301
Views
6
CrossRef citations to date
0
Altmetric
Articles

Effects of the cooking modes on commonly used pesticides residue in vegetables and their chronic dietary exposure risk in South China

&
Pages 121-130 | Received 05 May 2019, Accepted 02 Oct 2019, Published online: 29 Oct 2019

References

  • Albaseer SS. 2019. Factors controlling the fate of pyrethroids residues during post-harvest processing of raw agricultural crops: an overview. Food Chem. 295:58–63.
  • Alegbeleye OO, Guimaraes JT, Cruz AG, Sant’Ana AS. 2018. Hazards of a ‘healthy’ trend? An appraisal of the risks of raw milk consumption and the potential of novel treatment technologies to serve as alternatives to pasteurization. Trends Food Sci Technol. 82:148–166.
  • Anderson JC, Dubetz C, Palace VP. 2015. Neonicotinoids in the Canadian aquatic environment: A literature review on current use products with a focus on fate, exposure, and biological effects. Sci Total Environ. 505:409–422.
  • Angelica Varela-Martinez D, Angel Gonzalez-Curbelo M, Gonzalez-Salamo J, Hernandez-Borges J. 2019. Analysis of multiclass pesticides in dried fruits using QuEChERS-gas chromatography tandem mass spectrometry. Food Chem. 1:297.
  • Begnini Konatu FR, Sales Fontes Jardim IC. 2018. Development and validation of an analytical method for multiresidue determination of pesticides in lettuce using QuEChERS-UHPLC-MS/MS. J Sep Sci. 41:1726–1733.
  • Boobis A, Cerniglia C, Chicoine A, Fattori V, Lipp M, Reuss R, Verger P, Tritscher A. 2017. Characterizing chronic and acute health risks of residues of veterinary drugs in food: latest methodological developments by the joint FAO/WHO expert committee on food additives. Crit Rev Toxicol. 47:889–903.
  • Browning CJ, Qiu Z, Yang H, Zhang T, Thomas SA. 2019. Food, eating, and happy aging: the perceptions of older chinese people. Front Public Health. 5:7.
  • Caldas ED, De Souza MV, Jardim ANO. 2011. Dietary risk assessment of organophosphorus and dithiocarbamate pesticides in a total diet study at a Brazilian university restaurant. Food Addit Contam Part A. 28:71–79.
  • Chambolle M. 1999. Assessment of extreme levels of chronic food intakes. Regul Toxicol Pharmacol. 30:S13–S18.
  • Chen Y, Guo M, Liu X, Xu J, Dong F, Wu X, Li B, Zheng Y. 2018. Determination and dissipation of afidopyropen and its metabolite in wheat and soil using QuEChERS-UHPLC-MS/MS. J Sep Sci. 41:1674–1681.
  • Damalas CA, Koutroubas SD. 2016. Farmers’ exposure to pesticides: Toxicity types and ways of prevention. Toxics. 4:1.
  • Fang QK, Shi YH, Cao HQ, Tong Z, Xiao JJ, Liao M, Wu XW, Hua RM. 2017. Degradation dynamics and dietary risk assessments of two neonicotinoid insecticides during Lonicera japonica planting, drying, and tea brewing processes. J Agric Food Chem. 65:1483–1488.
  • Hamilton D, Ambrus A, Dieterle R, Felsot A, Harris C, Petersen B, Racke K, Wong SS, Gonzalez R, Tanaka K, et al. 2004. Pesticide residues in food - acute dietary exposure. Pest Manag Sci. 60:311–339.
  • Hoelzel CS, Tetens JL, Schwaiger K. 2018. Unraveling the role of vegetables in spreading antimicrobial-resistant bacteria: A need for quantitative risk assessment. Foodborne Pathog Dis. 15:671–688.
  • Hou F, Teng PP, Liu FM, Wang WZ. 2017. Tebuconazole and azoxystrobin residue behaviors and distribution in field and cooked peanut. J Agric Food Chem. 65:4484–4492.
  • Jardim ANO, Mello DC, Brito AP, van der Voet H, Boon PE, Caldas ED. 2018. Probabilistic dietary risk assessment of triazole and dithiocarbamate fungicides for the Brazilian population. Food Chem Toxicol. 118:317–327.
  • Kim C, Ryu HD, Chung EG, Kim Y, Lee JK. 2018a. A review of analytical procedures for the simultaneous determination of medically important veterinary antibiotics in environmental water: sample preparation, liquid chromatography, and mass spectrometry. J Environ Manage. 217:629–645.
  • Kim J, Mackay D, Whelan MJ. 2018b. Predicted persistence and response times of linear and cyclic volatile methylsiloxanes in global and local environments. Chemosphere. 195:325–335.
  • Kuck KH, Leadbeater A, Gisi U. 2012. FRAC mode of action classification and resistance risk of fungicides. USA: Modern Crop Protection Compounds (USA), Wiley; p: 415–432.
  • Lamichhane JR, Arendse W, Dachbrodt-Saaydeh S, Kudsk P, Roman JC, van Bijsterveldt-Gels JEM, Wick M, Messean A. 2015. Challenges and opportunities for integrated pest management in Europe: A telling example of minor uses. Crop Prot. 74:42–47.
  • Li F, Yuan YQ, Meng P, Wu M, Li SG, Chen B. 2017. Probabilistic acute risk assessment of cumulative exposure to organophosphorus and carbamate pesticides from dietary vegetables and fruits in Shanghai populations. Food Addit Contam Part A. 34:819–831.
  • Malheiro R, Casal S, Lamas H, Bento A, Pereira JA. 2012. Can tea extracts protect extra virgin olive oil from oxidation during microwave heating? Food Res Int. 48:148–154.
  • Morelli G, Ricci R. 2019. Is raw food better? Critical appraisal of BARF diet. Summa, Animali Da Compagnia. 36:25–31.
  • Nasreddine L, Rehaime M, Kassaify Z, Rechmany R, Jaber F. 2016. Dietary exposure to pesticide residues from foods of plant origin and drinks in Lebanon. Environ Monit Assess. 188:485.
  • Notarnicola B, Hayashi K, Curran MA, Huisingh D. 2012. Progress in working towards a more sustainable agri-food industry. J Clean Prod. 28:1–8.
  • Oerke EC. 2006. Crop losses to pests. J Agric Sci. 144:31–43.
  • Oliveira Jardim AN, Brito AP, van Donkersgoed G, Boon PE, Caldas ED. 2018. Dietary cumulative acute risk assessment of organophosphorus, carbamates and pyrethroids insecticides for the Brazilian population. Food Chem Toxicol. 112:108–117.
  • Pannacci E, Lattanzi B, Tei F. 2017. Non-chemical weed management strategies in minor crops: A review. Crop Prot. 96:44–58.
  • Penny ME, Meza KS, Creed-Kanashiro HM, Marin RM, Donovan J. 2017. Fruits and vegetables are incorporated into home cuisine in different ways that are relevant to promoting increased consumption. Matern Child Nutr. 13: 3, e12356.
  • Popp J, Peto K, Nagy J. 2013. Pesticide productivity and food security. A review. Agron Sustain Dev. 33:243–255.
  • Qian JP, Shi C, Wang SS, Song YZ, Fan BL, Wu XM. 2018. Cloud-based system for rational use of pesticide to guarantee the source safety of traceable vegetables. Food Control. 87:192–202.
  • Roth K. 2007. Your daily bread. Chemie in Unserer Zeit. 41:400–409.
  • Saint-Hilaire M, Inthavong C, Bertin T, Lavison-Bompard G, Guerin T, Fournier A, Feidt C, Rychen G, Parinet J. 2018. Development and validation of an HPLC-MS/MS method with QuEChERS extraction using isotopic dilution to simultaneously analyze chlordecone and chlordecol in animal livers. Food Chem. 252:147–153.
  • Santarelli GA, Migliorati G, Pomilio F, Marfoglia C, Centorame P, D’Agostino A, D’Aurelio R, Scarpone R, Battistelli N, Di Simone F, et al. 2018. Assessment of pesticide residues and microbial contamination in raw leafy green vegetables marketed in Italy. Food Control. 85:350–358.
  • Sieke C, Michalski B, Kuhl T. 2018. Probabilistic dietary risk assessment of pesticide residues in foods for the German population based on food monitoring data from 2009 to 2014. J Expo Sci Environ Epid. 28:46–54.
  • Thiollet-Scholtus M, Bockstaller C. 2015. Using indicators to assess the environmental impacts of wine growing activity: the INDIGO (R) method. Eur J Agron. 62:13–25.
  • This H. 2009. Molecular gastronomy, a scientific look at cooking. Acc Chem Res. 42:575–583.
  • Upadhyaya MK, Blackshaw RE. 2007. Non-chemical weed management: synopsis, integration and the future. UK: CABI; p: 201–209.
  • Wang M, Guckland A, Murfitt R, Ebeling M, Sprenger D, Foudoulakis M, Koutsaftis A. 2019. Relationship between magnitude of body weight effects and exposure duration in mammalian toxicology studies and implications for ecotoxicological risk assessment. Environ Sci Eur. 17:31.
  • Xue JY, Pan DD, Li M, Wu XW, Wang XG, Hua RM. 2018. Degradation of amisulbrom and its metabolite IT-4 in cucumber under field conditions and processing. Int J Environ Anal Chem. 98:67–81.
  • Yang G, Li J, Wang Y, Chen C, Zhao H, Shao K. 2018. Quantitative ecotoxicity analysis for pesticide mixtures using benchmark dose methodology. Ecotoxicol Environ Saf. 159:94–101.
  • Yang GL, Wang W, Liang SM, Yu YJ, Zhao HY, Wang Q, Qian YZ. 2017. Pesticide residues in bayberry (Myrica rubra) and probabilistic risk assessment for consumers in Zhejiang, China. J Integr Agric. 16:2101–2109.
  • Yuan Y, Chen C, Zheng C, Wang X, Yang G, Wang Q, Zhang Z. 2014. Residue of chlorpyrifos and cypermethrin in vegetables and probabilistic exposure assessment for consumers in Zhejiang Province, China. Food Control. 36:63–68.
  • Zou Y, Xie C, Fan G, Gu Z, Han Y. 2010. Optimization of ultrasound-assisted extraction of melanin from Auricularia auricula fruit bodies. Innov Food Sci Emerg Technol. 11:611–615.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.