverse food matrices.
  • Compliance with regulatory requirements, including 21 CFR Part 11 and Annex 11 guidelines.


Future Trends and Opportunities

  • Enhanced artificial intelligence-driven tuning and calibration for further automation.
  • Integration of high-resolution mass spectrometry for non-targeted screening alongside targeted assays.
  • Real-time monitoring strategies and application to emerging contaminants.
  • Expansion of multiresidue workflows to additional food types and environmental samples.


Conclusion

The developed LC/MS/MS method on the Agilent 6475 LC/TQ system demonstrates excellent sensitivity, accuracy, and robustness for the quantitation of over 500 pesticides in wheat, olive oil, and black tea. Its seamless transfer from legacy platforms and compliance with regulatory standards make it a reliable solution for routine food safety testing.

References

  1. SANTE/11312/2021 European Commission guideline on pesticide residue method validation.
  2. 40 CFR Title 40, Tolerances and Exemptions for Pesticide Chemical Residues (US EPA).
  3. EU legislation on maximum residue levels in plants and foodstuff.

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