Monitoring of Pesticides in the Cultivation of Nopal Vegetable (Opuntia ficus-indica (L.)) Mill, Morelos, México
Abstract
:1. Introduction
2. Materials and Methods
2.1. Standards
2.2. Collection of Samples
2.3. Sample Preparation and Purification
2.4. Preparation of the Calibration Plots
2.5. Analysis by Gas Chromatography
2.6. Analysis by Liquid Chromatography
2.7. Evaluation of Recovery Percentages
2.8. Toxicological Risk Assessment
3. Results and Discussion
3.1. Optimization of the Analytical Conditions
- YB = Sy/x: Random error in the direction of “y”; and
- SB = a: Intercept.
3.2. Concentrations of Pesticide Residues in Nopal Collected in Morelos
3.3. Dietary Risk Human Health Assessment
4. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Guidance Document on Analytical Quality Control and Validation Procedures for Pesticide Residues Analysis in Food and Feed; European Commission: Brussel, Belgium, 2015.
- Regulation EC/396/2005 of the European Parlament and of the Council of February 23, on Maximun Residue Levels of Pesticides in or on Food and Feed of Plant and Animal Origin and Amending Council Directive 91/414/EEC; European Parliament, Council of the European Union: Strasbourg, France, 2005.
- EU legislation on MRLs. Available online: https://ec.europa.eu/food/plant/pesticides/max_residue_levels/eu_rules_en.htm (accessed on 14 October 2018).
- Norma Oficial Mexicana NOM-003-STPS-1999. Actividades agrícolas-Uso de insumos fitosanitarios o plaguicidas e insumos de nutrición vegetal o fertilizantes-Condiciones de seguridad e higiene. RESPYN, (2002) 3 (3). Available online: http://www.respyn.uanl.mx/iii/3/contexto/norma_agricola.html (accessed on 15 January 2018).
- Winter, C.K. Pesticide residues in imported, organic, and “suspect” fruits and vegetables. J. Agric. Food Chem. 2012, 60, 4425–4429. [Google Scholar] [CrossRef] [PubMed]
- Comité Estatal de Sanidad e Inocuidad del Estado de Morelos (SENASICA) (2015). Available online: http://www.cesvmor.org.mx/index.php/ia (accessed on 21 January 2018).
- Otake, T.; Yarita, T.; Aoyagi, Y.; Kuroda, Y.; Numata, M.; Iwata, H.; Fujikawa, T. Development of green onion and cabbage certified reference materials for quantification of organophosphorus and pyrethroid pesticides. J. Agric. Food Chem. 2011, 59, 8568–8574. [Google Scholar] [CrossRef] [PubMed]
- Callejas, J.N.; Matus, G.J.; García, S.; Martínez, D.; Salas, G. Current situation and market outlook for tuna, nopalito and derivatives in the State of Mexico. Agrociencia 2006, 43, 73–82. [Google Scholar]
- Servicio Nacional de Sanidad, Inocuidad y Calidad Agroalimentaría (SENASICA). Plan de acción preventivo Nopal; Acciones para reducir los riesgos de contaminación por plaguicidas durante el proceso productivo, empacado, transporte y distribución de nopal dentro y fuera del país; SENASICA: México City, México, 2014; pp. 39–44. [Google Scholar]
- Servicio Nacional de Sanidad Inocuidad y Calidad Agroalimentaría (SENASICA). Procedimiento por el que se establecen los Criterios y requisitos para el reconocimiento de la competencia técnica de Laboratorios de análisis de residuos de plaguicidas, de detección de organismos patógenos y otros contaminantes en vegetales; SENASICA: México City, México, 2017; pp. 26–27. [Google Scholar]
- Norma Mexicana IMNC. ISO/IEC-17025—General Requirements for the Competence of Testing and Calibration Laboratories; IMNC: México City, México, 2017. [Google Scholar]
- Organization for Economic Co-operation and Development (OECD), Environment, Health and Safety Publications, Series on Testing and Assessment No.72 and No. 39. Guidance document on pesticide residue analytical methods ENV/JM/MONO. Available online: http://www.oecd.org/officialdocuments/publicdisplaydocumentpdf/?cote=env/jm/mono(2007)17&doclanguage=en (accessed on 14 December 2017).
- Chen, H.; Yin, P.; Wang, Q.; Jiang, Y.; Liu, X. A modified QuEChERS sample preparation method for the analysis of 70 pesticide residues in tea using gas chromatography-tandem mass spectrometry. Food Anal. Methods 2014, 7, 1577–1587. [Google Scholar] [CrossRef]
- Hou, R.Y.; Jiao, W.T.; Xiao, Y.; Guo, J.G.; Lv, Y.N.; Tan, H.R.; Hu, J.; Wan, X. Novel use of PVPP in a modified QuEChERS extraction for UPLC–MS/MS analysis of neonicotinoid insecticides in tea. Anal. Methods 2015, 7, 5521–5529. [Google Scholar] [CrossRef]
- World Health Organization, United Nations Organization for Food and Agriculture. Recommended Methods of Sampling for the Determination of Pesticide Residues for Compliance With MRLs CAC/GL 33-1999. Available online: http://www.fao.org/input/download/standards/361/CXG_033e.pdf (accessed on 16 December 2017).
- FAO (Food and Agriculture Organization). Submission and Evaluation of Pesticide Residues Data for the Estimation of Maximum Residue Levels in Food and Feed; FAO: Rome, Italy, 2002; pp. 1–279. [Google Scholar]
- Servicio de Información Agroalimentaría y Pesquera (SIAP). Atlas Agroalimentario 2017. Available online: http://online.pubhtml5.com/clsi/ibhs/#p=122,120-121 (accessed on 9 August 2018).
- Miller, J.N.; Miller, J.C. Statistics and Chemometrics for Analytical Chemistry, 4th ed.; Pearson Education: New York, NY, USA, 2004. [Google Scholar]
- United States Department of Agriculture (USDA). Analytical Chemistry Laboratory Guidebook. Residue Chemistry. Science and Technology; USDA FSIS: Washington, DC, USA, 1991. [Google Scholar]
- World Health Organization (WHO); Pesticide Evaluation Scheme, Department of Control of Neglected Tropical Diseases. Use of Malathion for Vector Control; WHO: Geneva, Switzerland, 2016; Available online: http://apps.who.int/iris/handle/10665/207475 (accessed on 14 October 2018).
- Aldana-Madrid, M.L.; García-Moraga, M.d.C.; Rodríguez-Olibarria, G.; Silveira-Gramont, M.I.; Valenzuela-Quintanar, A.I. Determinación de insecticidas organofosforados en nopal fresco y deshidratado. Rev. Fitotec. Mex. 2008, 31, 133–139. [Google Scholar]
- Angeles-Núñez, J.G.; Anaya-López, J.L.; Arévalo-Galarza, M.L.; Leyva-Ruelas, G.; Anaya Rosales, S.; Martínez-Martínez, T.O. Analysis of the sanitary quality of nopal in Otumba, State of Mexico. Rev. Mex. Cienc. Agric. 2014, 5, 129–141. [Google Scholar]
- Servicio Nacional de Sanidad, Inocuidad y Calidad Agroalimenta (SENASICA). Listado de Plaguicidas. Servicio Nacional de Sanidad, Inocuidad y Calidad Agroalimentaria. Available online: http://www.senasica.gob.mx/?doc=22993 (accessed on 14 October 2017).
- Environmental Protection Agency (EPA). Title 40: Protection of Environment. Code of Federal Regulations. United States. Available online: http://ecfr.gpoaccess.gov/cgi/t/text/text-idx?c=ecfr&sid=1c8cd959ef0d373fb7620f42c8445cca&tpl=/ecfrbrowse/Title40/40cfr180main02.tpl (accessed on 16 September 2017).
- World Health Organization. Inventory of Evaluations Performed by the Joint Meeting on Pesticide Residues (JMPR). Available online: http://apps.who.int/pesticide-residues-jmpr-database/pesticide (accessed on 14 October 2018).
Analyte | Rt | First Transition | Collision Energy | Second Transition | Collision Energy | Quantifier Ion |
---|---|---|---|---|---|---|
(min) | (m/z) | (V) | (m/z) | (V) | ||
Atrazine | 7.770 | 200.0→122.1 | 10 | 200.0→94.0 | 20 | 122.1 |
Malathion | 9.772 | 126.9→99 | 24 | 157.8→47 | 12 | 99.0 |
Chlorpyrifos | 9.776 | 313.8→257.8 | 15 | 313.8→285.8 | 5 | 257.8 |
Dimetomorph I | 18.279 | 300.9→165 | 30 | 302.9→164.9 | 20 | 165.0 |
Analyte | RT | First Transition | Collision Energy | Second Transition | Collision Energy | Quantifier Ion |
---|---|---|---|---|---|---|
(min) | (m/z) | (V) | (m/z) | (V) | ||
Omethoate | 1.760 | 214→155 | 14 | 214→183 | 12 | 183 |
Carbendazim | 2.200 | 343→151 | 18 | 192→160 | 18 | 160 |
Imidacloprid | 3.080 | 256.1→175 | 18 | 256.1→209 | 14 | 209 |
Analyte | Analysis Mode | LOD | % Recovery | % RSD |
---|---|---|---|---|
mg/kg | (n = 3) | (n = 3) | ||
Omethoate | UPLC | 0.000016 | 85.4 | 7.45 |
Carbendazim | UPLC | 0.000005 | 86.4 | 7.35 |
Imidacloprid | UPLC | 0.000001 | 87.3 | 6.42 |
Malathion | GC | 0.000006 | 88.3 | 6.82 |
Chlorpyrifos | GC | 0.000004 | 84.8 | 9.94 |
Dimetomorph I | GC | 0.000019 | 86.6 | 7.05 |
Sample | Pesticides Detected by Gas Chromatography (mg/kg) | Pesticides Detected by Liquid Chromatography (mg/kg) | ||||
---|---|---|---|---|---|---|
Chlorpyrifos | Dimetomorf I | Malathion | Omethoate | Carbendazim | Imidacloprid | |
1 | 0.00242 | 0.02884 | 0.08624 | 0.032 | 0.03275 | 0.02725 |
2 | 0.30869 | 0.01393 | 0.08148 | ND | 0.03739 | 0.02732 |
3 | 0.00263 | ND | 0.09068 | ND | 0.03710 | 0.02722 |
4 | 0.00422 | ND | 0.15509 | ND | 0.03305 | 0.02720 |
5 | 0.00317 | ND | ND | ND | 0.03760 | 0.03106 |
6 | 0.00201 | ND | ND | ND | 0.03463 | 0.02742 |
7 | 0.00203 | ND | ND | ND | 0.05290 | 0.02711 |
8 | 0.00329 | ND | ND | ND | 0.03290 | 0.03921 |
9 | 0.21922 | ND | ND | ND | 0.03285 | 0.05814 |
10 | 0.00347 | ND | ND | ND | 0.04527 | 0.02744 |
11 | 0.20986 | ND | ND | ND | 0.09034 | 0.02731 |
12 | 0.03057 | ND | ND | ND | 0.03284 | 0.03751 |
13 | 0.02781 | ND | ND | ND | 0.03291 | ND |
14 | 0.05944 | ND | ND | ND | 0.03285 | ND |
15 | 0.04056 | ND | ND | ND | 0.08740 | ND |
16 | ND | ND | ND | ND | 0.05087 | ND |
17 | ND | ND | ND | ND | 0.03296 | ND |
18 | ND | ND | ND | ND | 0.04901 | ND |
Average | 0.06129 | 0.02139 | 0.10337 | 0.03200 | 0.04365 | 0.03202 |
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Ramírez-Bustos, I.I.; López-Martínez, V.; Juarez-Lopez, P.; Alía-Tejacal, I.; Guillén-Sánchez, D.; Saldarriaga-Noreña, H.; León-Rivera, I. Monitoring of Pesticides in the Cultivation of Nopal Vegetable (Opuntia ficus-indica (L.)) Mill, Morelos, México. Agriculture 2018, 8, 174. https://doi.org/10.3390/agriculture8110174
Ramírez-Bustos II, López-Martínez V, Juarez-Lopez P, Alía-Tejacal I, Guillén-Sánchez D, Saldarriaga-Noreña H, León-Rivera I. Monitoring of Pesticides in the Cultivation of Nopal Vegetable (Opuntia ficus-indica (L.)) Mill, Morelos, México. Agriculture. 2018; 8(11):174. https://doi.org/10.3390/agriculture8110174
Chicago/Turabian StyleRamírez-Bustos, Irene Iliana, Víctor López-Martínez, Porfirio Juarez-Lopez, Irán Alía-Tejacal, Dagoberto Guillén-Sánchez, Hugo Saldarriaga-Noreña, and Ismael León-Rivera. 2018. "Monitoring of Pesticides in the Cultivation of Nopal Vegetable (Opuntia ficus-indica (L.)) Mill, Morelos, México" Agriculture 8, no. 11: 174. https://doi.org/10.3390/agriculture8110174
APA StyleRamírez-Bustos, I. I., López-Martínez, V., Juarez-Lopez, P., Alía-Tejacal, I., Guillén-Sánchez, D., Saldarriaga-Noreña, H., & León-Rivera, I. (2018). Monitoring of Pesticides in the Cultivation of Nopal Vegetable (Opuntia ficus-indica (L.)) Mill, Morelos, México. Agriculture, 8(11), 174. https://doi.org/10.3390/agriculture8110174