|本期目录/Table of Contents|

[1]余丽梅,宋超,张聪,等.养殖水产品中磺胺类药物的检测方法及残留分析研究进展[J].江苏农业科学,2018,46(09):16-22.
 Yu Limei,et al.Research progress on detection and analysis of sulfonamide antibiotic residues in aquaculture products[J].Jiangsu Agricultural Sciences,2018,46(09):16-22.
点击复制

养殖水产品中磺胺类药物的检测方法
及残留分析研究进展
(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第46卷
期数:
2018年09期
页码:
16-22
栏目:
专论与综述
出版日期:
2018-05-05

文章信息/Info

Title:
Research progress on detection and analysis of sulfonamide antibiotic residues in aquaculture products
作者:
余丽梅1 宋超234 张聪234 陈家长1234
1.南京农业大学无锡渔业学院,江苏无锡 214081; 2.中国水产科学研究院淡水渔业研究中心,江苏无锡 214081;
3.农业部水产品质量安全环境因子风险评估实验室,江苏无锡 214081; 4.农业部长江下游渔业生态环境监测中心,江苏无锡 214081
Author(s):
Yu Limeiet al
关键词:
磺胺类药物水产品检测方法残留分析
Keywords:
-
分类号:
X714
DOI:
-
文献标志码:
A
摘要:
磺胺类药物是一种新型的有机污染物,对环境和人体健康都存在潜在的威胁,因此其在养殖水产品中的残留情况日益受到关注。主要对水产品中磺胺类药物的来源、危害、检测方法及在养殖水产品中的残留情况作简要综述,并指出了需要进一步探究的方向,对深入了解磺胺类药物在养殖水产品中的残留情况,及时采取危害防治措施、保护人类健康和生态系统稳定都具有重要意义。
Abstract:
-

参考文献/References:

[1]王萍,曾凡,李苑,等. 超声萃取-HPLC-MS/MS分析鱼肉中磺胺抗生素[J]. 广州化工,2015,43(11):119-121,138.
[2]Zheng Q,Zhang R,Wang Y,et al. Occurrence and distribution of antibiotics in the Beibu Gulf,China:impacts of river discharge and aquaculture activities[J]. Marine Environmental Research,2012,78(8):26-33.
[3]胡梦红. 抗生素在水产养殖中的应用、存在的问题及对策[J]. 水产科技情报,2006,33(5):217-221.
[4]卢保锋. 养殖场使用抗生素的几个误区[J]. 养禽与禽病防治,2013(11):5.
[5]聂湘平,何秀婷,杨永涛,等. 珠江三角洲养殖水体中喹诺酮类药物残留分析[J]. 环境科学,2009,30(1):266-270.
[6]贾久满,要瑞莉,朱莲英,等. 我国动物性产品中抗生素残留问题的现状及对策[J]. 安徽农业科学,2007,35(5):1368-1370.
[7]赵海香,邓维,尚艳芬,等.基于低毒溶剂的MSPD/HPLC法同时测定鱼肉中8种磺胺类药物残留[J]. 食品科学,2009,30(4):178-181.
[8]徐维海,林黎明,朱校斌,等. 水产品中14种磺胺类药物残留的HPLC法同时测定[J]. 分析测试学报,2004,23(5):122-124.
[9]巢磊. 磺胺类药物在水产养殖中的应用[J]. 水利渔业,2002,22(3):50-51.
[10]赵春晖. 水产品中五类药物多残留检测方法的建立及应用[D]. 北京:中国农业科学院,2014.
[11]Long A R,Hsieh L C,Malbrough M S,et al. Multiresidue method for the determination of sulfonamides in pork tissue[J]. Journal of Agricultural & Food Chemistry,1990,38(2):423-426.
[12]孟勇,张美琴,王静,等. 高效液相色谱法测定水产品中7种兽药残留量[J]. 理化检验-化学分册,2012,48(5):543-546.
[13]Li Y,Zhang X,Li W,et al. The residues and environmental risks of multiple veterinary antibiotics in animal faeces[J]. Environmental Monitoring and Assessment,2013,185(3):2211-2220.
[14]祁彦洁,刘菲. 地下水中抗生素污染检测分析研究进展[J]. 岩矿测试,2014,33(1):1-11.
[15]何秀婷,王奇,聂湘平,等. 广东典型海水养殖区沉积物及鱼体中磺胺类药物的残留及其对人体的健康风险评价[J]. 2014,35(7):2728-2735.
[16]魏建英,张然,丁胜,等. 抗生素类饲料添加剂在畜牧业中的使用[J]. 内蒙古农业科技,2004(4):52-53.
[17]Ko E,Song H,Park J H. Direct competitive enzyme-linked immunosorbent assay for sulfamethazine[J]. Journal of Veterinary Medical Science,2000,62(10):1121-1123.
[18]段振娟,张鸿雁,王硕. 动物性食品中磺胺类药物残留分析研究进展[J]. 食品研究与开发,2007,28(6):149-152.
[19]郭根和,潘藏,苏德森,等. 高效液相色谱法测定对虾中五种磺胺类药物残留[J]. 现代科学仪器,2005(1):70-72.
[20]Hoa P T,Managaki S,Nakada N,et al. Antibiotic contamination and occurrence of antibiotic-resistant bacteria in aquatic environments of Northern Vietnam[J]. Science of the Total Environment,2011,409(15):2894-2901.
[21]成黎,谭锋. 中国水产品质量安全现状及改善和控制措施[J]. 食品科学,2009,30(23):465-469.
[22]Sanderson H,Brain R A,Johnson D J,et al. Toxicity classification and evaluation of four pharmaceuticals classes:antibiotics,antineoplastics,cardiovascular,and sex hormones[J]. Toxicology,2004,203(1):27-40.
[23]Michele T M,Ko C,Bishai W R. Exposure to antibiotics induces expression of the Mycobacterium tuberculosis sigF gene:implications,for chemotherapy against mycobacterial persistors[J]. Antimicrobial Agents & Chemotherapy,1999,43(2):218-225.
[24]Tang J,Shi T,Wu X,et al. The occurrence and distribution of antibiotics in lake Chaohu,China:seasonal variation,potential source and risk assessment[J]. Chemosphere,2015(122):154-161.
[25]Tamtam F,Mercier F,Le B B,et al. Occurrence and fate of antibiotics in the Seine River in various hydrological conditions[J]. Science of the Total Environment,2008,393(1):84-95.
[26]Jiang L,Hu X,Yin D,et al. Occurrence,distribution and seasonal variation of antibiotics in the Huangpu River,Shanghai,China[J]. Chemosphere,2011,82(6):822-8.
[27]Li W,Gao L,Shi Y,et al. Occurrence,distribution and risks of antibiotics in urban surface water in Beijing,China[J]. Environmental Sciences Processes & Impacts,2015,17(9):1611-1619.
[28]Minh T B,Leung H W,Loi I H,et al. Antibiotics in the Hong Kong metropolitan area:Ubiquitous distribution and fate in Victoria Harbour[J]. Marine Pollution Bulletin,2009,58(7):1052-1062.
[29]Zou S,Xu W,Zhang R,et al. Occurrence and distribution of antibiotics in coastal water of the Bohai Bay,China:impacts of river discharge and aquaculture activities[J]. Environmental Pollution,2011,159(10):2913-2920.
[30]Fick J,Sderstrm H,Lindberg R H,et al. Contamination of surface,ground,and drinking water from pharmaceutical production[J]. Environmental Toxicology and Chemistry,2009,28(12):2522-2527.
[31]López-Serna R,Jurado A,Vázquez-Sué E,et al. Occurrence of 95 pharmaceuticals and transformation products in urban groundwaters underlying the metropolis of Barcelona,Spain[J]. Environmental Pollution,2013(174):305-315.
[32]Standley L J,Rudel R A,Swartz C H,et al. Wastewater-contaminated groundwater as a source of endogenous hormones and pharmaceuticals to surface water ecosystems[J]. Environmental Toxicology and Chemistry,2008,27(12):2457-2468.
[33]Teijon G,Candela L,Tamoh K,et al. Occurrence of emerging contaminants,priority substances (2008/105/CE) and heavy metals in treated wastewater and groundwater at Depurbaix facility (Barcelona,Spain)[J]. Science of the Total Environment,2010,408(17):3584-3595.
[34]Rosal R,Rodríguez A,Perdigón-Melón J A,et al. Occurrence of emerging pollutants in urban wastewater and their removal through biological treatment followed by ozonation[J]. Water Research,2010,44(2):578-588.
[35]Radjenovic' J,Petrovic' M,Barceló D. Fate and distribution of pharmaceuticals in wastewater and sewage sludge of the conventional activated sludge (CAS) and advanced membrane bioreactor (MBR) treatment[J]. Water Research,2009,43(3):831-841.
[36]Yiruhan,Wang Q J,Mo C H,et al. Determination of four fluoroquinolone antibiotics in tap water in Guangzhou and Macao[J]. Environmental Pollution,2010,158(7):2350-2358.
[37]Christian T,Schneider R J,Frber H A,et al. Determination of Antibiotic Residues in Manure,Soil,and Surface Waters[J]. Clean-Soil,Air,Water,2003,31(1):36-44.
[38]Blackwell P A,Kay P,Ashauer R,et al. Effects of agricultural conditions on the leaching behaviour of veterinary antibiotics in soils[J]. Chemosphere,2009,75(1):13-19.
[39]Pei R,Kim S C,Carlson K H,et al. Effect of river landscape on the sediment concentrations of antibiotics and corresponding antibiotic resistance genes (ARG)[J]. Water Research,2006,40(12):2427-2435.
[40]Zhou L J,Ying G G,Liu S,et al. Excretion masses and environmental occurrence of antibiotics in typical swine and dairy cattle farms in China[J]. Science of the Total Environment,2013,444(2):183-195.
[41]Gao P,Mao D,Luo Y,et al. Occurrence of sulfonamide and tetracycline-resistant bacteria and resistance genes in aquaculture environment[J]. Water Research,2012,46(7):2355-2364.
[42]李俊锁,邱月明. 兽药残留分析[M]. 上海:上海科学技术出版社,2002:228-232.
[43]张永生,南海娟,魏新军. 动物源性食品中磺胺类药物多残留检测方法研究进展[J]. 畜牧与饲料科学,2009,30(3):35-36.
[44]Sangjarusvichai H,Dungchai W,Siangproh W,et al. Rapid separation and highly sensitive detection methodology for sulfonamides in shrimp using a monolithic column coupled with BDD amperometric detection[J]. Talanta,2009,79(4):1036-41.
[45]Dixonholland D E,Katz S E. Competitive direct enzyme-linked immunosorbent assay for detection of sulfamethazine residues in swine urine and muscle tissue[J]. Journal-Association of Official Analytical Chemists,1988,71(6):1137-1140.
[46]林海丹,谢守新,冯德雄,等. 动物源性食品中磺胺类药物残留的固相萃取-高效液相色谱法测定[J]. 分析测试学报,2003,22(1):94-96.
[47]胡昌勤. 酶联免疫吸附法新进展[J]. 生物化学与生物物理进展,1993,20(2):85-88.
[48]Shelver W L,Shappell N W,Franek M,Ruhio F R. ELISA for sulfonamides and its application for screening in water contamination[J]. Agricultural and Food Chemistry,2008,56(15):6609-6615.
[49]郑志高,江红星,吕芳,等. 磺胺类药物的多残留酶联免疫法检测[J]. 检验检疫学刊,2006,16(1):19-22.
[50]沈永聪,李守军,杨林. 牛奶中抗生素残留检测技术进展[J]. 畜牧兽医科技信息,2006,(5):87-89.
[51]赵书景,贺绍君,罗国琦,等. 动物性食品中磺胺类药物残留检测方法的研究进展[J]. 中国畜牧兽医,2009,36(8):60-63.
[52]Frazier R A. Recent advances in capillary electrophoresis methods for food analysis[J]. Electrophoresis,2005,22(19):4197-4206.
[53]Ackermans M T,Beckers J L,Everaerts F M,et al. Determination of sulphonamides in pork meat extracts by capillary zone electrophoresis[J]. Chromatograph. A,1996,592(1):101-109.
[54]Lamba S,Sanghi S K,Asthana A,et al. Rapid determination of sulfonamides in milk using micellar electrokinetic chromatography with fluorescence detection[J]. Analytica Chimica Acta,2005,552(1/2):110-115.
[55]Wen Y,Li J,Zhang W,et al. Dispersive liquid-liquid microextraction coupled with capillary electrophoresis for simultaneous determination of sulfonamides with the aid of experimental design[J]. Electrophoresis,2011,32(16):2131-2138.
[56]甘宾宾,杨玉霞,唐健,等. 动物性食品中抗生素和激素残留污染及检测[J]. 中国公共卫生,2006,22(8):1014-1015.
[57]Xu X,Su R,Zhao X,et al. Ionic liquid-based microwave-assisted dispersive liquid-liquid microextraction and derivatization of sulfonamides in river water,honey,milk,and animal plasma[J]. Analytica Chimica Acta,2011,707(1):92-99.
[58]Blackwell P A,Lützhft H C,Ma H P,et al. Fast and robust simultaneous determination of three veterinary antibiotics in groundwater and surface water using a tandem solid-phase extraction with high-performance liquid chromatography-UV detection.[J]. Journal of Chromatography A,2004,1045(1/2):111-117.
[59]Casetta B,Cozzani R,Cinquina A L,et al. Sulfamethazine,sulfothiazole and albendazole residue dosage in food products determined by liquid chromatography/tandem mass spectrometry[J]. Rapid Communications in Mass Spectrometry,1996,10(12):1497-1503.
[60]陈莹,陈辉,林谷园,等. 超高效液相色谱串联质谱法对鳗鱼中大环内酯类、喹诺酮类和磺胺类兽药残留量的同时测定[J]. 分析测试学报,2008,27(5):538-541.
[61]He X,Deng M,Wang Q,et al. Residues and health risk assessment of quinolones and sulfonamides in cultured fish from Pearl River Delta,China[J]. Aquaculture,2016(458):38-46.
[62]Rico A,Satapornvanit K,Haque M M,et al. Use of chemicals and biological products in Asian aquaculture and their potential environmental risks:a critical review[J]. Reviews in Aquaculture,2012,4(2):75-93.
[63]Gao L,Shi Y,Li W,et al. Occurrence,distribution and bioaccumulation of antibiotics in the Haihe River in China[J]. Journal of Environmental Monitoring,2012,14(4):1248-1255.
[64]Pernille B,Bak S A,Erland B,et al. Abiotic degradation of antibiotic ionophores[J]. Environmental Pollution,2013,182(6):177-183.
[65]中华人民共和国农业部公告第235号[Z]. 北京:中华人民共和国农业部,2002.
[66]卜明楠,石志红,康健,等. QuEChERS结合LC-MS/MS同时测定虾肉中72种兽药残留[J]. 分析测试学报,2012,31(5):552-558.
[67]Chen H,Liu S,Xu X R,et al. Antibiotics in typical marine aquaculture farms surrounding Hailing Island,South China:Occurrence,bioaccumulation and human dietary exposure[J]. Marine Pollution Bulletin,2015,90(1-2):181-187.
[68]Yamada R,Kozono M,Ohmori T,et al. Simultaneous determination of residual veterinary drugs in bovine,porcine,and chicken muscle using liquid chromatography coupled with electrospray ionization tandem mass spectrometry[J]. Bioscience,Biotechnology,and Biochemistry,2006,70(1):54-65.
[69]Regulation H A T. Council regulation (EEC) No 2377/90 of 26 June 1990 laying down a community procedure for the establishment of maximum residue limits of veterinary medicinal products in foodstuffs of animal origin[J]. Official JL,1990(224):1-8.
[70]Food and drug regulation[M]. Ottawa:Canada Gazette,1991(125):1478-1480.
[71]刘佳佳,佘永新,刘洪斌,等. 高效液相色谱伟联质谱法同时测定动物源性食品中24种磺胺类药物残留[J]. 分析试验室,2011,30(2):9-13.
[72]Chen H,Liu S,Xu X R,et al. Antibiotics in typical marine aquaculture farms surrounding Hailing Island,South China:occurrence,bioaccumulation and human dietary exposure[J]. Marine Pollution Bulletin,2015,90(1/2):181-187.

相似文献/References:

[1]阚大学.中国水产品国际市场势力的实证研究——基于边际成本模型和剩余需求弹性模型[J].江苏农业科学,2013,41(06):386.
 Kan Daxue.Empirical study on international market power of Chinese aquatic products-Based on marginal cost model and elasticity residual demand model[J].Jiangsu Agricultural Sciences,2013,41(09):386.
[2]杨姝丽,吴祥庆,黎小正,等.高效液相色谱法测定水产品中的斑蝥黄[J].江苏农业科学,2014,42(08):308.
 Yang Shuli,et al.Detection of canthaxanthin in aquatic products by HPLC method[J].Jiangsu Agricultural Sciences,2014,42(09):308.
[3]于辉辉,李道亮,李瑾,等.水产品质量安全监管系统关键控制点分析[J].江苏农业科学,2014,42(01):239.
 Yu Huihui,et al.Critical control point analysis of aquatic products quality and safety supervision system[J].Jiangsu Agricultural Sciences,2014,42(09):239.
[4]吴昊,平瑛.上海市水产工厂化养殖发展状况与对策[J].江苏农业科学,2014,42(01):390.
 Wu Hao,et al.Development and countermeasures of industrialized aquaculture in Shanghai City[J].Jiangsu Agricultural Sciences,2014,42(09):390.
[5]霍红,崔琦,詹帅.辽宁省内冷冻水产品冷链配送网络规划[J].江苏农业科学,2016,44(08):535.
 Huo Hong,et al.Frozen aquatic products cold chain distribution network planning in Liaoning Province[J].Jiangsu Agricultural Sciences,2016,44(09):535.
[6]朱金兰,王菁,潘迎辉,等.气相色谱-串联质谱法测定水产品中己烯雌酚的含量[J].江苏农业科学,2015,43(12):328.
 Zhu Jinlan,et al.Determination of diethylstilbestrol contents in aquatic products by gas chromatography-tandem mass spectrometry[J].Jiangsu Agricultural Sciences,2015,43(09):328.
[7]谭春兰,张涵.我国水产品品牌创建与维护研究概况[J].江苏农业科学,2014,42(04):395.
 Tan Chunlan,et al.Study on creation and maintenance of Chinas aquatic brand[J].Jiangsu Agricultural Sciences,2014,42(09):395.
[8]陈校辉,钟立强,王明华,等.我国水产品质量安全追溯系统研究与应用进展[J].江苏农业科学,2015,43(07):5.
 Chen Xiaohui,et al.Research and application progress of Chinas aquatic products quality safety traceability system[J].Jiangsu Agricultural Sciences,2015,43(09):5.
[9]徐振球,成 强,徐金晶,等.水产品及其环境重金属含量监测与分析[J].江苏农业科学,2015,43(02):284.
 Xu Zhenqiu,et al.Monitoring and analysis of heavy metal content in aquatic products and its environment[J].Jiangsu Agricultural Sciences,2015,43(09):284.
[10]贺江,杨恋,杨品红.基于镧离子增敏效应的四环素残留检测方法[J].江苏农业科学,2014,42(07):299.
 He Jiang,et al.Detection method of tetracycline residue based on sensitizing effect of La3+[J].Jiangsu Agricultural Sciences,2014,42(09):299.

备注/Memo

备注/Memo:
收稿日期:2016-12-16
基金项目:国家水产品质量安全风险评估项目(编号:GJFP2016)。
作者简介:余丽梅(1990—),女,湖北黄石人,硕士研究生,主要从事渔业生态环境和水产品质量安全方面的研究工作。E-mail:1246809960@qq.com。
通信作者:陈家长,研究员,硕士生导师,主要研究渔业生态环境监测与保护、水产品质量安全控制技术、养殖环境修复、健康养殖、生态环境评价等。E-mail:chenjz@ffrc.cn。
更新日期/Last Update: 2018-05-05