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免疫磁分离结合胶体金免疫层析法快速检测大肠杆菌O157∶H7 被引量:36

Establishment of a Method Combined Immunomagnetic Separation with Colloidal Gold Lateral Flow Assay and Its Application in Rapid Detection of Escherichia. coli O157∶H7
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摘要 以抗大肠杆菌O157∶H7单克隆抗体偶联磁珠制得免疫磁珠;以胶体金标记的抗大肠杆菌O157∶H7单克隆抗体为标记抗体,抗大肠杆菌O157∶H7多克隆抗体和驴抗鼠二抗分别作为检测线和质控线成分制备胶体金免疫层析试纸条。将免疫磁珠分离和胶体金免疫层析法相结合应用于大肠杆菌O157∶H7的现场快速检测中。结果表明:1 mL 7.6×103CFU/mL菌液经过免疫磁珠分离富集后,用胶体金免疫层析法检测可得到阳性结果。对于10 CFU/g大肠杆菌O157∶H7污染的食品样本,经过6 h预增菌,免疫磁珠分离和胶体金试纸条检测72 min即可检出。本方法的建立对于食品中有害物质的现场快速检测具有重要意义。 The immunomagnetic beads were prepared by coupling anti-Escherichia, coli O157:H7 monoclonal antibody with magnetic beads. The colloidal gold test strip was composited with anti-O157:H7 monoclonal antibody marked by colloidal gold as the detection antibody, anti-E, coli 0157: H7 polyclonal antibody as the test line and the donkey anti-mouse IgG secondary antibody as the control line. Immunomagnetic separation was combined with colloidal gold lateral flow assay, and this method was applied in the rapid detection of E. coli O157 :H7. The results showed that 1 mL of 7.6×10^3 CFU/mL of E. coli O157:H7 gave a positive result by using colloidal gold lateral flow after immunomagnetic separation. Food sample spiked with 10 CFU/g of E. coli O157 : H7 after 6 h of enrichment could be detected within 72 min of immunomagnetic separation and colloidal gold lateral flow assay. The method is of great value to the rapid on-site detection of harmful substance in food.
出处 《分析化学》 SCIE EI CAS CSCD 北大核心 2013年第12期1812-1816,共5页 Chinese Journal of Analytical Chemistry
基金 国家自然科学基金(No.31271863) 南昌大学食品科学与技术国家重点实验室自由探索课题(No.SKLF-ZZB-201307) 南昌市科技项目(No.2012-CYH-DW-SP-001)资助
关键词 免疫磁分离 胶体金 免疫层析 大肠杆菌O157 H7 Immunomagnetic separation Colloidal gold Immunochromatography Escherichia. coli O157:H7
作者简介 E—mail:talktolaiwh@163.com
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参考文献12

  • 1牛牧,杜美红,邓奕,高明远.亚微米级免疫磁球及其在细菌分离中的应用[J].高等学校化学学报,2011,32(2):322-326. 被引量:9
  • 2颜小飞,汪懋华,温新华,安冬.免疫磁分离技术结合阻抗测量法快速检测禽流感病毒[J].分析化学,2013,41(6):817-821. 被引量:6
  • 3Sung Y J, Suk H J, Sung H Y, Li T, Poo H, Kim M. Biosensors and Bioelectronics, 2013, 43: 432-439.
  • 4Yoshitomi K J, Jinneman K C, Zapata R, Weagant S D, Fedio W M. Journal of Food Science, 2012, 77(8): M481-M489.
  • 5Mendon?a M, Conrad N L, Concei??o F R, Moreira? N, da Silva W P, Aleixo, J A, Bhunia A K. BMC Microbiology, 2012, 12(1): 275.
  • 6Leuvering J H, Thal P J, Van Der Waart M, Schuurs A H. Journal of Immunological Methods, 1981, 45(2): 183-194.
  • 7Le T, Yan P, Xu J, Hao Y. Food Chemistry, 2013, 138(2-3): 1610-1615.
  • 8Moon J, Kim G, Lee S. Materials, 2012, 5(4): 634-643.
  • 9Ferens W A, Hovde C J. Foodborne Pathogens and Disease, 2011, 8(4): 465-487.
  • 10Li S, Liu H, Deng Y, Lin L, He N. Journal of Biomedical Nanotechnology, 2013, 9(7): 1254-1260.

二级参考文献49

  • 1武恩平,刘灵芝,张燕.郑州市2005年肠出血性大肠杆菌O157:H7感染状况调查[J].现代预防医学,2006,33(12):2455-2456. 被引量:15
  • 2Safarik I. , Safarikova M.. J. Chromatogr. B[J] , 1999, 722(1/2) : 33--53.
  • 3Ugelstad J. , Kaggerud K. H. , Hansen F. K. , Berge A.. Macromol. Chem. [J] , 1979, 180(3) : 737-744.
  • 4Ugelstad J. , Berge A. , Etlingsen T. , Schmid R. , Nilsen T. N. , Mork P. C. , Stenstad P. , Hornes E. , Olsvik O.. Prog. Polym. Sci. [J], 1992, 17(1): 87-161.
  • 5Ugelstad J. , Stenstad P. , Kilaas L. , Prestvik W. S. , Helje R. , Berge A. , Homes E.. Blood Purifieat. [ J ] , 1993, 11 (6) : 349-369.
  • 6ChatterjeeJ., HaikY., ChenC. J.. J. Magn. Magn. Mater.[J], 2001, 225(1/2): 21--29.
  • 7Krizova J., Spanova A., Rittich B., Horak D.. J. Chromatogr. A[J], 2005, 1064(2) : 247--253.
  • 8Ma Z. Y. , Guan Y. P., Lu H. Z.. React. Funet. Polym. [J], 2006, 66(6) : 618-624.
  • 9Prikryl P. , Horak D. , Ticha M. , Kuderova Z.. J. Sep. Sci. [J], 2006, 29(16) : 2541--2549.
  • 10Wilson R. , Spiller D. G. , Prior I. A. , Bhatt R. , Hutchinson A.. J. Mater. Chem. [J] , 2007, 17(41 ) : 4400--4406.

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