317
Views
5
CrossRef citations to date
0
Altmetric
Articles

Multiplex immunoassay based on biochip technology for the screening of antibiotic residues in milk: validation according to the European guideline

, , &
Pages 2348-2365 | Received 02 Aug 2018, Accepted 02 Oct 2018, Published online: 04 Dec 2018

References

  • Adrian J, Font H, Diserens JM, Sanchez-Baeza F, Marco MP. 2009. Generation of broad specificity antibodies for sulfonamide antibiotics and development of an enzyme-linked immunosorbent assay (ELISA) for the analysis of milk samples. J. Agric. Food Chem. 57:385–394.
  • Auerswald J, Berchtold S, Diserens J-M, Gijs MM, Jin Y-H, Knapp H, Leterrier Y, J-A M, Suárez G, Voirin G. 2009. Lab-on-a-chip for analysis and diagnostics: application to multiplexed detection of antibiotics in milk. In: Nanosystems design and technology. Boston (MA): Springer; p. 117–142.
  • Berruga MI, Molina A, Althaus RL, Molina MP. 2016. Control and prevention of antibiotic residues and contaminants in sheep and goat’s milk. Small Ruminant Research. 142:38–43.
  • Bhand S, Mishra GK. 2017. Electrochemical quartz crystal nanobalance (EQCN) based biosensor for sensitive detection of antibiotic residues in milk. In: Prickril B, Rasooly A, editors. Methods in molecular biology. New York (NY): Biosensors and Biodetection Publisher Humana Press; Vol. 1572. p. 263–276.
  • Chen Y, Chen Q, Han M, Liu J, Zhao P, He L, Zhang Y, Niu Y, Yang W, Zhang L. 2016. Near-infrared fluorescence-based multiplex lateral flow immunoassay for the simultaneous detection of four antibiotic residue families in milk. Biosens. Bioelectron. 79:430–434.
  • Conzuelo F, Campuzano S, Gamella M, Pinacho DG, Reviejo AJ, Marco MP, Pingarrón JM. 2013. Integrated disposable electrochemical immunosensors for the simultaneous determination of sulfonamide and tetracycline antibiotics residues in milk. Biosens. Bioelectron. 50:100–105.
  • Conzuelo F, Ruiz-Valdepeñas Montiel V, Campuzano S, Gamella M, Torrente-Rodríguez RM, Reviejo AJ, Pingarrón JM. 2014. Rapid screening of multiple antibiotic residues in milk using disposable amperometric magnetosensors. Anal. Chim. Acta. 820:32–38.
  • [CRL] Community Reference Laboratories. 2010. Guideline for the validation of screening methods for residues of veterinary medicines (initial validation and transfer). Available from:≤http://ec.europa.eu/food/food/chemicalsafety/residues/lab_analysis_en.htm≥: Guideline_Validation_Screening_en.pdf. 1-18.
  • [CRL] Community Reference Laboratories. 2007. Guidance paper of 7th December 2007 Community Reference Laboratories. 2007. CRLs view on state of the art analytical methods for national residue control plans. Community Reference Laboratories (CRLs) for residues according to Council Directive 96/23/EC. 1–8.
  • Delatour T, Racault L, Bessaire T, Desmarchelier A. 2018. Screening of veterinary drug residues in food by LC-MS/MS. Background and challenges. Food Addit. & Contam.: Part A. 35:632–645.
  • Desmarchelier A, Fan K, Minh Tien M, Savoy M-C, Tarres A, Fuger D, Goyon A, Bessaire T, Mottier P. 2018. Determination of 105 antibiotic, anti-inflammatory, antiparasitic agents and tranquilizers by LC-MS/MS based on an acidic QuEChERS-like extraction. Food Addit. & Contam.: Part A. 35:646–660.
  • European Commission. 1996. Council directive 96/23/EC of 29 April 1996 on measures to monitor certain substances and residues thereof in live animals and animal products and repealing Directives 85/358/EEC and 86/469/EEC and Decisions 89/187/EEC and 91/664/EEC. L125: 10–32.
  • European Commission. 2002. Commission decision (ec) n° 2002/657 of 12 August 2002 implementing council directive 96/23/EC concerning the performance of analytical methods and interpretation of results. Off J Eur Communities. L221:8–36.
  • European Commission. 2004. Regulation (EC) No 726/2004 of the european parliament and of the council of 31 March 2004 laying down Community procedures for the authorisation and supervision of medicinal products for human and veterinary use and establishing a European Medicines Agency.
  • European Commission. 2009. Council regulation (eu) (2010) n 37/2010 of 22 DECEMBer 2009 on pharmacologically active substances and their classification regarding maximum residue limits in foodstuffs of animal origin. Off J Eur Union. L15:1–72.
  • European Commission. 2017. Regulation (EU) 2017/625 of the European Parliament and of the Council of 15 March 2017 on official controls and other official activities performed to ensure the application of food and feed law, rules on animal health and welfare, plant health and plant protection products. 1–142.
  • Gaudin V, Fontaine J, Maris P. 2001. Screening of penicillin residues in milk by a surface plasmon resonance. Anal. Chim. Acta. 436:191–198.
  • Gaudin V, Hedou C, Soumet C, Verdon E. 2014a. Evaluation and validation of a biochip multi-array technology for the screening of 14 sulphonamide and trimethoprim residues in honey according to the European guideline for the validation of screening methods for veterinary medicines. Food Agric. Immunol.. 26:477–495.
  • Gaudin V, Hedou C, Soumet C, Verdon E. 2014b. Evaluation and validation of biochip multi-array technology for the screening of six families of antibiotics in honey according to the European guideline for the validation of screening methods for residues of veterinary medicines. Food Addit. & Contam.: Part A.. 31:1699–1711.
  • Gaudin V, Hedou C, Soumet C, Verdon E. 2016. Evaluation and validation of a multi-residue method based on biochip technology for the simultaneous screening of six families of antibiotics in muscle and aquaculture products. Food Addit. & Contam.: Part A. 33:403–419.
  • Gaudin V, Maris P, Fuselier R, Ribouchon JL, Cadieu N, Rault A. 2004. Validation of a microbiological method: the STAR protocol, a five-plate test, for the screening of antibiotic residues in milk. Food Addit Contam. 21:422–433.
  • Gaugain-Juhel M, Delépine B, Gautier S, Fourmond MP, Gaudin V, Hurtaud-Pessel D, Verdon E, Sanders P. 2009. Validation of a liquid chromatography-tandem mass spectrometry screening method to monitor 58 antibiotics in milk: a qualitative approach. Food Addit. & Contam.: Part A. 26:1459–1471.
  • Han RW, Zheng N, Yu ZN, Wang J, Xu XM, Qu XY, Li SL, Zhang YD, Wang JQ. 2015. Simultaneous determination of 38 veterinary antibiotic residues in raw milk by UPLC–MS/MS. Food Chem. 181:119–126.
  • Hennart SLA, Faragher J. 2012. Validation of the Delvotest SP NT DA. J. AOAC Int. 95:252–260.
  • [ISO/IDF] International Organization for Standardization/International Dairy Federation. 2010. Current situation & compilation of commercially available screening methods for the detection of inhibitors/antibiotic residues in milk. Diserens J-M, Henzelin B, Le Breton M-H, Savoy Perroud M‐C, editors. International Dairy Federation Bulletin. Vol. 442. Brussels (Belgium).
  • [ISO/IDF] International Organization for Standardization/International Dairy Federation. 2014. Strategies for detecting antibiotic residues in milk: guidance on the application of screening and confirmatory methods in integrated dairy chain management. Diserens J-M, Pécou A, editors. Bulletin of the International Dairy Federation. Vol. 474. Brussels (Belgium).
  • [ISO/IEC] International Organization for Standardization/International Electrotechnical Commission. 2005. 17025 NEIC, General requirements for the competence of testing and calibration laboratories.
  • Jank L, Martins MT, Arsand JB, Motta TMC, Feijó TC, Dos Santos Castilhos T, Hoff RB, Barreto F, Pizzolato TM. 2017. Liquid chromatography–tandem mass spectrometry multiclass method for 46 antibiotics residues in milk and meat: development and validation. Food Anal Methods. 10:2152–2164.
  • Li Z, Li Z, Zhao D, Wen F, Jiang J, Xu D. 2017. Smartphone-based visualized microarray detection for multiplexed harmful substances in milk. Biosens. Bioelectron. 87:874–880.
  • Liang C, Zou M, Guo L, Huang G, Lu J, Xu Y, Shou L. 2012. Comparison of different ELISA formats for the detection of cephalexin and application validation. Anal. Lett. 45:1617–1631.
  • Liu Z, Zhang Y, Xu S, Zhang H, Tan Y, Ma C, Song R, Jiang L, Yi C. 2017. A 3D printed smartphone optosensing platform for point-of-need food safety inspection. Anal. Chim. Acta.. 966:81–89.
  • Mata L, Sanz D, Razquin P. 2016. Performance of eclipse farm test coupled to e-reader for antibiotic residues detection in raw milk. Food Anal Methods. 9:1–9.
  • Moretti S, Cruciani G, Romanelli S, Rossi R, Saluti G, Galarini R. 2016. Multiclass method for the determination of 62 antibiotics in milk. J. Mass Spectrom. 51:792–804.
  • Ortelli D, Cognard E, Jan P, Edder P. 2009. Comprehensive fast multiresidue screening of 150 veterinary drugs in milk by ultra-performance liquid chromatography coupled to time of flight mass spectrometry. J Chromatogr B. 877:2363–2374.
  • Ramezani M, Abnous K, Taghdisi SM. 2017. Optical and electrochemical aptasensors for sensitive detection of streptomycin in blood serum and milk. In: Prickril B, Rasooly A, editors. Biosensors and biodetection: methods and protocols, volume 2: electrochemical, bioelectronic, piezoelectric, cellular and molecular biosensors. New York (NY): Springer New York; p. 403–420.
  • Rebe Raz S, Bremer MGEG, Haasnoot W, Norde W. 2009. Label-free and multiplex detection of antibiotic residues in milk using imaging surface plasmon resonance-based immunosensor. Anal. Chem. 81:7743–7749.
  • Sharma A, Chandra Singh A, Bacher G, Bhand S. 2016. Recent advances in aptamer- based biosensors for detection of antibiotic residues. Aptamers and Synthetic Antibodies. 2:43–54.
  • Tao X, Wang J, Xie Y, Zuo X, Mo F, Zhou S, Li H. 2017. Dual-label chemiluminescence strategy for multiplexed immunoassay of 20 fluoroquinolones, 15 β-Lactams, 15 sulfonamides, and cap in milk. Food Anal Methods. 10:3009–3022.
  • World Health Organisation. 2014. Antimicrobial resistance, Global report on surveillance.
  • Yan Z, Gan N, Li T, Cao Y, Chen Y. 2016. A sensitive electrochemical aptasensor for multiplex antibiotics detection based on high-capacity magnetic hollow porous nanotracers coupling exonuclease-assisted cascade target recycling. Biosens. Bioelectron. 78:51–57.
  • Zhou J, Nie W, Chen Y, Yang C, Gong L, Zhang C, Chen Q, He L, Feng X. 2018. Quadruplex gold immunochromatographic assay for four families of antibiotic residues in milk. Food Chem. 256:304–310.

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.