地表水中10种抗生素SPE-HPLC-MS/MS检测方法的建立

史晓, 卜庆伟, 吴东奎, 运梦琪, 贺小凡, 李文超, 余刚. 地表水中10种抗生素SPE-HPLC-MS/MS检测方法的建立[J]. 环境化学, 2020, (4): 1075-1083. doi: 10.7524/j.issn.0254-6108.2019040102
引用本文: 史晓, 卜庆伟, 吴东奎, 运梦琪, 贺小凡, 李文超, 余刚. 地表水中10种抗生素SPE-HPLC-MS/MS检测方法的建立[J]. 环境化学, 2020, (4): 1075-1083. doi: 10.7524/j.issn.0254-6108.2019040102
SHI Xiao, BU Qingwei, WU Dongkui, YUN Mengqi, HE Xiaofan, LI Wenchao, YU Gang. Simultaneous determination of 10 antibiotic residues in surface water by SPE-HPLC-MS/MS[J]. Environmental Chemistry, 2020, (4): 1075-1083. doi: 10.7524/j.issn.0254-6108.2019040102
Citation: SHI Xiao, BU Qingwei, WU Dongkui, YUN Mengqi, HE Xiaofan, LI Wenchao, YU Gang. Simultaneous determination of 10 antibiotic residues in surface water by SPE-HPLC-MS/MS[J]. Environmental Chemistry, 2020, (4): 1075-1083. doi: 10.7524/j.issn.0254-6108.2019040102

地表水中10种抗生素SPE-HPLC-MS/MS检测方法的建立

    通讯作者: 卜庆伟, E-mail: qingwei.bu@cumtb.edu.cn
  • 基金项目:

    国家自然科学基金(21777188,21307068)和中国矿业大学(北京)"越崎青年学者"计划资助.

Simultaneous determination of 10 antibiotic residues in surface water by SPE-HPLC-MS/MS

    Corresponding author: BU Qingwei, qingwei.bu@cumtb.edu.cn
  • Fund Project: Supported by the National Natural Science Foundation of China (21777188, 21307068) and the Yue Qi Young Scholar Project, China University of Mining & Technology, Beijing.
  • 摘要: 应用固相萃取(SPE)-高效液相色谱-串联三重四极杆质谱(HPLC-MS/MS)技术,建立了地表水中10种抗生素(甲氧苄啶、氨苄西林、头孢氨苄、头孢噻肟钠、红霉胺、罗红霉素、螺旋霉素、磺胺甲恶唑、克拉霉素、夫西地酸钠)的分析检测方法.水样经过HLB小柱浓缩萃取之后,以反相色谱柱Shim-pack XR-ODS为分析柱,乙腈和0.1%甲酸-水溶液为流动相,采用HPLC-MS/MS多反应监测(MRM)离子模式进行分析.结果表明,所建立方法的方法检出限(MDL)为0.0056—3.9675 ng·L-1,基质加标回收率为50%—127%,平行样品间相对标准偏差均小于11% (n = 6).该方法操作简单、定性定量准确,检出限低,能够满足测定地表水环境中抗生素痕量残留的分析要求.应用该方法测定了北京地区清河地表水中上述10种抗生素的残留状况.
  • 加载中
  • [1] KUMMERER K. Antibiotics in the aquatic environment-A review-Part I[J]. Chemosphere, 2009, 75(4):417-434.
    [2] HIRSCH R, TERNES T, HABERER K, et al. Occurrence of antibiotics in the aquatic environment[J]. Science of the Total Environment, 1999, 225(1):109-118.
    [3] BU Q, WANG B, HUANG J, et al. Pharmaceuticals and personal care products in the aquatic environment in China:A review[J]. Journal of Hazardous Materials, 2013, 262:189-211.
    [4] BAQUERO F, MARTINEZ J, CANTON R. Antibiotics and antibiotic resistance in water environments[J]. Current Opinion in Biotechnology, 2008, 19(3):260-265.
    [5] ENGLISH B, GAUR A. The use and abuse of antibiotics and the development of antibiotic resistance//FINN A, CURTIS N, POLLARD A J. Hot Topics in Infection and Immunity in Children[M]. New York:Springer New York, 2010:73-82.
    [6] MARTINEZ J. Antibiotics and antibiotic resistance genes in natural environments[J]. Science, 2008, 321(5887):365-367.
    [7] BU Q, SHI X, YU G, et al. Pay attention to non-wastewater emission pathways of pharmaceuticals into environments[J]. Chemosphere, 2016, 165:515-518.
    [8] 葛林科, 任红蕾, 鲁建江, 等. 我国环境中新兴污染物抗生素及其抗性基因的分布特征[J]. 环境化学, 2015, 34(5):875-883.

    GE L K, REN H L, LU J J, et al. Occurrence of antibiotics and corresponding resistance genes in the environment of China[J]. Environmental Chemistry, 2015, 34(5):875-883(in Chinese).

    [9] EBELE A, ABDALLAH M, HARRAD S. Pharmaceuticals and personal care products (PPCPs) in the freshwater aquatic environment[J]. Emerging Contaminants, 2017, 3(1):1-16.
    [10] LUO Y, XU L, RYSZ M, et al. Occurrence and transport of tetracycline, sulfonamide, quinolone, and macrolide antibiotics in the Haihe River Basin, China[J]. Environmental Science & Technology, 2011, 45(5):1827-1833.
    [11] PENG X, ZHANG K, TANG C, et al. Distribution pattern, behavior, and fate of antibacterials in urban aquatic environments in South China[J]. Journal of Environmental Monitoring, 2011, 13(2):446-454.
    [12] YANG J, YING G, ZHAO J, et al. Spatial and seasonal distribution of selected antibiotics in surface waters of the Pearl Rivers, China[J]. Journal of Environmental Science & Health Part B, 2011, 46(3):272-280.
    [13] BEN W, QIANG Z, ADAMS C, et al. Simultaneous determination of sulfonamides, tetracyclines and tiamulin in swine wastewater by solid-phase extraction and liquid chromatography-mass spectrometry[J]. Journal of Chromatography A, 2008, 1202(2):173-180.
    [14] ZHOU L, YING G, LIU S, et al. Simultaneous determination of human and veterinary antibiotics in various environmental matrices by rapid resolution liquid chromatography-electrospray ionization tandem mass spectrometry[J]. Journal of Chromatography A, 2012, 1244:123-138.
    [15] ZHANG G, LIU X, ZHAO Y, et al. Research advances on analysis of antibiotic residues in the environmental samples[J]. Environmental Pollution & Control, 2009, 31(10):64-70.
    [16] 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.

    QI Y J, LIU F. Advances in detection and analysis of antibiotic contamination in groundwater[J]. Rock and Mineral Analysis, 2014, 33(1):1-11(in Chinese).

    [17] USEPA. Estimation Program Interface (EPI) Suite[CP].[2016-9-5]. https://www.epa.gov/tsca-screening-tools/download-epi-suitetm-estimation-program-interface-v411,
    [18] 工业和信息化部. 中国医药统计年报[R]. 北京:2015. Ministry of Industry and Information Technology. Annual Report of Chinese Medicine Statistics[R]. Beijing:2015(in Chinese).
    [19] CASTIGLIONI S, BAGNATI R, CALAMARI D, et al. A multiresidue analytical method using solid-phase extraction and high-pressure liquid chromatography tandem mass spectrometry to measure pharmaceuticals of different therapeutic classes in urban wastewaters[J]. Journal of Chromatography A, 2005, 1092(2):206-215.
    [20] LI W, SHI Y, GAO L, et al. Occurrence of antibiotics in water, sediments, aquatic plants, and animals from Baiyangdian Lake in North China[J]. Chemosphere, 2012, 89(11):1307-1315.
    [21] 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.
    [22] 章琴琴. 北京温榆河流域抗生素污染分布特征及源解析研究[D]. 重庆:重庆大学, 2012. ZHANG Q Q. Determination and source apportionment of three classes of antibiotics in Beijing Wenyu Rivers[D]. Chongqin:Chongqing University, 2012(in Chinese).
    [23] JIA A, HU J, WU X, et al. Occurrence and source apportionment of sulfonamides and their metabolites in Liaodong Bay and the adjacent Liao River basin, North China[J]. Environmental Toxicology and Chemistry, 2011, 30(6):1252-1260.
    [24] ZHANG R, ZHANG G, ZHENG Q, et al. Occurrence and risks of antibiotics in the Laizhou Bay, China:Impacts of river discharge[J]. Ecotoxicology and Environmental Safety, 2012, 80:208-215.
    [25] CHEN H, LI X, ZHU S. Occurrence and distribution of selected pharmaceuticals and personal care products in aquatic environments:A comparative study of regions in China with different urbanization levels[J]. Environmental Science and Pollution Research, 2012, 19(6):2381-2389.
    [26] CHANG X, MEYER M T, LIU X, et al. Determination of antibiotics in sewage from hospitals, nursery and slaughter house, wastewater treatment plant and source water in Chongqing region of three Gorge Reservoir in China[J]. Environmental Pollution, 2010, 158(5):1444-1450.
    [27] 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, 78:26-33.
    [28] ZHENG S, QIU X, CHEN B, et al. Antibiotics pollution in Jiulong River estuary:Source, distribution and bacterial resistance[J]. Chemosphere, 2011, 84(11):1677-1685.
    [29] 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):822-828.
    [30] ZHANG D, LIN L, LUO Z, et al. Occurrence of selected antibiotics in Jiulongjiang River in various seasons, South China[J]. Journal of Environmental Monitoring, 2011, 13(7):1953-1960.
    [31] MINH T, LEUNG H, LOI I, 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.
  • 加载中
计量
  • 文章访问数:  3022
  • HTML全文浏览数:  3022
  • PDF下载数:  72
  • 施引文献:  0
出版历程
  • 收稿日期:  2019-04-01

地表水中10种抗生素SPE-HPLC-MS/MS检测方法的建立

    通讯作者: 卜庆伟, E-mail: qingwei.bu@cumtb.edu.cn
  • 1. 中国矿业大学(北京)化学与环境工程学院, 北京, 100083;
  • 2. 清华大学环境学院, 北京, 100084
基金项目:

国家自然科学基金(21777188,21307068)和中国矿业大学(北京)"越崎青年学者"计划资助.

摘要: 应用固相萃取(SPE)-高效液相色谱-串联三重四极杆质谱(HPLC-MS/MS)技术,建立了地表水中10种抗生素(甲氧苄啶、氨苄西林、头孢氨苄、头孢噻肟钠、红霉胺、罗红霉素、螺旋霉素、磺胺甲恶唑、克拉霉素、夫西地酸钠)的分析检测方法.水样经过HLB小柱浓缩萃取之后,以反相色谱柱Shim-pack XR-ODS为分析柱,乙腈和0.1%甲酸-水溶液为流动相,采用HPLC-MS/MS多反应监测(MRM)离子模式进行分析.结果表明,所建立方法的方法检出限(MDL)为0.0056—3.9675 ng·L-1,基质加标回收率为50%—127%,平行样品间相对标准偏差均小于11% (n = 6).该方法操作简单、定性定量准确,检出限低,能够满足测定地表水环境中抗生素痕量残留的分析要求.应用该方法测定了北京地区清河地表水中上述10种抗生素的残留状况.

English Abstract

参考文献 (31)

目录

/

返回文章
返回