Multiresidue Pesticides Analysis in Norbixin Color Additive using LCMS-8050 and GCMS-TQ8040 NX
Applications | 2023 | ShimadzuInstrumentation
The quantitative analysis of pesticide residues in natural color additives, such as norbixin from annatto, is critical for food safety and regulatory compliance. Complex matrices like carotenoid-rich oleoresins can concentrate agrochemical residues, posing health risks. Robust, sensitive analytical protocols enable producers and quality control laboratories to monitor trace-level contaminants and meet international safety standards.
This work aimed to develop and validate a unified extraction and analysis approach for 72 commonly observed pesticides in norbixin color additive. By combining a modified QuEChERS sample preparation with triple-quadrupole LC-MS/MS and GC-MS/MS methods, the study evaluated limits of quantitation (LOQ), linearity, recovery, repeatability (RSDr), and reproducibility (RSDR) against Standard Method Performance Requirements (SMPR).
A single modified QuEChERS protocol using acetonitrile extraction and salt partitioning (NaCl and MgSO4) was applied. Clean-up utilized C-18, graphitized carbon black, PSA sorbents, and MgSO4 to reduce matrix interferences. Extracts were split for LC-MS/MS and GC-MS/MS:
Matrix-matched calibration curves demonstrated excellent linearity (R² ≥ 0.99) over 0.05–10 μg/L (LC-MS/MS) and 1–50 μg/L (GC-MS/MS). On LC-MS/MS, all 72 pesticides achieved LOQs of 5 μg/kg with recoveries between 60–120% and RSDr ≤ ±20%, RSDR ≤ ±30%. On GC-MS/MS, 45 compounds met 5 μg/kg LOQ, 10 at 10 μg/kg, and 1 at 25 μg/kg. Methoxyfenozide showed slight over-recovery. Captan was monitored via its degradant THPI.
Advancements in high-resolution mass spectrometry, automated sample preparation, and expanded pesticide libraries will further enhance throughput and compound coverage. Integration of AI-driven data analysis can streamline method optimization and anomaly detection. Portable MS technologies may enable on-site screening of color additives in supply chains.
The described QuEChERS combined LC-MS/MS and GC-MS/MS workflow provides a reliable, efficient, and sensitive tool for multiresidue pesticide analysis in norbixin. Shimadzu’s ultra-fast instrumentation and tailored databases ensure robust quantitation at low μg/kg levels, supporting safety assurance in natural color additives.
GC/MSD, GC/MS/MS, GC/QQQ, LC/MS, LC/MS/MS, LC/QQQ
IndustriesFood & Agriculture
ManufacturerShimadzu
Summary
Importance of the Topic
The quantitative analysis of pesticide residues in natural color additives, such as norbixin from annatto, is critical for food safety and regulatory compliance. Complex matrices like carotenoid-rich oleoresins can concentrate agrochemical residues, posing health risks. Robust, sensitive analytical protocols enable producers and quality control laboratories to monitor trace-level contaminants and meet international safety standards.
Study Objectives and Overview
This work aimed to develop and validate a unified extraction and analysis approach for 72 commonly observed pesticides in norbixin color additive. By combining a modified QuEChERS sample preparation with triple-quadrupole LC-MS/MS and GC-MS/MS methods, the study evaluated limits of quantitation (LOQ), linearity, recovery, repeatability (RSDr), and reproducibility (RSDR) against Standard Method Performance Requirements (SMPR).
Methodology and Instrumentation
A single modified QuEChERS protocol using acetonitrile extraction and salt partitioning (NaCl and MgSO4) was applied. Clean-up utilized C-18, graphitized carbon black, PSA sorbents, and MgSO4 to reduce matrix interferences. Extracts were split for LC-MS/MS and GC-MS/MS:
- LC-MS/MS analysis on Shimadzu LCMS-8050 coupled with Nexera X2 UHPLC, using a C18 column and ammonium formate/formic acid gradient.
- GC-MS/MS analysis on Shimadzu GCMS-TQ8040 NX with a 5% phenyl methylpolysiloxane column under splitless injection and helium carrier gas.
Used Instrumentation
- Shimadzu LCMS-8050 with Nexera X2 SIL-30AC autosampler
- Shimadzu GCMS-TQ8040 NX with AOC-20i+s auto-injector
- LabSolutions Insight software for data processing
Results and Discussion
Matrix-matched calibration curves demonstrated excellent linearity (R² ≥ 0.99) over 0.05–10 μg/L (LC-MS/MS) and 1–50 μg/L (GC-MS/MS). On LC-MS/MS, all 72 pesticides achieved LOQs of 5 μg/kg with recoveries between 60–120% and RSDr ≤ ±20%, RSDR ≤ ±30%. On GC-MS/MS, 45 compounds met 5 μg/kg LOQ, 10 at 10 μg/kg, and 1 at 25 μg/kg. Methoxyfenozide showed slight over-recovery. Captan was monitored via its degradant THPI.
Benefits and Practical Applications
- Single extraction platform reduces sample handling and solvent usage.
- High sensitivity enables trace-level pesticide monitoring in challenging matrices.
- Validated performance supports regulatory compliance and routine QA/QC in food, cosmetics, and pharmaceutical industries.
Future Trends and Opportunities
Advancements in high-resolution mass spectrometry, automated sample preparation, and expanded pesticide libraries will further enhance throughput and compound coverage. Integration of AI-driven data analysis can streamline method optimization and anomaly detection. Portable MS technologies may enable on-site screening of color additives in supply chains.
Conclusion
The described QuEChERS combined LC-MS/MS and GC-MS/MS workflow provides a reliable, efficient, and sensitive tool for multiresidue pesticide analysis in norbixin. Shimadzu’s ultra-fast instrumentation and tailored databases ensure robust quantitation at low μg/kg levels, supporting safety assurance in natural color additives.
References
- Anastassiades M, Lehotay SJ, Štajnbaher D, Schenck FJ. Fast and Easy Multiresidue Method Employing Acetonitrile Extraction/Partitioning and Dispersive Solid-Phase Extraction for the Determination of Pesticide Residues in Produce. J AOAC Int. 2003;86:412–431.
- European Commission. Guidance Document on Analytical Quality Control and Method Validation Procedures for Pesticide Residues and Analysis in Food and Feed. SANTE/11312/2021.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
Similar PDF
Analysis of residual pesticides in Carrot Oleoresin using GCMS-TQ8040 NX and LCMS-8045
2021|Shimadzu|Applications
Application News GCMS-TQTM8040 & LCMSTM-8045 No. 06-ADC-F-05-EN Sujit Patil1, Yogesh Arote1, Chaitanya Atmakuri1, Dr. Avinash Gaikwad1, Durvesh Sawant2, Dr. Jitendra Kelkar2, Dr. Pratap Rasam2 Analysis of residual pesticides in Carrotoleoresin using GCMS-TQ8040 NX and LCMS-8045 1 Shimadzu Application Development Centre,…
Key words
rsdr, rsdrcarrot, carrotloq, loqdiazinone, diazinonenews, newsspinetoram, spinetoramfludioxonil, fludioxonilrecovery, recoverymin, minfluxapyroxad, fluxapyroxadfluopicolide, fluopicolideextraction, extractionmatrix, matrixbifenazate, bifenazatetriflumizole
Multiresidue pesticides analysis in Curcumin color additive powder using GCMS-TQ8040 NX and LCMS-8050
2021|Shimadzu|Applications
Application News No. 06-SAIP-F-01-EN GCMS-TQTM8040 & LCMSTM-8050 Multiresidue pesticides analysis in Curcumin color additive powder using GCMS-TQ8040 NX and LCMS-8050 Durvesh Sawant1, Dr. Aseem Wagle1, Rahul Dwivedi1, Devika Tupe1, Dr. Jitendra Kelkar1, Dr. Pratap Rasam1, Sujit Patil2, Dr. Avinash Gaikwad2…
Key words
rsdr, rsdrloq, loqcurcumin, curcuminnews, newsbuprofezin, buprofezinrecovery, recoverytebuconazole, tebuconazolefipronil, fipronilmin, mindiazinone, diazinonelevels, levelscolor, colorbifenazate, bifenazatetriflumizole, triflumizolequinoxyfen
Method for the determination of 431 Residual Pesticides in Honey using LCMS-8050 and GCMS-TQ8040 NX
2022|Shimadzu|Applications
Application News LCMSTM-8050 and GCMS-TQTM8040 Method for the determination of 431 Residual Pesticides in Honey using LCMS-8050 and GCMS-TQ8040 NX Sujit Patil1, Durvesh Sawant2, Dheeraj Handique2, Prashant Hase2, Sanket Chiplunkar2, Nitish Suryawanshi2, Aseem Wagle2, Rahul Dwivedi2, Jitendra Kelkar2, Pratap Rasam2,…
Key words
rsdr, rsdrloq, loqnews, newsrecovery, recoverycoefficient, coefficientmethyl, methylmrm, mrmprecision, precisionname, nametarget, targetdetermination, determinationbhc, bhcaccuracy, accuracyethyl, ethylchlorpyrifos
Method for the determination of 346 Residual Pesticides in Milk using LCMS-8045 and GCMS-TQ8040 NX
2021|Shimadzu|Applications
Application News No. 06-ADC-F-03-EN LCMSTM-8045 & GCMS-TQTM8040 Method for the determination of 346 Residual Pesticides in Milk using LCMS-8045 and GCMS-TQ8040 NX Sujit Patil, Yogesh Arote, Chaitanya Atmakuri, Dr. Avinash Gaikwad Shimadzu Application Development Centre User Benefits ◆ A modified…
Key words
rsdr, rsdrloq, loqnews, newsmethyl, methylcoefficient, coefficientsulfoxide, sulfoxideisomer, isomerprecision, precisionmrm, mrmpirimiphos, pirimiphosazinphos, azinphosfenthion, fenthionbhc, bhcname, namespinosyn