Analysing persistent organic pollutants in eggs, blood and tissue of the green sea turtle (Chelonia mydas) using gas chromatography with tandem mass spectrometry (GC-MS/MS)

被引:23
|
作者
van de Merwe, Jason Paul [1 ,2 ]
Hodge, Mary [3 ]
Whittier, Joan Margaret [4 ]
Lee, Shing Yip [1 ,2 ]
机构
[1] Griffith Univ, Griffith Sch Environm, Gold Coast, Qld 4222, Australia
[2] Griffith Univ, Australian Rivers Inst, Gold Coast, Qld 4222, Australia
[3] Queensland Govt, Queensland Hlth Sci Serv, Coopers Plainis, Qld 4108, Australia
[4] Univ Queensland, Sch Biomed Sci, St Lucia, Qld 4072, Australia
基金
澳大利亚研究理事会;
关键词
Chelonia mydas; Persistent organic pollutants; GC-MS/MS; Chlorinated and brominated compounds; POLYCHLORINATED-BIPHENYLS; CARETTA-CARETTA; ORGANOCHLORINE CONTAMINANTS; SCREENING-PROCEDURE; FLAME RETARDANTS; MARINE TURTLES; LOGGERHEAD; PESTICIDES; RESIDUES; PCBS;
D O I
10.1007/s00216-009-2608-0
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Investigation into persistent organic pollutants (POPs) in sea turtles is an important area of conservation research due to the harmful effects of these chemicals. However, the analysis of POPs in the green sea turtle (Chelonia mydas) has been limited by methods with relatively high limits of detection and high costs associated with multiple sample injections into complex arrangements of analytical equipment. The present study aimed to develop a method that could detect a large number of POPs in the blood, eggs and tissue of C. mydas at trace concentrations. A gas chromatography with tandem mass spectrometry (GC-MS/MS) method was developed that could report 125 POP compounds to a limit of detection of <35 pg g(-1) using a single sample injection. The recoveries of internal standards ranged from 30% to 96%, and the standard reference materials were reported to within 70% of the certified values. The coefficient of variation of ten replicates of pooled egg sample was <20% for all compounds, indicating low within-run variation. This GC-MS/MS method is an improvement of previous methods for analysing POPs in C. mydas in that more compounds can be reported at lower concentrations and the accuracy and precision of the method are sound. This is particularly important for C. mydas as they occupy a low trophic level and have lower concentrations of POPs. This method is also simple to set up, and there are minimal differences in sample preparation for the different tissue types.
引用
收藏
页码:1719 / 1731
页数:13
相关论文
共 50 条
  • [1] Analysing persistent organic pollutants in eggs, blood and tissue of the green sea turtle (Chelonia mydas) using gas chromatography with tandem mass spectrometry (GC-MS/MS)
    Jason Paul van de Merwe
    Mary Hodge
    Joan Margaret Whittier
    Shing Yip Lee
    Analytical and Bioanalytical Chemistry, 2009, 393 : 1719 - 1731
  • [2] DETERMINATION OF ORGANIC CONTAMINANTS BY GAS CHROMATOGRAPHY WITH TANDEM MASS SPECTROMETRY (GC-MS/MS)
    Stupak, Michal
    Kalachova, Kamila
    Pulkrabova, Jana
    Hajslova, Jana
    CHEMICKE LISTY, 2012, 106 : S123 - S127
  • [3] Determination of Persistent Organic Pollutants (POPs) in Atmospheric Gases and Particles by Solid-Phase Extraction (SPE) and Gas Chromatography-Tandem Mass Spectrometry (GC-MS/MS)
    Lv, Zhenzhen
    Dong, Faqin
    Zhang, Wen
    Chen, Shanyu
    Zheng, Fei
    Zhou, Lin
    Liu, Mingxue
    Huo, Tingting
    ANALYTICAL LETTERS, 2023, 56 (11) : 1741 - 1762
  • [4] Simple quantification of propofol and its metabolites in blood and urine using gas chromatography-tandem mass spectrometry (GC-MS/MS)
    Dai, Yinyin
    Li, Yaqing
    Zhao, Kundi
    Wang, Yue
    Gu, Jie
    Bai, Huiru
    Wurita, Amin
    Hasegawa, Koutaro
    LEGAL MEDICINE, 2023, 65
  • [5] Using blood samples to estimate persistent organic pollutants and metals in green sea turtles (Chelonia mydas)
    van de Merwe, Jason P.
    Hodge, Mary
    Olszowy, Henry A.
    Whittier, Joan M.
    Lee, Shing Y.
    MARINE POLLUTION BULLETIN, 2010, 60 (04) : 579 - 588
  • [6] Determination of Persistent Organic Pollutants (POPs) in Propolis by Solid-Phase Extraction (SPE) and Gas Chromatography - Mass Spectrometry (GC-MS)
    Simsek, Ilker
    Kuzukiran, Ozgur
    Yurdakok-Dikmen, Begum
    Snoj, Tomaz
    Filazi, Ayhan
    ANALYTICAL LETTERS, 2020, 54 (10) : 1668 - 1682
  • [7] Identification of alkylpyrazines by gas chromatography mass spectrometry (GC-MS)
    Xu, Sihang
    Errabelli, Ramu
    Feener, Donald H.
    Noble, Katherine
    Attygalle, Athula B.
    JOURNAL OF CHROMATOGRAPHY A, 2019, 1589 : 149 - 161
  • [8] Gas Chromatography Mass Spectrometry (GC-MS) Profiling ofArjunarishta
    Venkataramanan, Sridhanya
    Kamat, Rajeshwari, V
    INTERNATIONAL JOURNAL OF AYURVEDIC MEDICINE, 2023, 14 (02) : 507 - 510
  • [9] Determination of 4-Methylimidazole in Ammonia Caramel Using Gas Chromatography-Tandem Mass Spectrometry (GC-MS/MS)
    Wieczorek, Martyna N.
    Przygonski, Krzysztof
    Jelen, Henryk H.
    JOURNAL OF FOOD QUALITY, 2018,
  • [10] Screening for inherited metabolic diseases using gas chromatography-tandem mass spectrometry (GC-MS/MS) in Sichuan, China
    Wang, Hong
    Wang, Xia
    Li, Yingying
    Dai, Wei
    Jiang, Dongmei
    Zhang, Xiaodong
    Cui, Yali
    BIOMEDICAL CHROMATOGRAPHY, 2017, 31 (04)