|本期目录/Table of Contents|

[1]王卉,刘庆菊,韩平.基于液相色谱串联高分辨质谱的动物源农产品兽药残留检测研究综述[J].江苏农业科学,2020,48(2):57-64.
 Wang Hui,et al.Detection of veterinary drug residues in animal origin agro-products based on liquid chromatography tandem high resolution mass spectrometry (LC-HRMS):a review[J].Jiangsu Agricultural Sciences,2020,48(2):57-64.
点击复制

基于液相色谱串联高分辨质谱的动物源农产品兽药残留检测研究综述(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第48卷
期数:
2020年第2期
页码:
57-64
栏目:
专论与综述
出版日期:
2020-03-05

文章信息/Info

Title:
Detection of veterinary drug residues in animal origin agro-products based on liquid chromatography tandem high resolution mass spectrometry (LC-HRMS):a review
作者:
王卉刘庆菊韩平
1.北京农业质量标准与检测技术研究中心,北京 100097; 2.农业农村部农产品质量安全风险评估实验室(北京),北京 100097;
3.农产品产地环境监测北京市重点实验室,北京 100097
Author(s):
Wang Huiet al
关键词:
液相色谱(LC)-高分辨质谱(HRMS)动物源农产品兽药残留样品前处理色谱分离质谱检测数据处理
Keywords:
-
分类号:
TS207.5+3
DOI:
-
文献标志码:
A
摘要:
液相色谱-高分辨质谱(LC-HRMS)具有高分辨率、高通量、高精确度等优势,在动物源农产品的兽药残留检测研究中显示出极大的潜力。本文综述了2014—2018年LC-HRMS检测动物源农产品中兽药残留的应用研究进展。其中,QuEChERS方法和有机溶剂提取法是常用的兽药残留提取方法,提取液用PSA、C18和氧化铝等吸附剂净化,绿色的样品前处理方法是未来的发展趋势;液相系统和色谱柱的改良,使兽药化合物得到更好的分离,提高了质谱检测的灵敏度;HRMS分辨率和灵敏度的提高,增强了LC-HRMS定性定量分析动物源农产品中兽药残留的能力;数据处理软件的开发和应用,提高了LC-HRMS在兽药残留检测中的工作效率。尽管LC-HRMS在兽药残留检测中取得了进展,但仍存在不足和发展空间。
Abstract:
-

参考文献/References:

[1]王小平. 兽药残留对生态环境的影响及人体的危害[J]. 山东畜牧兽医,2016(6):47-48.
[2]童建军,孙稳平,朱育红. 兽药残留危害分析与管控[J]. 中国畜禽种业,2017(4):34-37.
[3]汤晓艳,郑锌,王敏,等. 畜禽产品兽药残留限量标准现状与发展方向[J]. 食品科学技术学报,2017(4):8-12.
[4]Kaufmann A. The current role of high-resolution mass spectrometry in food analysis[J]. Analytical and Bioanalytical Chemistry,2012,403(5):1233-1249.
[5]Masia A,Suarez-Varela M M,Llopis-Gonzalez A,et al. Determination of pesticides and veterinary drug residues in food by liquid chromatography-mass spectrometry:a review[J]. Analytica Chimica Acta,2016,936:40-61.
[6]Rochat B. From targeted quantification to untargeted metabolomics:why LC-high-resolution-MS will become a key instrument in clinical labs[J]. Trends in Analytical Chemistry,2016,84(suppl1):151-164.
[7]Rathahao-Paris E,Alves S,Junot C A. High resolution mass spectrometry for structural identification of metabolites in metabolomics[J]. Metabolomics,2016,12(1):10.
[8]Gao P,Xu G W. Mass-spectrometry-based microbial metabolomics:recent developments and applications[J]. Analytical and Bioanalytical Chemistry,2015,407(3):669-680.
[9]Rainville P D,Theodoridis G,Plumb R S. Advances in liquid chromatography coupled to mass spectrometry for metabolic phenotyping[J]. Trends in Analytical Chemistry,2014,61:181-191.
[10]Delatour T,Racault L,Bessaire T A. Screening of veterinary drug residues in food by LC-MS/MS. Background and challenges[J]. Food Additives and Contaminants Part A(Chemistry Analysis Control Exposure & Risk Assessment),2018,35(4):632-645.
[11]Fu Y Q,Zhao C X,Lu X,et al. Nontargeted screening of chemical contaminants and illegal additives in food based on liquid chromatography-high resolution mass spectrometry[J]. Trends in Analytical Chemistry,2017,96(SI):89-98.
[12]Kaufmann A,Walker S. Comparison of linear intrascan and interscan dynamic ranges of orbitrap and ion-mobility time-of-flight mass spectrometers[J]. Rapid Communications in Mass Spectrometry,2017,31(22):1915-1926.
[13]Fu Y,Zhou Z,Kong H,et al. Non-targeted screening method for illegal additives based on ultra high performance liquid chromatography-high resolution mass spectrometry[J]. Analytical Chemistry,2016,88(17):8870-8877.
[14]Kaufmann A,Butcher P,Maden K,et al. Quantitative and confirmative performance of liquid chromatography coupled to high-resolution mass spectrometry compared to tandem mass spectrometry[J]. Rapid Communications in Mass Spectrometry,2011,25(7):979-992.
[15]Morin L P,Mess J N,Garofolo F. Large-molecule quantification:sensitivity and selectivity head-to-head comparison of triple quadrupole with Q-TOF[J]. Bioanalysis,2013,5(10):1181-1193.
[16]Grund B,Marvin L,Rochat B. Quantitative performance of a quadrupole-orbitrap-MS in targeted LC-MS determinations of small molecules[J]. Journal of Pharmaceutical and Biomedical Analysis,2016,124:48-56.
[17]Kaufmann A,Butcher P,Maden K,et al. Determination of nitrofuran and chloramphenicol residues by high resolution mass spectrometry versus tandem quadrupole mass spectrometry[J]. Analytica Chimica Acta,2015,862:41-52.
[18]Moretti S,Dusi G,Giusepponi D A,et al. Screening and confirmatory method for multiclass determination of 62 antibiotics in meat[J]. Journal of Chromatography A,2016,1429:175-188.
[19]Cotton J,Leroux F,Broudin S,et al. High-resolution mass spectrometry associated with data mining tools for the detection of pollutants and chemical characterization of honey samples[J]. Journal of Agricultural and Food Chemistry,2014,62(46):11335-11345.
[20]Turnipseed S B,Lohne J J,Storey J M,et al. Challenges in implementing a screening method for veterinary drugs in milk using liquid chromatography quadrupole time-of-flight mass spectrometry[J]. Journal of Agricultural and Food Chemistry,2014,62(17):3660-3674.
[21]Lopez-Garcia M,Romero-Gonzalez R,Garrido F A. Determination of rodenticides and related metabolites in rabbit liver and biological matrices by liquid chromatography coupled to orbitrap high resolution mass spectrometry[J]. Journal of Pharmaceutical and Biomedical Analysis,2017,137:235-242.
[22]Lopez-Garcia M,Romero-Gonzalez R,Garrido F A. Determination of steroid hormones and their metabolite in several types of meat samples by ultra high performance liquid chromatography-orbitrap high resolution mass spectrometry[J]. Journal of Chromatography A,2018,1540:21-30.
[23]Chen Q,Pan X D,Huang B F,et al. Quantification of 16 β-lactams in chicken muscle by QuEChERS extraction and UPLC-Q-Orbitrap-MS with parallel reaction monitoring[J]. Journal of Pharmaceutical and Biomedical Analysis,2017,145:525-530.
[24]尹志强,宋月,柴婷婷,等. 液相色谱-串联质谱法应用于动物源性食品中多族药物筛查确证的研究进展[J]. 食品与发酵工业,2017(4):286-294.
[25]Xu C H,Chen G S,Xiong Z H,et al. Applications of solid-phase microextraction in food analysis[J]. Trends in Analytical Chemistry,2016,80(1/2):12-29.
[26]Romero-Gonzalez R,Arrebola L F J,Garrido F A. Sample treatment in pesticide residue determination in food by high-resolution mass spectrometry:are generic extraction methods the end of the road?[J]. Journal of AOAC International,2016,99(6):1395-1402.
[27]Chiesa L,Panseri S,Pasquale E,et al. Validated multiclass targeted determination of antibiotics in fish with high performance liquid chromatography-benchtop quadrupole orbitrap hybrid mass spectrometry[J]. Food Chemistry,2018,258:222-230.
[28]Cepurnieks G,Rjabova J,Zacs D A. The development and validation of a rapid method for the determination of antimicrobial agent residues in milk and meat using ultra performance liquid chromatography coupled to quadrupole - orbitrap mass spectrometry[J]. Journal of Pharmaceutical and Biomedical Analysis,2015,102:184-192.
[29]Saluti G,Diamanti I,Giusepponi D,et al. Simultaneous determination of aminoglycosides and colistins in food[J]. Food Chemistry,2018,266:9-16.
[30]Schenck F J,Hobbs J E. Evaluation of the quick,easy,cheap,effective,rugged,and safe (QuEChERS) approach to pesticide residue analysis[J]. Bulletin of Environmental Contamination and Toxicology,2004,73(1):24-30.
[31]Abdallah H,Arnaudguilhem C,Jaber F,et al. Multiresidue analysis of 22 sulfonamides and their metabolites in animal tissues using quick,easy,cheap,effective,rugged,and safe extraction and high resolution mass spectrometry (hybrid linear ion trap-orbitrap)[J]. Journal of Chromatography,2014,1355:61-72.
[32]Jia W,Shi L,Chu X,et al. A strategy for untargeted screening of macrolides and metabolites in bass by liquid chromatography coupled to quadrupole orbitrap mass spectrometry[J]. Food Chemistry,2018,262:110-117.
[33]Zhang Y Q,Li X,Liu X M,et al. Multi-class,multi-residue analysis of trace veterinary drugs in milk by rapid screening and quantification using ultra-performance liquid chromatography-quadrupole time-of-flight mass spectrometry[J]. Journal of Dairy Science,2015,98(12):8433-8444.
[34]Wang J,Leung D. The challenges of developing a generic extraction procedure to analyze multi-class veterinary drug residues in milk and honey using ultra-high pressure liquid chromatography quadrupole time-of-flight mass spectrometry[J]. Drug Testing and Analysis,2012,4(Supplement S1):103-111.
[35]Morales-Gutierrez F J,Hermo M P,Barbosa J,et al. High-resolution mass spectrometry applied to the identification of transformation products of quinolones from stability studies and new metabolites of enrofloxacin in chicken muscle tissues[J]. Journal of Pharmaceutical and Biomedical Analysis,2014,92:165-176.
[36]Zhao F,Gao X,Tang Z X,et al. Development of a simple multi-residue determination method of 80 veterinary drugs in Oplegnathus punctatus by liquid chromatography coupled to quadrupole Orbitrap mass spectrometry[J]. Journal of Chromatography B(Analytical Technologies in the Biomedical and Life Sciences),2017,1065:20-28.
[37]Alcantara-Duran J,Moreno-Gonzalez D,Gilbert-Lopez B,et al. Matrix-effect free multi-residue analysis of veterinary drugs in food samples of animal origin by nanoflow liquid chromatography high resolution mass spectrometry[J]. Food Chemistry,2018,245:29-38.
[38]Jia W,Shi L,Chu X G. Untargeted screening of sulfonamides and their metabolites in salmon using liquid chromatography coupled to quadrupole orbitrap mass spectrometry[J]. Food Chemistry,2018,239:427-433.
[39]Jia W,Chu X G,Chang J,et al. High-throughput untargeted screening of veterinary drug residues and metabolites in tilapia using high resolution orbitrap mass spectrometry[J]. Analytica Chimica Acta,2017,957:29-39.
[40]Nunes K S,Vallim J H,Assalin M R,et al. Depletion study,withdrawal period calculation and bioaccumulation of sulfamethazine in tilapia (Oreochromis niloticus) treated with medicated feed[J]. Chemosphere,2018,197:89-95.
[41]Arsand J B,Jank L,Martins M T,et al. Determination of aminoglycoside residues in milk and muscle based on a simple and fast extraction procedure followed by liquid chromatography coupled to tandem mass spectrometry and time of flight mass spectrometry[J]. Talanta,2016,154:38-45.
[42]Nacher-Mestre J,Ibanez M,Serrano R,et al. Investigation of pharmaceuticals in processed animal by-products by liquid chromatography coupled to high-resolution mass spectrometry[J]. Chemosphere,2016,154:231-239.
[43]Hiba A,Carine A,Haifa A R,et al. Monitoring of twenty-two sulfonamides in edible tissues:investigation of new metabolites and their potential toxicity[J]. Food Chemistry,2016,192:212-227.
[44]Du L J,Yi L,Ye L H,et al. Miniaturized solid-phase extraction of macrolide antibiotics in honey and bovine milk using mesoporous MCM-41 silica as sorbent[J]. Journal of Chromatography Acta,2018,1537:10-20.
[45]Junza A,Saurina J,Barron D,et al. Metabolic profile modifications in milk after enrofloxacin administration studied by liquid chromatography coupled with high resolution mass spectrometry[J]. Journal of Chromatography Acta,2016,1460:92-99.
[46]Feng S X,Chiesa O A,Kijak P,et al. Determination of ceftiofur metabolite desfuroylceftiofur cysteine disulfide in bovine tissues using liquid chromatography-tandem mass spectrometry as a surrogate marker residue for ceftiofur[J]. Journal of Agricultural and Food Chemistry,2014,62(22):5011-5019.
[47]Iglesias A,Nebot C,Miranda J M,et al. Detection and quantitative analysis of 21 veterinary drugs in river water using high-pressure liquid chromatography coupled to tandem mass spectrometry[J]. Environmental Science and Pollution Research,2012,19(8):3235-3249.
[48]Chung S W,Lam C H. Development of a 15-class multiresidue method for analyzing 78 hydrophilic and hydrophobic veterinary drugs in milk,egg and meat by liquid chromatography-tandem mass spectrometry[J]. Analytical Methods,2015,7(16):6764-6776.
[49]Diez C,Guillarme D,Spoerri A S,et al. Aminoglycoside analysis in food of animal origin with a zwitterionic stationary phase and liquid chromatography-tandem mass spectrometry[J]. Analytica Chimica Acta,2015,882:127-139.
[50]胡海燕,朱馨乐,胡昊,等. 超高效液相色谱简介及应用比较[J]. 中国兽药杂志,2010,44(4):48-50.
[51]la Barbera G,Capriotti A L,Cavaliere C A,et al. Liquid chromatography-high resolution mass spectrometry for the analysis of phytochemicals in vegetal-derived food and beverages[J]. Food Research International,2017,100(1):28-52.
[52]Theodoridis G A,Gika H G,Want E J,et al. Liquid chromatography-mass spectrometry based global metabolite profiling:a review[J]. Analytica Chimica Acta,2012,711:7-16.
[53]Kim D,Kim B,Hyung S W,et al. An optimized method for the accurate determination of nitrofurans in chicken meat using isotope dilution-liquid chromatography/mass spectrometry[J]. Journal of Food Composition and Analysis,2015,40:24-31.
[54]Perez-Fernandez V,Dominguez-Vega E,Chankvetadze B,et al. Evaluation of new cellulose-based chiral stationary phases Sepapak-2 and Sepapak-4 for the enantiomeric separation of pesticides by nano liquid chromatography and capillary electrochromatography[J]. Journal of Chromatography A,2012,1234:22-31.
[55]Mirabelli M F,Wolf J C,Zenobi R. Pesticide analysis at ppt concentration levels:coupling nano-liquid chromatography with dielectric barrier discharge ionization-mass spectrometry[J]. Analytical and Bioanalytical Chemistry,2016,408(13):3425-3434.
[56]Garcia-Ac A,Segura P A,Viglino L,et al. Comparison of APPI,APCI and ESI for the LC-MS/MS analysis of bezafibrate,cyclophosphamide,enalapril,methotrexate and orlistat in municipal wastewater[J]. Journal of Mass Spectrometry,2011,46(4):383-390.
[57]Holcapek M,Jirasko R,Lisa M. Recent developments in liquid chromatography-mass spectrometry and related techniques[J]. Journal of Chromatography Acta,2012,1259:3-15.
[58]夏曦,李晓薇,丁双阳,等. 液相色谱-高分辨质谱在兽药残留分析中的应用进展[J]. 质谱学报,2011(6):333-340.
[59]Lehotay S J,Sapozhnikova Y,Mol H G. Current issues involving screening and identification of chemical contaminants in foods by mass spectrometry[J]. Trends in Analytical Chemistry,2015,69(SI):62-75.
[60]Perez-Ortega P,Lara-Ortega F J,Garcia-Reyes J F,et al. A feasibility study of UHPLC-HRMS accurate-mass screening methods for multiclass testing of organic contaminants in food[J]. Talanta,2016,160:704-712.
[61]Porta T,Varesio E,Hopfgartner G. Gas-phase separation of drugs and metabolites using modifier-assisted differential ion mobility spectrometry hyphenated to liquid extraction surface analysis and mass spectrometry[J]. Analytical Chemistry,2013,85(24):11771-11779.
[62]Regueiro J,Negreira N,Hannisdal R,et al. Targeted approach for qualitative screening of pesticides in salmon feed by liquid chromatography coupled to traveling-wave ion mobility/quadrupole time-of-flight mass spectrometry[J]. Food Control,2017,78:116-125.
[63]Saito-Shida S,Hamasaka T,Nemoto S A. Multiresidue determination of pesticides in tea by liquid chromatography-high-resolution mass spectrometry:comparison between orbitrap and time-of-flight mass analyzers[J]. Food Chemistry,2018,256:140-148.
[64]Kellmann M,Muenster H,Zomer P,et al. Full scan MS in comprehensive qualitative and quantitative residue analysis in food and feed matrices:how much resolving power is required?[J]. Journal of the American Society for Mass Spectrometry,2009,20(8):1464-1476.
[65]Orchard S,Montechi-Palazzi L W,Binz P A,et al. Five years of progress in the standardization of proteomics data 4(th)annual spring workshop of the hupo-proteomics standards initiative April 23-25,2007 ecole nationale superieure(ens),Lyon,France[J]. Proteomics,2007,7(19):3436-3440.
[66]扈庆,方向. mzXML在质谱数据共享中的应用[J]. 计算机与应用化学,2007,24(12):1635-1637.
[67]Arias M,Chevallier O P,Graham S F,et al. Metabolomics reveals novel biomarkers of illegal 5-nitromimidazole treatment in pigs. Further evidence of drug toxicity uncovered[J]. Food Chemistry,2016,199:876-884.

相似文献/References:

备注/Memo

备注/Memo:
收稿日期:2018-11-08
基金项目:农业农村部农产品质量安全风险评估实验室(北京)开放课题(编号:kfkt201703);北京市农林科学院青年基金项目(编号:QNJJ201833)。
作者简介:王卉(1982—),女,内蒙古鄂伦春人,博士,助理研究员,主要从事农产品安全检测工作。E-mail:wangh@brcast.org.cn。
通信作者:韩平,副研究员,主要从事农产品安全检测工作。E-mail:hanp@brcast.org.cn。
更新日期/Last Update: 2020-01-20