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ARTICLES

A sensitive chemiluminescent enzyme immunoassay for carbofuran residue in vegetable, fruit and environmental samples

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Pages 345-356 | Received 15 Jul 2011, Accepted 11 May 2012, Published online: 12 Jun 2012

References

  • Abad, A., Moreno, M.J., & Montoya, A. (1997). A monoclonal immunoassay for carbofuran and its application to the analysis of fruit juices. Analytica Chimica Acta, 347, 103–110.
  • Abad, A., Moreno, M.J., & Montoya, A. (1999). Development of monoclonal antibody based immunoassays to the N-methylcarbamate pesticide carbofuran. Journal of Agricultural and Food Chemistry, 47, 2475–2485.
  • Casino, P., Morais, S., Puchades, R., & Maquieira, A. (2001). Evaluation of enzyme-linked immunoassays for the determination of chloroacetanilides in water and soils. Environmental Science & Technology, 35, 4111–4119.
  • Cochrane, W.P., Lanouette, M., & Trudeau, S. (1982). Determination of aldicarb, aldicarb sulfoxide, aldicarb sulfone and carbofuran residues in water using high-performance liquid chromatography. Journal of Chromatography A, 243, 307–314.
  • Concepcion, F., Gonzalo, P., Fernando, J., & Eugenio, R. (1993). High-performance liquid chromatographic analysis of carbofuran residues in tomatoes grown in hydroponics. Journal of Chromatography A, 643, 351–355.
  • Deng, A., Kolar, V., Ulrich, R., & Franek, M. (2002). Direct competitive ELISA for the determination of polychlorinated biphenyls in soil samples. Analytical and Bioanalytical Chemistry, 373, 685–690.
  • Fu, Z.M., Jin, M.C., Jin, Y.G., Yang, Y., Fu, C., & Jiao, X.L. (2005). Study on the determination of carbofuran residues in vegetable by GC/MS. Chinese Journal of Healthy Laboratory Technology, 15, 421–422.
  • Gui, W.J. (2007). Industrial technique for pesticide rapid test ELISA kit – Preparation of triazophos and carbofuran ELISA kits (PhD thesis), Zhejiang University, China, 52 pp.
  • Gui, W.J., Jin, M.J., Sun, L.F., Guo, Y.R., & Zhu, G.N. (2009). Residues determination of carbofuran in vegetables based on sensitive time-resolved fluorescence immunoassay. Food and Agricultural Immunology, 20, 49–56.
  • Gupta, R.C. (1994). Carbofuran toxicity. Journal of Toxicology and Environmental Healthy, 43, 383–418.
  • Harrison, R.O., Brimfield, A.A., & Nelson, J.O. (1989). Development of a monoclonal antibody based enzyme immunoassay method for analysis of maleic hydrazide. Journal of Agricultural and Food Chemistry, 37, 958–964.
  • Han, L.J., & Wang, L.M. (2001). Determination of methamidophos, flolimat and carbofuran by GC method in two vegetables. Chinese Journal of Pesticide Science, 3, 84–92.
  • Klaus, W., Reinhard, N., & Michael, S. (2011). Simultaneous determination of four different antibiotic residues in honey by chemiluminescence multianalyte chip immunoassays. Microchimica Acta, 173, 1–9.
  • Knight, C.S., Crum, M.A., & Hardy, R.W. (2007). Evaluation of the LIAISON chemiluminescence immunoassay for diagnosis of syphilis. Clinical and Vaccine Immunology, 14, 710–713.
  • Kondo, M., Yamashita, H., Uchigashima, M., Kono, T., Takemoto, T., & Miyake, S. (2009). Development of an enzyme-linked immunosorbent assay for residue analysis of the insecticide emamectin benzoate in agricultural products. Journal of Agricultural and Food Chemistry, 57, 359–364.
  • Javier, R.A., Francisco, S.B., Nuria, S., & Marco, M.P. (2009). Development of an enzyme-linked immunosorbent assay for determination of the miticide bromopropylate. Journal of Agricultural and Food Chemistry, 57, 375–384.
  • Jin, R.Y., Wu, J.X., Zhu, G.N., Chen, Z.L., & Shou, L.F. (2006). Development of the monoclonal antibody to carbofuran. Chinese Journal of Agro-Environment Science, 25, 1276–1280.
  • Lehotay, S.J., Kok, A.D., Hiematra, M., & Bodegraven, P. (2005). Validation of a fast and easy method for the determination of residues from 229 pesticides in fruits and vegetables using gas and liquid chromatography and mass spectrometric detection. Journal of AOAC International, 88, 595–613.
  • Liang, C.Z., Jin, R.Y., Gui, W.J., & Zhu, G.N. (2007). Enzyme-linked immunosorbent assay based on a monoclonal antibody for the detection of the insecticide triazophos: assay optimization and application to environmental samples. Environmental Science & Technology, 41, 6783–6788.
  • Liang, X., Xie, R., Wang, C.M., Gui, W.J., & Zhu, G.N. (2012). Development of a broad-selective immunoassay for multi-residue determination of type II pyrethroids in West Lake water. Food and Agricultural Immunology. DOI: 10.1080/09540105.2011.641169
  • Liu, Y.M., Mu, H.B., & Zheng, Y.L. (2007). Capillary electrophoretic immunoassay for alpha-fetoprotein with chemiluminescence detection. Journal of Chromatography B, 855, 280–285.
  • Lu, Y., Xu, N., Zhang, Y., Liu, B., Song, Y., & Wang, S. (2010). Development of general immunoassays for pyrethroids: a new approach for hapten synthesis using pyrethroid metabolite analogue and application to food samples. Food and Agricultural Immunology, 21, 27–45.
  • Petropoulou, S.E., Gikas, E., Tsarbopoulos, A., & Siskos, P. (2006). Gas chromatographic–tandem mass spectrometric method for the quantitation of carbofuran, carbaryl and their main metabolites in applicators' urine. Journal of Chromatography A, 1108, 99–110.
  • Piao, Y.Z., Kim, Y.J., Kim, Y.A., Lee, H.S., Hammock, B.D., & Lee, Y.T. (2009). Development of ELISAs for the Class-specific determination of organophosphorus pesticides. Journal of Agricultural and Food Chemistry, 57, 10004–10013.
  • Quan, Y., Chen, M., Zhan, Y., & Zhang, G. (2011). Development of an enhanced chemiluminescence ELISA for the rapid detection of acrylamide in food products. Journal of Agricultural and Food Chemistry, 59, 6895–6899.
  • Rajkowski, K.M., Cittanova, N., Desfosses, B., & Jayle, M.F. (1977). The conjugation of testosterone with horseradish peroxidase and a sensitive enzyme assay for the conjugate. Steroids, 29, 701–713.
  • Wang, C.M., Liu, Y.H., Guo, Y.R., Liang, C.Z., Li, X.B., & Zhu, G.N. (2009). Development of a McAb-based immunoassay for parathion and influence of the competitor structure. Food Chemistry, 115, 365–370.
  • Yen, J.H., Hsiao, F.L., & Wang, Y.S. (1997). Assessment of the insecticide Carbofuran's potential to contaminate groundwater through soils in the subtropics. Ecotoxicology and Environmental Safety, 38, 260–265.
  • Yu, F., Vdovenko, M., Wang, J., & Sakhorov, I. (2011). Comparison of enzyme linked-immunosorbent assays with chemiluminescent and colorimetric detection for determination of ochratoxin A in food. Journal of Agricultural and Food Chemistry, 59, 809–813.
  • Zhang, Q., Wang, X., & Li, Z. (2009). Evaluation of alpha-fetoprotein (AFP) in human serum by chemiluminescence enzyme immunoassay with magnetic particles and coated tubes as solid phases. Analytica Chimica Acta, 631, 212–217.
  • Zhu, G.N., Jin, M.J., Gui, W.J., Guo, Y.R., Jin, R.Y., Wang, C.M., et al. (2008). Development of a direct competitive enzyme-linked immunoassay for carbofuran in vegetables. Food Chemistry, 17, 1737–1742.

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