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Liquid Chromatography

Simultaneous Determination of Prochloraz and Three Metabolites in Fruits and Vegetables by Liquid Chromatography – Tandem Mass Spectrometry (LC-MS/MS)

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Pages 355-370 | Received 21 Apr 2019, Accepted 30 Jul 2019, Published online: 14 Aug 2019

References

  • Baumann, L., S. Knörr, S. Keiter, T. Nagel, H. Segner, and T. Braunbeck. 2015. Prochloraz causes irreversible masculinization of zebrafish (Danio rerio). Environmental Science and Pollution Research 22(21):16417–16422. doi: 10.1007/s11356-014-3486-3.
  • Blasco, C., Y. Picó, J. Mañes, and G. Font. 2002. Determination of fungicide residues in fruits and vegetables by liquid chromatography–atmospheric pressure chemical ionization mass spectrometry. Journal of Chromatography A 947(2):227–235. doi: 10.1016/S0021-9673(02)00009-2.
  • Brancato, A., D. L. C. Brocca, C. Cabrera, L. De Lentdecker, L. Ferreira, J. Greco, S. Janossy, D. Jarrah, R. Kardassi, C. Leuschner, et al. 2018. Modification of the existing maximum residue levels for prochloraz in various commodities. EFSA Journal 16(4):5241. doi: 10.2903/j.efsa.2018.5241.
  • Cabras, P., and A. Angioni. 2000. Pesticide residues in grapes, wine, and their processing products. Journal of Agricultural and Food Chemistry 48(4):967–973. doi: 10.1021/jf990727a.
  • Cengiz, M. F., M. Catal, F. Erler, and A. K. Bilgin. 2014. Rapid and sensitive determination of the prochloraz residues in the cultivated mushroom, Agaricus bisporus (Lange) Imbach. Analytical Methods 6(6):1970–1976. doi: 10.1039/c3ay42293c.
  • Copping, L. G., R. J. Birchmore, K. Wright, and D. H. Godson. 1984. Structure-activity relationships in a group of imidazole-1-carbox-amides. Pesticide Science 15(3):280–284. doi: 10.1002/ps.2780150310.
  • De Oliveira Arias, J. L., C. Rombaldi, S. Caldas, and E. G. Primel. 2014. Alternative sorbents for the dispersive solid-phase extraction step in quick, easy, cheap, effective, rugged and safe method for extraction of pesticides from rice paddy soils with determination by liquid chromatography tandem mass spectrometry. Journal of Chromatography A 1360:66–75. doi: 10.1016/j.chroma.2014.07.082.
  • De Paoli, M., T. M. Barbina, V. Damiano, D. Fabbro, and R. Bruno. 1997. Simplified determination of combined residues of prochloraz and its metabolites in vegetable, fruit and wheat samples by gas chromatography. Journal of Chromatography A 765(1):127–131. doi: 10.1016/S0021-9673(96)00995-8.
  • Debrauwer, L., E. Rathahao, G. Boudry, M. Baradat, and J. P. Cravedi. 2001. Identification of the major metabolites of prochloraz in rainbow trout by liquid chromatography and tandem mass spectrometry. Journal of Agricultural and Food Chemistry 49(8):3821–3826. doi: 10.1021/jf0100550.
  • Dmytriyeva, O., B. Klementiev, V. Berezin, and E. Bock. 2013. Prenatal prochloraz treatment significantly increases pregnancy length and reduces offspring weight but does not affect social-olfactory memory in rats. Experimental and Toxicologic Pathology 65(5):591–593. doi: 10.1016/j.etp.2012.06.001.
  • Fan, X., S. Zhao, X. Chen, and J. Hu. 2018. Simultaneous determination of pyraclostrobin, prochloraz, and its metabolite in apple and soil via RRLC-MS/MS. Food Analytical Methods 11(5):1312–1320. doi: 10.1007/s12161-017-1065-1.
  • Fang, Q., G. Yao, Y. Shi, C. Ding, Y. Wang, X. Wu, R. Hua, and H. Cao. 2017. Residue dynamics and risk assessment of prochloraz and its metabolite 2,4,6-trichlorophenol in apple. Molecules 22(10):1780. doi: 10.3390/molecules22101780.
  • Frenich, A. G., R. Romero-González, M. L. Gómez-Pérez, and J. L. M. Vidal. 2011. Multi-mycotoxin analysis in eggs using a QuEChERS-based extraction procedure and ultra-high-pressure liquid chromatography coupled to triple quadrupole mass spectrometry. Journal of Chromatography A 1218(28):4349–4356. doi: 10.1016/j.chroma.2011.05.005.
  • Fuse, J., H. Kanamori, and N. Ideyoshi. 2000. Determination of prochloraz and its metabolites in fruits and vegetables by GC. Food Hygiene and Safety Science (Shokuhin Eiseigaku Zasshi) 41(1):61–65. doi: 10.3358/shokueishi.41.61.
  • Gao, J., D. Hu, Y. Zhang, H. Li, and Q. Guo. 2011. Determination of residuce of prochloraz and its metabolite in orange juice. Pesticide Science and Administration 32:35–39.
  • Gilbert-López, B., L. Jaén-Martos, J. F. García-Reyes, M. Villar-Pulido, L. Polgar, N. Ramos-Martos, and A. Molina-Díaz. 2012. Study on the occurrence of pesticide residues in fruit-based soft drinks from the EU market and morocco using liquid chromatography–mass spectrometry. Food Control 26(2):341–346. doi: 10.1016/j.foodcont.2012.01.025.
  • Hepperle, J., D. Mack, I. Sigalov, S. Schüler, and M. Anastassiades. 2015. Analysis of “Amitraz (sum)” in pears with incurred residues – Comparison of the approach covering the individual metabolites via LC–MS/MS with the approach involving cleavage to 2,4-dimethylaniline. Food Chemistry 166(1):240–247. doi: 10.1016/j.foodchem.2014.06.003.
  • ICAMA. 2007. Standard operating procedures on pesticide registration residue field trials. Beijing: Standards Press of China.
  • Li, L., W. Li, D. Qin, and F. Liu. 2009. Application of graphitized carbon black to the QuEChERS method for pesticide multiresidue analysis in spinach. Journal of AOAC International 92(2):538–547. doi: 10.1111/j.1365-2621.2008.01903.x.
  • Li, M., X. Liu, F. Dong, J. Xu, Z. Kong, Y. Li, and Y. Zheng. 2013. Simultaneous determination of cyflumetofen and its main metabolite residues in samples of plant and animal origin using multi-walled carbon nanotubes in dispersive solid-phase extraction and ultrahigh performance liquid chromatography-tandem mass spectrome. Journal of Chromatography A 1300:95–103. doi: 10.1016/j.chroma.2013.05.052.
  • Li, R., C. Cai, J. Lu, Y. Gao, and F. Yang. 2015. Research progress of detection techniques for residues of prochloraz and its metabolites. Chinese Journal of Health Laboratory Technology 25:3011–3015.
  • Li, Y., F. Dong, X. Liu, J. Xu, J. Li, Z. Kong, X. Chen, X. Liang, and Y. Zheng. 2012. Simultaneous enantioselective determination of triazole fungicides in soil and water by chiral liquid chromatography/tandem mass spectrometry. Journal of Chromatography A 1224:51–60. doi: 10.1016/j.chroma.2011.12.044.
  • Liu, X., M. Shen, S. Li, and H. Chen. 2009. Residue dynamics of prochloraz and its metabolite 2,4,6-trichlorophenol in mushroom and soil. Chinese Journal of Pesticide Science 11:362–366.
  • Lundqvist, J., B. Hellman, and A. Oskarsson. 2016. Fungicide prochloraz induces oxidative stress and DNA damage in vitro. Food and Chemical Toxicology 91:36–41. doi: 10.1016/j.fct.2016.03.002.
  • Luo, F., Z. Lou, F. Tang, X. Zhang, G. Liu, and Z. Chen. 2010. Residue determination and dynamic research of prochloraz and it's metabolite in orange. Journal of Instrumental Analysis 29:730–734.
  • Ministry of Agriculture and Rural Affairs, P.R.C. 2018. NY/T 788-2018 Guideline for the testing of pesticide residues in crops. Beijing: China Agricultural Press.
  • Navickiene, S., and M. L. Ribeiro. 2005. An alternative LC-UV procedure for the determination of prochloraz residues in fruits. Journal of the Brazilian Chemical Society 16(2):157–162. doi: 10.1590/S0103-50532005000200006.
  • Ni, Y., H. Yang, H. Zhang, Q. He, S. Huang, M. Qin, S. Chai, H. Gao, and Y. Ma. 2018. Analysis of four sulfonylurea herbicides in cereals using modified Quick, Easy, Cheap, Effective, Rugged, and Safe sample preparation method coupled with liquid chromatography–tandem mass spectrometry. Journal of Chromatography A 1537:27–34. doi: 10.1016/j.chroma.2018.01.017.
  • Pavlidis, G., H. Karasali, and V. A. Tsihrintzis. 2019. Development and validation of a simple and efficient method for the determination of pendimethalin and its metabolite M455H001 in soil by liquid chromatography–tandem mass spectrometry (LC-MS/MS). Analytical Letters 52(4):685–696. doi: 10.1080/00032719.2018.1486849.
  • Polese, L., E. F .G. Jardim, S. Navickiene, N. M. Brito, and M. L. Ribeiro. 2006. Prochloraz residue levels in ginger submitted to Sportak 450 CE postharvest treatment. Eclética Química 31(2):59–39. doi: 10.1590/S0100-46702006000200009.
  • Sampaio, M. R. F., D. Tomasini, L. V. Cardoso, S. S. Caldas, F. A. Duarte, and E. G. Primel. 2013. A method for the determination of multiclass pesticides in sugarcane juice employing QuEChERS and LC-ESI-MS/MS. Analytical Methods 5(8):2028–2033. doi: 10.1039/c3ay40132d.
  • Thurman, E. M., I. Ferrer, J. A. Zweigenbaum, J. F. García-Reyes, M. Woodman, and A. R. Fernández-Alba. 2005. Discovering metabolites of post-harvest fungicides in citrus with liquid chromatography/time-of-flight mass spectrometry and ion trap tandem mass spectrometry. Journal of Chromatography A 1082(1):71–80. doi: 10.1016/j.chroma.2005.03.042.
  • Utture, S. C., K. Banerjee, S. S. Kolekar, S. Dasgupta, D. P. Oulkar, S. H. Patil, S. S. Wagh, P. G. Adsule, and M. A. Anuse. 2012. Food safety evaluation of buprofezin, dimethoate and imidacloprid residues in pomegranate. Food Chemistry 131(3):787–795. doi: 10.1016/j.foodchem.2011.09.044.
  • Wang, C., D. Gong, Y. Zou, and W. Zhao. 2006. Residue determination of prochloraz and its major metabolites by HPLC in paddy water and soil. Journal of Agro-Environment Science 4:1024–1028. doi: 10.1111/j.1744-7917.2006.00098.x.
  • Yuan, X., Y. Pan, M. Wang, and H. Dai. 2014. HPLC-MS/MS determination of residual amounts of prochloraz and 2,4,6-trichlorophenol in banana with solid phase extraction. Physical Testing and Chemical Analysis Part B:Chemical Analysis 50:151–155.
  • Yuan, X., Z. Peng, H. Zhou, and C. Liu. 2016. Degradation dynamics and safety evaluation of prochloraz in banana. Journal of Food Safety and Quality 7:209–215.
  • Zhang, Y., B. Xiang, Y. Dong, and J. Xu. 2013. Rapid determination of prochloraz in orange juice by near-infrared spectroscopy. Analytical Letters 46(17):2739–2751. doi: 10.1080/00032719.2013.811678.
  • Zhao, Y., S. Kang, L. Zhou, J. Luo, and C. Pan. 2013. Decay and residue dynamics of 25% prochloraz EC in Mandarin orange by simulating postharvest treatment at different storage temperatures. Journal of Food Processing and Preservation 37(5):496–502. doi: 10.1111/j.1745-4549.2012.00675.x.
  • Zhang, Q., Y. Yang, X. Liu, Y. Chen, D. Hu, and P. Lu. 2019. Simultaneous determination of flonicamid and its metabolites in tea by liquid chromatography–tandem mass spectrometry. Analytical Letters 52(6):948–961. doi: 10.1080/00032719.2018.1508294.

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