Quantitative Analysis of 57 Fragrance Allergens in Cosmetics Using Twin Line MS System
Applications | 2023 | ShimadzuInstrumentation
Quantitative identification of fragrance allergens in cosmetics is critical for meeting regulatory requirements and protecting consumer health. Under EU Regulation EC 1223/2009 and emerging amendments, more than 80 compounds are or will be subject to labeling based on concentration thresholds. Accurate monitoring of these trace-level allergens supports risk management and addresses growing consumer demand for product safety.
This application demonstrates a method for simultaneous quantification of 57 regulated fragrance allergens in a commercial hair oil matrix. The approach employs a twin line mass spectrometry system to enhance separation and reduce downtime. The method is based on guidelines from the International Fragrance Association and incorporates two gas chromatography columns operating in parallel.
Sample preparation involved diluting 1 gram of hair oil to 10 milliliters with methyl tert butyl ether. Standards spanned 0.5 to 50 milligrams per kilogram, with two internal standards fixed at 50 milligrams per kilogram. The system combined a single quadrupole GCMS-QP2020 NX and an AOC-30i auto-injector. Two capillary columns, a medium-polarity SH-I-17 and a nonpolar SH-1, were connected simultaneously. GC temperature programs were tailored for each column to optimize peak resolution. Mass spectrometry was conducted in selected ion monitoring mode with an ion source at 200 °C and interface at 280 °C.
Scan analysis showed that the SH-I-17 column resolved all target isomers, while the SH-1 column delivered complementary retention patterns. Calibration in SIM mode yielded coefficients of determination above 0.997 for all compounds, with 95 percent exceeding 0.999. Repeatability testing at the lowest calibration level (0.5 mg/kg) produced area percent relative standard deviations below 10 percent for every analyte, and below 5 percent for most.
Analysis of the hair oil spiked at 1 mg/kg highlighted cases where one column encountered coeluting interferences. By comparing quantitation from both columns and selecting the lower value when discrepancies occurred, the twin line system improved accuracy in complex matrices.
As regulatory frameworks expand the list of controlled allergens, multiplexed analysis will grow in importance. Potential developments include integration of high-resolution mass spectrometry for increased selectivity, automation for high-throughput screening, and coupling with data analytics driven by large language models to expedite method development and interpretation.
The twin line GC-MS approach on the GCMS-QP2020 NX platform enables robust quantification of 57 fragrance allergens across a broad calibration range with excellent linearity and precision. Dual-column operation enhances resolution in complex cosmetic matrices, delivering accurate results while minimizing downtime.
GC/MSD, GC/SQ
IndustriesOther
ManufacturerShimadzu
Summary
Importance of the Topic
Quantitative identification of fragrance allergens in cosmetics is critical for meeting regulatory requirements and protecting consumer health. Under EU Regulation EC 1223/2009 and emerging amendments, more than 80 compounds are or will be subject to labeling based on concentration thresholds. Accurate monitoring of these trace-level allergens supports risk management and addresses growing consumer demand for product safety.
Objectives and Study Overview
This application demonstrates a method for simultaneous quantification of 57 regulated fragrance allergens in a commercial hair oil matrix. The approach employs a twin line mass spectrometry system to enhance separation and reduce downtime. The method is based on guidelines from the International Fragrance Association and incorporates two gas chromatography columns operating in parallel.
Methodology and Instrumentation
Sample preparation involved diluting 1 gram of hair oil to 10 milliliters with methyl tert butyl ether. Standards spanned 0.5 to 50 milligrams per kilogram, with two internal standards fixed at 50 milligrams per kilogram. The system combined a single quadrupole GCMS-QP2020 NX and an AOC-30i auto-injector. Two capillary columns, a medium-polarity SH-I-17 and a nonpolar SH-1, were connected simultaneously. GC temperature programs were tailored for each column to optimize peak resolution. Mass spectrometry was conducted in selected ion monitoring mode with an ion source at 200 °C and interface at 280 °C.
Instrumentation Used
- GCMS-QP2020 NX single quadrupole mass spectrometer
- AOC-30i auto-injector
- SH-I-17 column (30 m x 0.25 mm I.D., 0.25 μm film)
- SH-1 column (30 m x 0.25 mm I.D., 0.25 μm film)
Results and Discussion
Scan analysis showed that the SH-I-17 column resolved all target isomers, while the SH-1 column delivered complementary retention patterns. Calibration in SIM mode yielded coefficients of determination above 0.997 for all compounds, with 95 percent exceeding 0.999. Repeatability testing at the lowest calibration level (0.5 mg/kg) produced area percent relative standard deviations below 10 percent for every analyte, and below 5 percent for most.
Analysis of the hair oil spiked at 1 mg/kg highlighted cases where one column encountered coeluting interferences. By comparing quantitation from both columns and selecting the lower value when discrepancies occurred, the twin line system improved accuracy in complex matrices.
Benefits and Practical Applications
- Simultaneous use of two columns maximizes separation power without interrupting mass spectrometer operation.
- Reduced downtime by eliminating column exchange.
- High sensitivity and reproducibility support compliance testing, quality control, and research in cosmetic formulation.
Future Trends and Potential Applications
As regulatory frameworks expand the list of controlled allergens, multiplexed analysis will grow in importance. Potential developments include integration of high-resolution mass spectrometry for increased selectivity, automation for high-throughput screening, and coupling with data analytics driven by large language models to expedite method development and interpretation.
Conclusion
The twin line GC-MS approach on the GCMS-QP2020 NX platform enables robust quantification of 57 fragrance allergens across a broad calibration range with excellent linearity and precision. Dual-column operation enhances resolution in complex cosmetic matrices, delivering accurate results while minimizing downtime.
Reference
- Regulation EC 1223/2009 on cosmetic products
- IFRA analytical method for quantifying 57 suspected allergens by GC-MS
- SCCS opinion on fragrance allergens in cosmetic products
- Draft EU amendment on labeling of fragrance allergens
- Modernization and Regulation of Cosmetics Act, US
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
Similar PDF
Simultaneous Analysis of Blood Alcohol and Volatile Toxic Substances Using Headspace GC-MS
2024|Shimadzu|Applications
GC-MS Application News GCMS-QP™2020 NX, HS-20 NX Simultaneous Analysis of Blood Alcohol and Volatile Toxic Substances Using Headspace GC-MS Yuki Sakamoto User Benefits Headspace GC-MS enables simultaneous analysis of blood alcohol and volatile toxic substances, such as cyanide and…
Key words
デフォルト, デフォルトmin, mindefault, defaultcyanide, cyanideazide, azideorigin, originhydrogen, hydrogenretention, retentiontoxic, toxicpaint, paintaccuracy, accuracynews, newsratio, ratioconcentration, concentrationethanol
GC Columns Installation Guide
2014|Restek|Manuals
Innovative Chromatography Solutions GC Columns Installation Guide GC Column Installation 气相色谱柱安装指南 Instructions pour l’installation d’une colonne capillaire Einbau einer GC-Kapillarsäule Istruzioni per l’installazione di una colonna capillare Instalación de Columnas Capilares GCカラム取付け手順 www.restek.com/gc 2 GC Column Installation Instructions The Restek…
Key words
カラム, カラムcolonna, colonnacolonne, colonnedella, dellarestek, restekcolumna, columnader, derpour, pouruna, unapara, paradel, delキャリヤガス, キャリヤガスcapillaire, capillaireフェルール, フェルールtempérature
Artificial Photosynthesis -Photocatalyst Characterization and Product Quantification
2024|Shimadzu|Brochures and specifications
C10G-E104 Analytical Solutions for Artificial Photosynthesis -Photocatalyst Characterization and Product Quantification- Toward a Carbon Neutral Society What’s Artificial Photosynthesis Artificial photosynthesis is a technology that artificially performs photosynthesis using photocatalysts and sunlight. It is expected to be a next-generation renewable…
Key words
chromatograph, chromatographphotoreaction, photoreactionphotosynthesis, photosynthesisフォトン, フォトンreaction, reactiongas, gasmeasurement, measurementlightway, lightwayquantum, quantumスペクトル, スペクトルhydrogen, hydrogenphotons, photonsproduct, productサービス, サービスmicropacked
Shimadzu GC Columns Installation Guide
2025|Shimadzu|Manuals
ERAD-0001-9079 Columns Installation Guide 气相色谱柱安装指南 Instructions pour l’installation d’une colonne capillaire Einbau einer GC-Kapillarsäule Istruzioni per l’installazione di una colonna capillare Instalación de Columnas Capilares www.shimadzu.com/an 2 ERAD-0001-9079 GC Column Installation Instructions The Shimadzu Innovations and Technical Services specialists have…
Key words
カラム, カラムcolonna, colonnacolonne, colonnedella, dellacolumna, columnader, derpour, pourpara, paravecteur, vecteurcapillaire, capillaireuna, unatempérature, températurel’installazione, l’installazioneauf, aufsäulen