76
Views
12
CrossRef citations to date
0
Altmetric
Bioanalytical

Blind Laboratory Trials for Multiple Pathogens in Spiked Food Matrices

, , , , , , , , , & show all
Pages 3219-3231 | Received 17 Aug 2007, Accepted 10 Sep 2007, Published online: 04 Feb 2008

References

  • Ahn , S. and Walt , D. R. 2005 . Detection of Salmonella spp. using microsphere‐based, fiber‐optic DNA micro‐array . Anal. Chem. , 77 : 5041 – 5047 .
  • Anderson , G. P. and Nerurkar , N. L. 2002 . Improved fluoroimmunoassays using the dye Alexa Fluor 647 with the RAPTOR, a fiber optic biosensor . J. Immunol. Methods , 271 : 17 – 24 .
  • Arora , K. , Chand , S. and Malhotra , B. D. 2006 . Recent developments in bio‐molecular electronics techniques for food pathogens . Anal. Chim. Acta , 568 : 259 – 274 .
  • Bergwerff , A. A. and van Knapen , F. 2006 . Surface plasmon resonance biosensors for detection of pathogenic micro‐organisms: strategies to secure food and environmental safety . J. AOAC Int. , 89 : 826 – 831 .
  • Bohaychuk , V. M. , Gensler , G. E. , King , R. K. , Wu , J. T. and McMullen , L. M. 2005 . Evaluation of detection methods for screening meat and poultry products for the presence of foodborne pathogens . J. Food Protect. , 68 : 2637 – 2647 .
  • Buzby , J. C. and Roberts , T. 1997 . Economic costs and trade impacts of foodborne illness . World Health Stat. Quart. , 50 : 57 – 66 .
  • Buzby , J. C. , Roberts , T. , Lin , C. T.J. and MacDonald , J. M. 1997 . Bacterial foodborne disease: medical costs and productivity losses . Agricultural Economic Report—(U.S. Dept. of Agriculture) , Rep. No. 741
  • Che , Y. H. , Li , Y. , Slavik , M. and Paul , D. 2000 . Rapid detection of Salmonella typhimurium in chicken carcass wash water using an immunoelectrochemical method . J. Food Protect. , 63 : 1043 – 1048 .
  • Chemburu , S. , Wilkins , E. and Abdel‐Hamid , I. 2005 . Detection of pathogenic bacteria in food samples using highly‐dispersed carbon particles . Biosens. Bioelectron. , 21 : 491 – 499 .
  • Chen , C.‐S. and Durst , R. A. 2006 . Simultaneous detection of Escherichia coli O157:H7, Salmonella spp. and Listeria monocytogenes with an array‐based immunosorbent assay using universal protein G‐liposomal nanovesicles . Talanta , 69 : 232 – 238 .
  • Feldstein , M. J. , Golden , J. P. , Rowe , C. A. , MacCraith , B. D. and Ligler , F. S. 1999 . Array biosensor: optical and fluidics systems . J. Biomed. Microdevices , 1 : 139 – 153 .
  • Golden , J. P. , Shriver‐Lake , L. C. , Taitt , C. R. , Fertig , S. , Sapsford , K. E. and Ligler , F. S. 2004 . A portable array biosensor . Proc. SPIE , 5586 : 13 – 17 .
  • Golden , J. P. , Taitt , C. R. , Shriver‐Lake , L. C. , Shubin , Y. S. and Ligler , F. S. 2005 . A portable automated multianalyte biosensor . Talanta , 65 : 1078 – 1085 .
  • Goldschmidt , M. C. 2006 . The use of biosensor and micro‐array techniques in the rapid detection and identification of salmonellae . J. AOAC Int. , 89 : 530 – 537 .
  • Gracias , K. S. and McKillip , J. L. 2004 . A review of conventional detection and enumeration methods for pathogenic bacteria in food . Can. J. Microbiol. , 50 : 883 – 890 .
  • Guntupalli , R. , Lakshmanan , R. S. , Johnson , M. L. , Hu , J. , Huang , T.‐S. , Barbaree , J. M. , Vodyanoy , V. J. and Chin , B. A. 2007 . Magnetoelastic biosensor for the detection of Salmonella typhimurium in food products . Sens. Instrum. Food Qual. Safety , 1 : 3 – 10 .
  • Higgins , J. A. , Nasarabadi , S. , Karns , J. S. , Shelton , D. R. , Cooper , M. , Gbakima , A. and Koopman , R. P. 2003 . A handheld real time thermal cycler for bacterial pathogen detection . Biosens. Bioelectron. , 18 : 1115 – 1123 .
  • Ko , S. and Grant , S. A. 2006 . A novel FRET‐based optical fiber biosensor for rapid detection of Salmonella typhimurium . Biosens. Bioelectron. , 21 : 1283 – 1290 .
  • Ngundi , M. M. , Shriver‐Lake , L. C. , Moore , M. H. , Lassman , M. E. , Ligler , F. S. and Taitt , C. R. 2005 . Array biosensor for detection of ochratoxin A in cereals and beverages . Anal. Chem. , 77 : 148 – 154 .
  • Ngundi , M. M. , Qadri , S. A. , Wallace , E. V. , Moore , M. H. , Lassman , M. E. , Shriver‐Lake , L. C. , Ligler , F. S. and Taitt , C. R. 2006a . Detection of deoxynivalenol in foods and indoor air using an array biosensor . Environ. Sci. Technol. , 40 : 2352 – 2356 .
  • Ngundi , M. M. , Shriver‐Lake , L. C. , Moore , M. H. , Ligler , F. S. and Taitt , C. R. 2006b . Multiplexed detection of mycotoxins in foods with a reusable array biosensor . J. Food Protect. , 69 : 3047 – 3051 .
  • Patel , P. D. 2006 . Overview of affinity biosensors in food analysis . J. AOAC Int. , 89 : 805 – 818 .
  • Rasooly , A. and Herold , K. E. 2006 . Biosensors for the analysis of food‐ and waterborne pathogens and their toxins . J. AOAC Int. , 89 : 873 – 883 .
  • Roy , S. and Sen , C. K. 2006 . cDNA micro‐array screening in food safety . Toxicology , 221 : 128 – 133 .
  • Sapsford , K. E. , Ngundi , M. M. , Moore , M. H. , Lassman , M. E. , Shriver‐Lake , L. C. , Taitt , C. R. and Ligler , F. S. 2006 . Rapid detection of foodborne contaminants using an array biosensor . Sensor. Actuators, B , 113 : 599 – 607 .
  • Sapsford , K. E. , Rasooly , A. , Taitt , C. R. and Ligler , F. S. 2004 . Rapid detection of Campylobacter and Shigella species in food samples using an array biosensor . Anal. Chem. , 76 : 433 – 440 .
  • Sapsford , K. E. , Taitt , C. R. , Loo , N. and Ligler , F. S. 2005 . Biosensor detection of botulinum toxoid A and staphylococcal enterotoxin B in food . Appl. Environ. Microbiol. , 71 : 5590 – 5592 .
  • Shriver‐Lake , L. C. , Shubin , Y. S. and Ligler , F. S. 2003 . Detection of staphylococcal enterotoxin B in spiked food samples . J. Food Protect. , 66 : 1851 – 1856 .
  • Shriver‐Lake , L. C. , Turner , S. and Taitt , C. R. 2007 . Rapid detection of Escherichia coli O157:H7 spiked into food matrices . Anal. Chim. Acta , 584 : 66 – 71 .
  • Taitt , C. R. , Shubin , Y. S. , Angel , R. and Ligler , F. S. 2004 . Detection of Salmonella enterica serovar Typhimurium by using a rapid, array‐based immunosensor . Appl. Environ. Microbiol. , 70 : 152 – 158 .
  • Tang , L. , Ren , Y. , Hong , B. and Kang , K. A. 2006 . Fluorophore‐mediated, fiber‐optic, multi‐analyte, immunosensing system for rapid diagnosis and prognosis of cardiovascular diseases . J. Biomed. Optic. , 11 : 021011‐1 – 021011‐10 .
  • Tschmelak , J. , Käppel , N. and Gauglitz , G. 2005 . TIRF‐based biosensor for sensitive detection of progesterone in milk based on ultra‐sensitive progesterone detection in water . Anal. Bioanal. Chem. , 382 : 1895 – 903 .
  • Wang , H. and Slavik , M. F. 2005 . A multiplex polymerase chain reaction assay for rapid detection of Escherichia coli O157:H7, Listeria monocytogenes, Salmonella typhimurium, and Campylobacter jejuni in artificially contaminated food samples . J. Rapid Meth. Autom. Microbiol. , 13 : 213 – 223 .
  • Wang , S. J. , Chow , L. W. and Wu , M. J. 2002 . Multiplex PCR for the simultaneous detection of the SEA, SEB, SEC, SED, and SEE genes of enterotoxigenic Staphylococcus aureus . J. Food Drug Anal. , 10 : 164 – 169 .
  • Wolffs , P. F.G. , Glencross , K. , Thibaudeau , R. and Griffiths , M. W. 2006 . Direct quantitation and detection of salmonellae in biological samples without enrichment, using two‐step filtration and real‐time PCR . Appl. Environ. Microbiol. , 72 : 3896 – 3900 .
  • Yu , H. and Bruno , J. G. 1996 . Immunomagnetic‐electrochemiluminescent detection of Escherichia coli O157 and Salmonella typhimurium in foods and environmental water samples . Appl. Environ. Microbiol. , 62 : 587 – 592 .

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.