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Articles

Graphene oxide-coated stir bar sorptive extraction of trace aflatoxins from soy milk followed by high performance liquid chromatography-laser-induced fluorescence detection

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Pages 773-782 | Received 18 Jul 2017, Accepted 05 Nov 2017, Published online: 16 Feb 2018

References

  • Arroyo-Manzanares N, García-Campaña AM, Gámiz-Gracia L. 2013b. Multiclass mycotoxin analysis in Silybum marianum by ultra high performance liquid chromatography–tandem mass spectrometry using a procedure based on QuEChERS and dispersive liquid–liquid microextraction. J Chromatogr A. 1282:11–19.
  • Arroyo-Manzanares N, Huertas-Pérez J, Gámiz-Gracia L, García-Campaña A. 2013a. A new approach in sample treatment combined with UHPLC-MS/MS for the determination of multiclass mycotoxins in edible nuts and seeds. Talanta. 115:61–67.
  • Baltussen E, Sandra P, David F, Cramers C. 1999. Stir bar sorptive extraction (SBSE), a novel extraction technique for aqueous samples: theory and principles. J Microcolumn Sep. 11:737–747.
  • Beltrán E, Ibáñez M, Portolés T, Ripollés C, Sancho JV, Yusà V, Marín S, Hernández F. 2013. Development of sensitive and rapid analytical methodology for food analysis of 18 mycotoxins included in a total diet study. Analytica Chimica Acta. 783::39–48.
  • Beltrán E, Ibáñez M, Vicente Sancho J, Ángel Cortés M, Yusà V, Hernández F. 2011. UHPLC–MS/MS highly sensitive determination of aflatoxins, the aflatoxin metabolite M1 and ochratoxin A in baby food and milk. Food Chem. 126:737–744.
  • EC. 2006. European Commission 2006. Commission Regulation (EC) no. 1881/2006 of 19 December 2006 setting maximum levels for certain contaminants in foodstuffs. Off J Eur Union L. 2364:2005–2024.
  • EC. 2010. European Commission 2010. Commission Regulation (EC) no. 165/2010 of 26 February 2010 amending Regulation (EC) no. 1881/2006 setting maximum levels for certain contaminants in foodstuffs. Off J Eur Union. L2050:2011–2018.
  • Es’haghi Z, Beheshti HR, Feizy J. 2014. Extraction of aflatoxins from food samples using graphene-based magnetic nanosorbents followed by high-performance liquid chromatography: a simple solution to overcome the problems of immunoaffinity columns. J.Sep Sci. 37:2566–2573.
  • Fan W, He M, Wu X, Chen B, Hu B. 2015. Graphene oxide/polyethyleneglycol composite coated stir bar for sorptive extraction of fluoroquinolones from chicken muscle and liver. J Chromatogr A. 1418:36–44.
  • Fang X, Li H, Fang P, Pan J, Fang Q. 2016. A handheld laser-induced fluorescence detector for multiple applications. Talanta. 150:135–141.
  • Ge H, Jiang Y, Lian F, Zhang Y, Xia S. 2016. Quantitative determination of aflatoxin B1 concentration in acetonitrile by chemometric methods using terahertz spectroscopy. Food Chem. 209:286–292.
  • Golgea O, Hepsaga F, Kabakb B. 2016. Determination of aflatoxins in walnut sujuk and Turkish delight by HPLC-FLD method. Food Control. 59:731–736.
  • Han Z, Zheng Y, Luan L, Cai Z, Ren Y, Wu Y. 2010. An ultra-high-performance liquid chromatography-tandem mass spectrometry method for simultaneous determination of aflatoxins B1, B2, G1, G2, M1 and M2 in traditional Chinese medicines. Anal Chim Acta. 664:165–171.
  • He M, Chen B, Hu B. 2014. Recent developments in stir bar sorptive extraction. Anal Bioanal Chem. 406:2001–2026.
  • Hummers WS, Offeman RE. 1958. Preparation of graphitic oxide. J Am Chem Soc. 80:1339.
  • Kazemi E, Haji Shabani AM, Dadfarnia S. 2017. Application of graphene oxide-silica composite reinforced hollow fibers as a novel device for pseudo-stir bar solid phase microextraction of sulfadiazine in different matrices prior to its spectrophotometric determination. Food Chem. 221:783–789.
  • Ma H, Sun J, Zhang Y, Bian C, Xia S, Zhen T. 2016. Label-free immunosensor based on one-step electrodeposition of chitosan-gold nanoparticles biocompatible film on Au microelectrode for determination of aflatoxin B1 in maize. Biosens Bioelectron. 80:222–229.
  • Majer-Baranyi K, Zalán Z, Mörtl M, Juracsek J, Szendrő I, Székács BA, Adányi N. 2016. Optical waveguide lightmode spectroscopy technique-based immunosensor development for aflatoxin B1 determination in spice paprika samples. Food Chem. 211:972–977.
  • Miró-Abella1 E, Herrero P, Canela N, Arola L, Borrull F, Ras R, Fontanals N. 2017. Determination of mycotoxins in plant-based beverages using QuEChERS and liquid chromatography–tandem mass spectrometry. Food Chem. 229:366–372.
  • Ran C, Chen D, Ma H, Jiang Y. 2017. Graphene oxide adsorbent based dispersive solid phase extraction coupled with multi-pretreatment clean-up for analysis of trace aflatoxins in traditional proprietary Chinese medicines. J Chromatogr B. 1044–1045:120–126.
  • Ren Y, Zhang Y, Shao S, Cai Z, Feng L, Pan H, Wang Z. 2007. Simultaneous determination of multi-component mycotoxin contaminants in foods and feeds by ultra-performance liquid chromatography tandem mass spectrometry. J Chromatogr A. 1143(1–2):48–64.
  • Sabet F, Hosseini M, Khabbaz H, Dadmehr M, Ganjali M. 2017. FRET-based aptamer biosensor for selective and sensitive detection of aflatoxin B1 in peanut and rice. Food Chem. 220:527–532.
  • Santos VO, Pelegrini PB, Mulinari F, Lacerda AF, Moura RS, Cardoso LPV, Buhrer-Sekula S, Millerf RNG, Grossi-de-Sa MF. 2017. Development and validation of a novel lateral flow immunoassay device for detection of aflatoxins in soy-based foods. Anal Methods. 9:2715–2722.
  • Simão V, Merib J, Dias A, Carasek E. 2016. Novel analytical procedure using a combination of hollow fiber supported liquid membrane and dispersive liquid–liquid microextraction for the determination of aflatoxins in soybean juice by high performance liquid chromatography-fluorescence detector. Food Chem. 196:292–300.
  • Sirhan AY, Tan GH, Wong RCS. 2013. Determination of aflatoxins in food using liquid chromatography coupled with electrospray ionization quadrupole time of flight mass spectrometry (LC-ESI-QTOF-MS/MS). Food Control. 31:35–44.
  • Sitko R, Zawisza B, Malicka E. 2013. Graphene as a new sorbent in analytical chemistry. Trends Anal Chem. 51:33–43.
  • Wan Ainiza WM, Jinap S, Sanny M. 2015. Simultaneous determination of aflatoxins and ochratoxin A in single and mixed spices. Food Control. 50:913–918.
  • Xie F, Lai W, Saini J, Shan S, Cui X, Liu D. 2014. Rapid pretreatment and detection of trace aflatoxin B1 in traditional soybean sauce. Food Chem. 150:99–105.
  • Xie J, Sun Y, Zheng Y, Wang C, Sun S, Li J, Ding S, Xia X, Jiang H. 2017. Preparation and application of immunoaffinity column coupled with dcELISA detection for aflatoxins in eight grain foods. Food Control. 73:445–451.
  • Yu L, Li P, Zhang Q, Zhang W, Ding X, Wang X. 2013. Graphene oxide: an adsorbent for the extraction and quantification of aflatoxins in peanuts by high-performance liquid chromatography. J Chromatogr A. 1318:27–34.
  • Zhang W, Zhang Z, Zhang J, Meng J, Bao T, Chen Z. 2014. Covalent immobilization of graphene onto stainless steel wire for jacket-free stir bar sorptive extraction. J Chromatogr A. 1351:12–20.
  • Zhang Z, Mwadini MA, Chen Z. 2016. Polytetrafluoroethylene-jacketed stirrer modified with graphene oxide and polydopamine for the efficient extraction of polycyclic aromatic hydrocarbons. J Sep Sci. 39:4011–4018.

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