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Simultaneous Quantification of 16 Furanocoumarins in Essential Oils Using a Robust and Sensitive Triple Quad LC-MS/MS Method

Applications | 2022 | WatersInstrumentation
LC/MS, LC/MS/MS, LC/QQQ
Industries
Other
Manufacturer
Waters

Summary

Importance of the Topic


Furanocoumarins are naturally occurring compounds in many plants and citrus fruits. They can cause phototoxic reactions and are regulated in cosmetics and consumer products due to safety concerns.

Objectives and Study Overview


This study aims to develop a sensitive and efficient UPLC-MS/MS method for concurrently measuring 16 furanocoumarins in essential oils. Using the Xevo TQ-XS tandem quadrupole system, the authors evaluated linearity, precision, and matrix effects to ensure compliance with EU regulations limiting furanocoumarin content.

Methodology and Instrumentation


Standards of 16 furanocoumarins were prepared over 0.5–1000 ng/mL (5–1000 ng/mL for 6,7-dihydroxybergamottin). Essential oil samples were diluted 100-fold before injection. Chromatographic separation utilized an ACQUITY UPLC CSH Fluoro-Phenyl column with a 15-minute gradient at 40 °C. The Xevo TQ-XS operated in positive ESI mode with time-segmented MRM transitions optimized via QuanOptimize.

Used Instrumentation


  • ACQUITY UPLC I-Class system
  • ACQUITY UPLC CSH Fluoro-Phenyl column (2.1×100 mm, 1.7 μm)
  • Xevo TQ-XS triple quadrupole mass spectrometer
  • MassLynx and TargetLynx software

Main Results and Discussion


The method achieved excellent linearity (R2>0.998) across three orders of magnitude for 15 analytes and two for 6,7-dihydroxybergamottin. Limits of quantitation reached 0.5 ng/mL, except 5 ng/mL for 6,7-dihydroxybergamottin. Four isomeric pairs were fully resolved to avoid MRM overlap. Matrix effects in orange oil were below 30%, confirming that solvent calibration is applicable.

Benefits and Practical Applications


  • Rapid 15-minute analysis provides high throughput
  • Low detection limits support regulatory compliance (EU limit 1 mg/kg)
  • Robust separation of isomers ensures accurate quantification
  • Minimal sample preparation simplifies workflow

Future Trends and Opportunities


Advances may include multiplexed analysis of additional phototoxic compounds, automation of sample preparation, and integration with high-resolution mass spectrometry. Expanding this method to complex matrices beyond essential oils could further enhance safety monitoring in cosmetics and food products.

Conclusion


The developed triple quadrupole LC-MS/MS protocol provides a fast, sensitive, and reliable tool for quantifying 16 furanocoumarins in essential oils. Its strong performance and minimal matrix interference make it suitable for quality control and regulatory enforcement of phototoxic agents in consumer products.

References


  1. Dugrand-Judek A. et al. PLOS ONE, 2015, 10(11).
  2. Kreidl M. et al. Anal. Chim. Acta, 2020, 1101, 211–221.
  3. Christensen L.P. et al. Polyphenols in Human Health and Disease, 2014.
  4. EU Regulation (EC) No 1223/2009 on Cosmetic Products, 2009.
  5. Li G.-J. et al. Food Chem, 2019, 271, 29–38.
  6. International Fragrance Association Information Letter 799, 2008.

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