
OCCUPATION AND HEALTH ›› 2023, Vol. 39 ›› Issue (21): 3019-3024.
• Overview • Previous Articles
LUO Jia1,2, ZHOU Xiaolong1
Received:2023-04-19
Revised:2023-05-16
Online:2023-11-01
Published:2026-03-26
Contact:
ZHOU Xiaolong,Physician in charge,E-mail:476592012@qq.com
CLC Number:
LUO Jia, ZHOU Xiaolong. Research advance on pollution status and detection technology of neonicotinoids pesticides in water environmental systems. [J]OCCUPATION AND HEALTH, 2023, 39(21): 3019-3024.
| [1] 卢阳阳. 蔬菜中新烟碱类农药残留复合污染效应风险评估[D].上海:上海海洋大学食品工程,2017. [2] DORES E F,CARBO L,RIBEIRO M L,et al.Pesticide levels in ground and surface waters of primavera do leste region,mato grosso,brazil[J]. J Chromatogr Sci,2008,46(7):585-590. [3] TOMIZAWA M,CASIDA J E.Neonicotinoid insecticide toxicology:Mechanisms of selective action[J].Annu Rev Pharmacol Toxicol,2005, 45:247-268. [4] THOMPSON D A,LEHMLER H J,KOLPIN D W,et al.A critical review on the potential impacts of neonicotinoid insecticide use:Current knowledge of environmental fate,toxicity,and implications for human health[J].Environ Sci Process Impacts,2020,22(6):1315-1346. [5] JESCHKE P,NAUEN R,SCHINDLER M,et al.Overview of the status and global strategy for neonicotinoids[J].J Agric Food Chem,2011,59(7):2897-2908. [6] 谭颖,张琪,赵成,等.蔬菜水果中的新烟碱类农药残留量与人群摄食暴露健康风险评价[J].生态毒理学报,2016,11(6):67-81. [7] COX-FOSTER D L,CONLAN S,HOLMES E C,et al.A metagenomic survey of microbes in honey bee colony collapse disorder[J].Science,2007,318(5848):283-287. [8] HALLMANN C A,FOPPEN R P,VAN TURNHOUTT C A,et al.Declines in insectivorous birds are associated with high neonicotinoid concentrations[J].Nature,2014,511(7509):341-343. [9] CARON-BEAUDOIN E,VIAU R,HUDON-THIBEAULT A A,et al.The use of a unique co-culture model of fetoplacental steroidogenesis as a screening tool for endocrine disruptors:The effects of neonicotinoids on aromatase activity and hormone production[J].Toxicol Appl Pharmacol,2017,332:15-24. [10] CARON-BEAUDION E,VIAU R,SANDESON J T.Effects of neonicotinoid pesticides on promoter-specific aromatase(CYP19) expression in Hs578t breast cancer cells and the role of the VEGF pathway[J].Environ Health Perspect,2018,126(4):47014. [11] KIMURA-KURODA J,KOMUTA Y,KURODA Y,et al.Nicotine-like effects of the neonicotinoid insecticides acetamiprid and imidacloprid on cerebellar neurons from neonatal rats[J].PLoS One,2012,7(2):e32432. [12] GU Y H,LI Y,HUANG X F,et al.Reproductive effects of two neonicotinoid insecticides on mouse sperm function and early embryonic development in vitro[J].PLoS One,2013,8(7):e70112. [13] GONSIOROSKI A,MOURIKES V E,FLAWS J A.Endocrine disruptors in water and their effects on the reproductive system[J].Int J Mol Sci,2020,21(6):1929. [14] CARMICHAEL S L,YANG W,ROBERTS E,et al.Residential agricultural pesticide exposures and risk of selected congenital heart defects among offspring in the San Joaquin Valley of California[J].Environ Res,2014,135:133-138. [15] YANG W,CARMICHAEL S L,ROBERTS E M,et al.Residential agricultural pesticide exposures and risk of neural tube defects and orofacial clefts among offspring in the San Joaquin Valley of California[J].Am J Epidemiol,2014,179(6):740-748. [16] KEIL A P,DANIELS J L,HERTZ-PICCIOTTO I.Autism spectrum disorder,flea and tick medication,and adjustments for exposure misclassification:The CHARGE(CHildhood Autism Risks from Genetics and Environment)case-control study[J].Environ Health,2014,13(1):3. [17] TOMIZAWA M,CASIDA J E.Imidacloprid,thiacloprid,and their imine derivatives up-regulate the alpha 4 beta 2 nicotinic acetylcholine receptor in M10 cells[J].Toxicol Appl Pharmacol,2000,169(1):114-120. [18] FELSOT A S,CONE W,YU J,et al.Distribution of imidacloprid in soil following subsurface drip chemigation[J].Bull Environ Contam Toxicol,1998,60(3):363-370. [19] MORRISSEY C A,MINEAU P,DEVRIES J H,et al.Neonicotinoid contamination of global surface waters and associated risk to aquatic invertebrates:A review[J].Environ Int,2015,74:291-303. [20] ZHANG H,ZHANG N,ZHOU W,et al.Profiles of neonicotinoid insecticides and their metabolites in paired saliva and periodontal blood samples in human from South China:Association with oxidative stress markers[J].Ecotoxicol Environ Saf,2021,212:112001. [21] ULLOA-CHACON P,JARAMILLO G I.Effects of boric acid,fipronil,hydramethylnon,and diflubenzuron baits on colonies of ghost ants(Hymenoptera:Formicidae)[J].J Econ Entomol,2003,96(3):856-862. [22] 李晓彤. 典型海湾、河口水环境中新烟碱类和氟虫腈杀虫剂的检测与分布研究[D].青岛:自然资源部第一海洋研究所,2019. [23] KLARICH K L,PFLUG N C,DEWALD E M.Occurrence of neonicotinoid insecticides in finished drinking water and fate during drinking water treatment[J].Environ Sci Tech Let,2017,4(5):168-173. [24] MAHAI G,WAN Y,XIA W,et al.A nationwide study of occurrence and exposure assessment of neonicotinoid insecticides and their metabolites in drinking water of China[J].Water Res,2021,189:116630. [25] MONTIEL-LEON J M,MUNOZ G,VO D S,et al.Widespread occurrence and spatial distribution of glyphosate,atrazine,and neonicotinoids pesticides in the St.Lawrence and tributary rivers[J].Environ Pollut,2019,250:29-39. [26] SULTANA T,MURRAY C,KLEYWEGT S,et al.Neonicotinoid pesticides in drinking water in agricultural regions of southern Ontario,Canada[J].Chemosphere,2018,202:506-513. [27] SANCHEZ-BAYO F,HYNE R V.Detection and analysis of neonicotinoids in river waters--development of a passive sampler for three commonly used insecticides[J].Chemosphere,2014,99:143-151. [28] HLADIK M L,CORSI S R,KOLPIN D W,et al.Year-round presence of neonicotinoid insecticides in tributaries to the Great Lakes,USA[J].Environ Pollut,2018,235:1022-1029. [29] STARNER K,GOH K S.Detections of the neonicotinoid insecticide imidacloprid in surface waters of three agricultural regions of California,USA,2010-2011[J].Bull Environ Contam Toxicol,2012,88(3):316-321. [30] HLADIK M L,KOLPIN D W.First national-scale reconnaissance of neonicotinoid insecticides in streams across the USA[J].Environ Chem, 2016,13(1):12-20. [31] BONMATIN J M,NOOME D A,MORENO H,et al.A survey and risk assessment of neonicotinoids in water,soil and sediments of Belize[J].Environ Pollut,2019,249:949-958. [32] ZHANG C,TIAN D,YI X,et al.Occurrence,distribution and seasonal variation of five neonicotinoid insecticides in surface water and sediment of the Pearl Rivers,South China[J].Chemosphere,2019,217:437-446. [33] HE Y,ZHANG B,WU Y,et al.A pilot nationwide baseline survey on the concentrations of Neonicotinoid insecticides in tap water from China:Implication for human exposure[J].Environ Pollut,2021,291:118117. [34] KIM J,WANG W,LEE S,et al.Concentrations and distributions of neonicotinoids in drinking water treatment plants in South Korea[J].Environ Pollut,2021,288:117767. [35] CASILLAS A,DE LA TORRE A,NAVARRO I,et al.Environmental risk assessment of neonicotinoids in surface water[J].Sci Total Environ,2022,809:151161. [36] WAN Y,WANG Y,XIA W,et al.Neonicotinoids in raw,finished,and tap water from Wuhan,Central China:Assessment of human exposure potential[J].Sci Total Environ,2019,675:513-519. [37] ROSSI S,SABATINI A G,CENCIARINI R,et al.Use of High-performance liquid chromatography-UV and Gas chromatography-mass spectrometry for determination of the imidacloprid content of honeybees,pollen,paper filters,grass,and flowers[J].Chromatographia,2005, 61(3-4):58-63. [38] TANG J,ZHANG M,CHENG G H,et al.Development and application of molecularly imprinted polymer as solid phase extraction of imidacloprid in environmental samples[J].J Liq Chromatogr Relat Technol,2009,32:59-71. [39] YANG D,YIN W,CONG L,et al.Synthesis and characterization of a molecularly imprinted polymer for preconcentration of clothianidin in environmental samples[J].Anal Lett,2014,47:2613-2627. [40] VICHAPONG J,BURAKHAM R,SRIJARANAI S.Vortex-assisted surfactant-enhanced-emulsification liquid-liquid microextraction with solidification of floating organic droplet combined with HPLC for the determination of neonicotinoid pesticides[J].Talanta,2013,117:221-228. [41] MATEU-SANCHEZ M,MORENO M,ARREBOLA F J,et al.Analysis of acetamiprid in vegetables using gas chromatography-tandem mass spectrometry[J].Anal Sci,2003,19(5):701-704. [42] MACDONALD L,MEYER T.Determination of imidacloprid and triadimefon in white pine by gas chromatography/mass spectrometry[J].J Agric Food Chem,1998,46:3133-3138. [43] EC.Commission Implementing Regulation(EU) 2015/495 of 20 March 2015 establishing a watch list of substances for unionwide monitoring in the field of water policy pursuant to directive 2008/105/EC of the European Parliament and of the Council[S].Brussels:Off.J Eur.Union,2015:1-3. [44] WATANABE E.Review of sample preparation methods for chromatographic analysis of neonicotinoids in agricultural and environmental matrices:From classical to state-of-the-art methods[J].J Chromatogr A, 2021,1643:462042. [45] PIETRZAK D,WATOR K,PEKALA D,et al.LC-MS/MS method validation for determination of selected neonicotinoids in groundwater for the purpose of a column experiment[J].J Environ Sci Health B,2019, 54(5):424-431. [46] HAO C,MORSE D,ZHAO X,et al.Liquid chromatography/tandem mass spectrometry analysis of neonicotinoids in environmental water[J].Rapid Commun Mass Spectrom,2015,29(23):2225-2232. [47] LI X,CHEN J,HE X,et al.Simultaneous determination of neonicotinoids and fipronil and its metabolites in environmental water from coastal bay using disk-based solid-phase extraction and high-performance liquid chromatography-tandem mass spectrometry[J].Chemosphere,2019,234:224-231. [48] MONTIEL-LEON J M,DUY S V,MUNOZ G,et al.Evaluation of on-line concentration coupled to liquid chromatography tandem mass spectrometry for the quantification of neonicotinoids and fipronil in surface water and tap water[J].Anal Bioanal Chem,2018,410(11):2765-2779. [49] MORRISON L M,RENAUD J B,SABOURIN L,et al.High-throughput quantitation of neonicotinoids in lyophilized surface water by LC-APCI-MS/MS[J].J AOAC Int,2018,101(6):1940-1947. [50] ETTIENE G,BAUZA R,PLATA M R,et al.Determination of neonicotinoid insecticides in environmental samples by micellar electrokinetic chromatography using solid-phase treatments[J].Electrophoresis,2012,33(19-20):2969-2977. [51] LI K,LI Q X.Development of an enzyme-linked immunosorbent assay for the insecticide imidacloprid[J].J Agric Food Chem,2000,48(8):3378-3382. [52] LEE J K,AHN K C,PARK O S,et al.Development of an ELISA for the detection of the residues of the insecticide imidacloprid in agricultural and environmental samples[J].J Agric Food Chem,2001,49(5):2159-2167. [53] WANG R,WANG Z,YANG H,et al.Highly sensitive and specific detection of neonicotinoid insecticide imidacloprid in environmental and food samples by a polyclonal antibody-based enzyme-linked immunosorbent assay[J].J Sci Food Agric,2012,92(6):1253-1260. [54] GIROTTI S,MAIOLINI E,GHINI S,et al.Quantification of imidacloprid in honeybees:Development of a chemiluminescent ELISA[J].Anal Lett,2010,43(3):466-475. [55] XU T,WEI K Y,WANG J,et al.Quantitative analysis of the neonicotinoid insecticides imidacloprid and thiamethoxam in fruit juices by enzyme-linked immunosorbent assays[J].J AOAC Int,2010,93(1):12-18. [56] WANATABLE S,ITO S,KAMATA Y,et al.Development of competitive enzyme-linked immunosorbent assays(ELISAs) based on monoclonal antibodies for chloronicotinoid insecticides imidacloprid and acetamiprid[J].Anal Chim Acta,2001,427(2):211-219. [57] KIM H J,SHELVER W L,LI Q X.Monoclonal antibody-based enzyme-linked immunosorbent assay for the insecticide imidacloprid[J].Anal Chim Acta,2004,509(1):111-118. [58] ZHAO S,DONG J,JEONG H J,et al.Rapid detection of the neonicotinoid insecticide imidacloprid using a quenchbody assay[J].Anal Bioanal Chem,2018,410(17):4219-4226. [59] 贾红青. 面向现场的有机磷类和新烟碱类农残的新型快速检测技术[D].太原:太原理工大学,2019. |
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