273
Views
0
CrossRef citations to date
0
Altmetric
Articles

Simultaneous determination of ochratoxin A and enterotoxin A in milk by magnetic nanoparticles based fluorescent immunoassay

ORCID Icon, , &
Pages 1218-1236 | Received 23 Dec 2020, Accepted 30 Mar 2021, Published online: 06 May 2021

References

  • Abril A, Villa T, Barros-Velázquez J, Cañas B, Sánchez-Pérez A, Calo-Mata P, Carrera M. 2020. Staphylococcus aureus exotoxins and their detection in the dairy industry and mastitis. Toxins. 12(537). doi:10.3390/toxins12090537.
  • Agriopoulou S, Stamatelopoulou E, Varzakas T. 2020. Advances in analysis and detection of major mycotoxins in foods. Foods. 9(4):518. doi:10.3390/foods9040518.
  • Becheva Z, Atanasova M, Ivanov Y, Godjevargova T. 2020. Magnetic nanoparticle-based fluorescence immunoassay for determination of ochratoxin A in milk. Food Anal Methods. 1–11. doi:10.1007/s12161-020-01848-7.
  • Becheva Z, Gabrovska K, Godjevargova T, Zvereva E. 2019. Aflatoxin B1 determination in peanuts by magnetic nanoparticle–based immunofluorescence assay. Food Anal Methods. 12:1456–1465. doi:10.1007/s12161-019-01480-0.
  • Boudra H, Barnouin J, Dragacci S, Morgavi DP. 2007. Aflatoxin M1 and ochratoxin A in raw bulk milk from french dairy herds. J Dairy Sci. 90:3197–3201. doi:10.3168/jds.2006-565.
  • Breitholtz-Emanuelsson A, Olsen M, Oskarsson A, Palminger I, Hult K. 1993. Ochratoxin A in cow’s milk and in human milk with corresponding human blood samples. JAOAC Int. 76(4):842–846. doi:10.1093/jaoac/76.4.842.
  • Bui-Klimke TR, Wu F. 2015. Ochratoxin A and human health risk: a review of the evidence. Crit Rev Food Sci Nutr. 55:1860–1869. doi:10.1080/10408398.2012.724480.
  • Chen XJ, Li ZZ, Guo JY, Li DM, Gao HL, Wang Y, Xu CL. 2017. Simultaneous screening for marbofloxacin and ofloxain residues in animal derived foods using an indirect competitive immunoassay. Food Agric Immunol. 28(3):489–499. doi:10.1080/09540105.2017.1297780.
  • Clarisse T, Michèle S, Olivier T, Valérie E, Vincent M, Jacques-Antoine H, Michel G, Florence V. 2013. Detection and quantification of staphylococcal enterotoxin A in foods with specific and sensitive polyclonal antibodies. Food Control. 32:255–261. doi:10.1016/j.foodcont.2012.11.021.
  • Cui X, Jin M, Du P, Chen G, Zhang C, Zhang Y, ShaoKey Y, Wang J. 2018. Development of immunoassays for multi-residue detection of small molecule compounds. Food Agric Immunol. 29(1):1–15. doi:10.1080/09540105.2018.1428284.
  • El-Masry S, El-Kady I, Zaghloul MH, Al-Badrawey MK. 2008. Rapid and simple detection of a mycobacterium circulating antigen in serum of pulmonary tuberculosis patients by using a monoclonal antibody and Fast-Dot-ELISA. Clin Biochem. 41(3):145–151. doi:10.1016/j.clinbiochem.2007.11.008.
  • Elzupir AO, Makawi ZA, Elhussein AM. 2009. Determination of aflatoxins and ochratoxin a in dairy cattle feed and milk in wad medani. Sudan J Anim Vet Adv. 8(12):2508–2511.
  • 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. 364:5–24.
  • European Commission. 2012. Commission regulation (EU) No 594/2012 of 5 July 2012 amending regulation (EC) 1881/2006 as regards the maximum levels of the contaminants ochratoxin A, non dioxin-like PCBs and melamine in foodstuffs. Off J Eur Union. 176:43–45.
  • Flores-Flores ME, González-Peñas E. 2018. Analysis of mycotoxins in peruvian evaporated cow milk. Beverages. 4:34. doi:10.3390/beverages4020034.
  • Godjevargova, T., Becheva, Z., Ivanov, Y., & Tchorbanov, A. (2019). Immunofluorescence assay using monoclonal and polyclonal antibodies for detection of staphylococcal enterotoxins A in milk. Open Biotechnol J.13(1). doi:10.2174/187407070190130137.
  • Godjevargova T, Becheva Z, Ivanov Y, Tchorbanov A. 2019. Immunofluorescence assay using monoclonal and polyclonal atibodies for detection of staphylococcal enterotoxins A in milk. Open Biotech J. 13:137–145. doi:10.2174/187407070190130137.
  • Goto T, Peterson SW, Ito Y, Wicklaw DT. 1997. Mycotoxin producing ability of Aspergillus tamarii. Mycotoxins. 44:17–20. doi:10.2520/myco1975.1997.17.
  • Ha TH. 2015. Recent advances for the detection of Ochratoxin A. Toxins. 7(12):5276–5300. doi:10.3390/toxins7124882.
  • Henekinne JA, De Buyser ML, Dragacci S. 2012. Staphylococcus aureus and its food poisoning toxins: characterization and outbreak investigation. FEMS Microbiol Rev. 36:815–836. doi:10.1111/j.1574-6976.2011.00311.x.
  • Hennekinne JA, Brun V, De Buyser ML, Dupuis A, Ostyn A, Dragacci S. 2009. Innovative application of mass spectrometry for the characterization of staphylococcal enterotoxins involved in food poisoning outbreaks. Appl Environ Microbiol. 75:882–884. doi:10.1128/AEM.01924-08.
  • Hennekinne JA, Guillier F, Perelle S, De Buyser ML, Dragacci S, Krys S, Lombard B. 2007. Intralaboratory validation according to the EN ISO 16 140 Standard of the Vidas SET2 detection kit for use in official controls of staphylococcal enterotoxins in milk products. J Appl Microb. 102:1261–1272. doi:10.1111/ijfs.14018.
  • Hu S, Ouyang W, Guo L, Lin Z, Jiang X, Qiu B, Chen G. 2017. Facile synthesis of Fe3O4/g-C3N4/HKUST-1 composites as a novel biosensor platform for ochratoxin A. Biosens Bioelectron. 92:718–723. doi:10.1016/j.bios.2016.10.006.
  • Jiang H, Li X, Xiong Y, Pei K, Nie L, Xiong Y. 2017. Silver nanoparticle-based fluorescence-quenching lateral flow immunoassay for sensitive detection of ochratoxin A in grape juice and wine. Toxins. 28:83–89. doi:10.3390/toxins9030083.
  • Kamal R, Mansour M, Elalfy M, Galala W. 2019. Quantitative detection of aflatoxin M1, ochratoxin and zearalenone in fresh raw milk of cow, buffalo, sheep and goat by UPLC XEVO–TQ in Dakahli Governorate, Egypt. J Vet Med Health. 3(1):1–5. doi:10.23880/oajvsr-16000181.
  • Klotz M, Opper S, Heeg K, Zimmermann S. 2003. Detection of Staphylococcus aureus enterotoxins A to D by real-time fluorescence PCR Assay. J Clin Microbiol. 41:4683–4687. doi:10.1128/JCM.41.10.4683–4687.2003.
  • Koike H, Kanda M, Hayashi H, Matsushima Y, Ohba Y, Nakagawa Y, Nagano C, Sekimura K, Hirai A, Shindo T, et al. 2019. Quantification of staphylococcal enterotoxin type A in cow milk by using a stable isotope-labelled peptide via liquid chromatography-tandem mass spectrometry. Food Addit Contam Part A. 36:1098–1108. doi:10.1080/19440049.2019.1615641.
  • Kruger N. 2009. The Bradford method for protein quantitation. In: John MW, editor. The protein protocols handbook. Totowa (NJ): Humana Press; p. 17–24.
  • Kuang H, Wang W, Xu L, Ma W, Liu L, Wang L, Xu C. 2013. Monoclonal antibody-based sandwich ELISA for the detection of staphylococcal enterotoxin A. Int J Environ Res Public Health. 10:1598–1608. doi:10.3390/ijerph10041598.
  • Kurtzman CP, Horn BW, Hesseltine CW. 1987. Aspergillus nominus, a new aflatoxin producing species related to A.flavus and A. tamarii. Antonie Van Leewenhoek. 53(3):147–158. doi:10.1007/BF00393843.
  • Larkin EA, Carman RJ, Krakauer T, Stiles BG. 2009. Staphylococcus aureus: the toxic presence of a pathogen extraordinaire. Curr Med Chem. 16(30):4003–4019. doi:10.2174/092986709789352321.
  • Lee HJ, Ryu D. 2017. Worldwide occurrence of mycotoxins in cereals and cereal-derived food products: public health perspectives of their co-occurrence. J Agric Food Chem. 65:7034–7051. doi:10.1021/acs.jafc.6b04847.
  • Li YF, Sun YM, Beier RC, Lei HT, Gee S, Hammock B, Wang H, Wang Z, Sun X, Yu-Dong Shen Y, et al. 2017. Immunochemical techniques for multianalyte analysis of chemical residues in food and the environment: a review. Trends Anal Chem. 88:25–40. doi:10.1016/j.trac.2016.12.010.
  • Liu X, Tang Z, Duan Z, He Z, Shu M, Wang X, Gee SJ, Hammock BD, Xu Y. 2017. Nanobody-based enzyme immunoassay for ochratoxin A in cereal with high resistance to matrix interference. Talanta. 164:154–158. doi:10.1016/j.talanta.2016.11.039.
  • Medina BM. 2006. Development of a fluorescent latex microparticle immunoassay for the detection of staphylococcal enterotoxin B. J Agric Food Chem. 54(4937–4942). doi:10.1021/jf053253q.
  • Mohammed T, Khalid A, Saadabi A. 2014. PCR detection of staphylococcal enterotoxin A and B genes in Staphylococcus aureus isolated from salted fermented fish. Microbiol J. 4:51–56. doi:10.3923/mj.2014.51.56.
  • Muratovic AZ, Hagström T, Rosén J, Granelli K, Hellenäs KE. 2015. Quantitative analysis of Staphylococcal enterotoxins A and B in food matrices using ultra high-performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS). Toxins. 7:3637–3656. doi:10.3390/toxins7093637.
  • Nguyen A, Tallent S. 2018. From commensal to consumer: staphylococcus aureus toxins, diseases, and detection methods. JAOAC Int. 101:1127–1134. doi:10.5740/jaoacint.17-0366.
  • Orlov A, Khodakova J, Nikitin M, Shepelyakovskaya A, Brovko F, Laman A, Grishin E, Nikitin P. 2013. Magnetic immunoassay for detection of staphylococcal toxins in complex media. Anal Chem. 85:1154–1163. doi:10.1021/ac303075b.
  • Pinchuk I, Beswick E, Reyes V. 2010. Staphylococcal enterotoxins. Toxins. 2(8):2177–2197. doi:10.3390/toxins2082177.
  • Qin P, Huang D, Xu Z, Guan Y, Bing Y, Yu A. 2019. A potential reusable fluorescent aptasensor based on magnetic nanoparticles for ochratoxin A analysis. Open Chem. 17(1). doi:10.1515/chem-2019-0140.
  • Qu J, Xie H, Zhang S, Luo P, Guo P, Chen X, Ke Y, Zhuang J, Zhou F, Jiang W. 2019. Multiplex flow cytometric immunoassays for high-throughput screening of multiple mycotoxin residues in milk. Food Anal Methods. 12:877–886. doi:10.1007/s12161-018-01412-4.
  • R-Biopharm Official European Screening Method. 2009. Official European screening method for staphylococcal enterotoxins in food RIDASCREEN® SET total. https://foodr-biopharmcom/wp-content/uploads/sites/2/2012/06/r4105_set_total_de_en_fr_17-08-09pdf
  • Roque A, Bispo S, Pinheiro A, Antunes J, Gonçalves D, Ferreira H. 2009. Antibody immobilization on magnetic particles. J Mol Recog J. 22(2):77–82. doi:10.1002/jmr.913.
  • Sasaki T, Terano Y, Shibata T, Kawamoto H, Kuzuguchi T, Kohyama E, Watanabe T, Ohyama T, Gemba, M. (2005). Establishment of highly specific and quantitative immunoassay systems for staphylococcal enterotoxin A, B, and C using newly‐developed monoclonal antibodies. Microbiol Immunol.49(7):589–597. doi:10.1111/j.1348-0421.2005.tb03650.x.
  • Shepelyakovskaya A, Rudenko N, Karatovskaya A, Shchannikova M, Shulcheva I, Fursova K, Zamyatina A, Boziev K, Oleinikov V, Brovko F. 2020. Development of a bead-based multiplex assay for the simultaneous quantification of three staphylococcal enterotoxins in food by flow cytometry. Food Anal Methods. 13:1202–1210. doi:10.1007/s12161-020-01736-0.
  • Singh J, Mehta A. 2020. Rapid and sensitive detection of mycotoxins by advanced and emerging analytical methods: a review. Food Sci Nutr. 8(5):2183–2204. doi:10.1002/fsn3.1474.
  • Su R, Tang X, Feng L, Yao G, Chen J. 2020. Development of quantitative magnetic beads-based flow cytometry fluorescence immunoassay for aflatoxin B1. Microchem J. 155:104715. doi:10.1016/j.microc.2020.104715.
  • Tale Hel Abad S, Joshaghani HR, Rahimzadeh H, Niknejad F. 2016. Ochratoxin A in cow’s milk collected from cattle farms of Golestan province. Med Lab J. 10(1):13–16. doi:10.18869/acadpub.mlj.10.1.13.
  • Tian J, Wei W, Wang J, Ji S, Chen G, Lu J. 2018. Fluorescence resonance energy transfer aptasensor between nanoceria and graphene quantum dots for the determination of ochratoxin A. Anal Chim Acta. 1000:265–272. doi:10.1016/j.aca.2017.08.018.
  • Turkoglu C, Keyvan E. 2019. Determination of aflatoxin M1 and ochratoxin A in raw, pasteurized and UHT milk in Turkey. Acta Sci Veter. 47:1626. doi:10.22456/1679-9216.89667.
  • Van Egmond H, Schothorst R, Jonker M. 2007. Review Regulations relating to mycotoxins in food perspectives in a global and European context. Anal Bioanal Chem. 389(1):147–157. doi:10.1007/s00216-007-1317-9..
  • Vila-Donat P, Marin S, Sanchis V, Ramos AJ. 2018. A review of the mycotoxin adsorbing agents, with an emphasis on their multi-binding capacity, for animal feed decontamination. Food Chem Toxicol. 114:246–259. doi:10.1016/j.fct.2018.02.044.
  • Wang X, Bao M, Wu J, Luo Y, Ma L, Wang Y, Zhang A, He C, Zhang H. 2014. Characterization and comparison of ochratoxin A-ovalbumin (OTA-OVA) conjugation by three methods. J Integr Agric. 13(5):1130–1136. doi:10.1016/S2095-3119(14)60767-X.
  • Wu S, Duan N, Gu H, Hao L, Ye H, Gong W, Wang Z. 2016. A review of the methods for detection of staphylococcus aureus enterotoxins. Toxins. 8:176–196. doi:10.3390/toxins8070176.
  • Xiong JL, Wang YM, Nennich TD, Li Y, Liu JX. 2015. Transfer of dietary aflatoxin B1 to milk aflatoxin M1 and effect of inclusion of adsorbent in the diet of dairy cows. J Dairy Sci. 98(4):2545–2554. doi:10.3168/jds.2013-7842.
  • Younis G, Ibrahim D, Awad A, El-Bardisy MM. 2016. Determination of aflatoxin M1 and ochratoxinA in milk and dairy products in supermarkets located in Mansoura City, Egypt. J Anim Vet Ad. 4:114–121. doi:10.14737/journal.aavs/2016/4.2.114.121.
  • Zamfir L-G, Geana I, Bourigua S, Rotariu L, Bala C, Errachid A, Jaffrezic-Renault N. 2011. Highly sensitive label-free immunosensor for ochratoxin a based on funcionalizaed magnetic nanoparticles and Eis/Spr detection. Sens Actuators. 159(1):178–184. doi:10.1039/C8TB03233E.
  • Zhang G-L, Feng Y-L, Song J-L, Zhou X-S. 2018a. Zearalenone: a mycotoxin with different toxic effect in domestic and laboratory animals’ granulosa cells. Front Genet. 9:667. doi:10.3389/fgene.2018.00667.
  • Zhang X, Li M, Cheng Z, Ma L, Zhao L, Li J. 2019. A comparison of electronic nose and gas chromatography–mass spectrometry on discrimination and prediction of ochratoxin A content in Aspergillus carbonarius cultured grape-based medium. Food Chem. 297:124850. doi:10.1016/j.foodchem.2019.05.124.
  • Zhang X, Wang Z, Xie H, Sun R, Cao T, Paudyal N, Fang W, Song H. 2018b. Development of a magnetic nanoparticles-based screen-printed electrodes (MNPs-SPEs) biosensorfor the quantification of ochratoxin A in cereal and feed samples. Toxins. 10:317. doi:10.3390/toxins10080317.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.