| 1. |
Ryan KJ, Champoux JJ, Drew WL, Falkow S, Neidhardt FC, Plorde JJ, Ray CG. (1994) An introduction to infectious Diseases, 3rd
edn: Appleton and Lange, stamford, Connecticut.
|
| |
| 2. |
Mitsuoka T. (1978) Intestinal Bacteria and Helth. Jovanovich, Tokyo: Harcourt Brace.
|
| |
| 3. |
Forbes BA, Sham DF, Weissfeld AS. (2002) Diagnostic Microbiology. St. Louis, Missouri,United State of America: Mosby Ltd.
|
| |
| 4. |
Jaspers E, Overmann J. (1997) Separation of bacterial cells by isoelectric focusing, a new method for analysis of complex
micro-bial communities. J. Appl. Environ. Micro-biol. 63, 3176–3181.
|
| |
| 5. |
Compeau GB, Al-Achl J, Platsouka E, Levy SB. (1988) Survival of Rifampin-resistant mutants of pseudomonas-fluorescens and
pseudomonas-putida in soil systems. App. Environt. Micro-bio.54, 2432–2438.
|
| |
| 6. |
United States Pharmacopeia, 26th edn. Toronto, Ontario, Canada: Webcon, ltd; 2003.
|
| |
| 7. |
Chinen I, Tanaro JD, Miliwebsky E, Lound LH, Chillemi G, Ledri S, Baschkier A, Scarpin M, Manfredi ERM. (2001) Isolation and
Characterization of Escherichia coli O157: H7 from retail meats in Argentina. J. Food Protection64, 1346–1351.
|
| |
| 8. |
Meichtri L, Miliwebsky E, Gioffre A, Chinen I, Baschkier A, Chillemi G, Guth BEC, Masana MO, Cataldi A, Rodriguez HR, et al.
(2004) Shiga toxin-producing Escherichia coli in healthy young beef steers from Argentina: prevalence and virulence properties.
Int. J. Food Microbiol. 96, 189–198.
|
| |
| 9. |
Agace W, Hedges S, Andersson U, Andersson J, Ceska M, Svanborg C. (1993) Selective Cytokine production by Epithelial Cells
following Exposure to Escherichia Coli. Infection Immunity 61, 602–609.
|
| |
| 10. |
Suzuki K, Tateda K, Matsumoto T, Gondaira F, Tsujimoto S, Yamaguchi K. (2000) Effects of interaction between Escherichia Coli
verotonin and lipopolysac-charide on cytokine induction and lethality in mince. J. Med. Microbiol. 49, 905–910.
|
| |
| 11. |
Low PS, Lee BW, Yap HK, Tay JS, Lee WL, Seah CC, Ramzan MM. (1995) Inflammatory response in bacterial meningitis:cytokine
levels in the cerebrospinal fluid. Ann. Trop. Paediatr. 15, 55–59.
|
| |
| 12. |
Breeuwer P, Abee T. (2000) Assessment of viability of microrganisms employing fluorescence techniques. Int. J. Food Microbiol. 55, 193–200.
|
| |
| 13. |
Schweickert B, Moter A, Lefmann M, Goebel UB. (2004) Let them fly or light them up: matrix-assisted laser desorption/ ionization
time of flight (MALDI-TOF) mass spectrometry and fluorescence in situ hybridi zation (FISH). APMIS, 112, 856–885.
|
| |
| 14. |
Belgrader P, Benett W, Hadley D, Richard J, Stratton P, MAriella RJ, Milanovich F. (1999) Infectious disease - PCR detection
of bacteria in seven minutes. Science 284, 449–450.
|
| |
| 15. |
Bej AK, Mahbubani MH, Atlas RM. (1991) Amplification of nucleic-acids by polymerase chain reaction (PCR) and other methods
and their applications. Crit. Rev.Biochem. Mol. 26, 301–334.
|
| |
| 16. |
Drysdale M, MacRae M, Strachan NJC, Reid TMS, Ogden ID. (2003) The detection of non-O157 E. coli in food by immu-nomagnetic
separation. J. Appl. Microbio. 97, 220–224.
|
| |
| 17. |
Chen CS, Durst RA. (2006) Simultaneous detection of Escherichia coli O157 : H7, Salmonella spp. and Listeria monocy-togenes
with an array-based immunosorbent assay using universal protein G-liposomal nanovesicles. Talanta 69, 232–238.
|
| |
| 18. |
Gehring AG, Albin DM, Irwin PL, Reed SA, Tu SI. (2006) Comparison of enzyme-linked immunomagnetic chemiluminescence with US
Food and Drug Administration's Bacteriological Analytical Manual method for the detection of Escherichia coli O157 : H7. J. Microbio. Methods, 67, 527–533.
|
| |
| 19. |
Bohaychuk VM, Gensler GE, King RK, Wu JT, McMullen LM. (2005) Evaluation of detection methods for screening meat and poultry
products for the presence of food-borne pathogens. J. Food Protection68, 2637–2647.
|
| |
| 20. |
Rodriguez MA, Armstrong DW. (2004) Separation and analysis of colloidal/nano-particles including microorganisms by capillary
electrophoresis: a fundamental review. J. Chromatogr. B. 800, 7–25.
|
| |
| 21. |
Rodriguez MA, Lantz AW, Armstrong DW. (2006) Capillary electrophoretic method for the detection of bacterial contamination.
Anal. Chem. 78, 4759–4767.
|
| |
| 22. |
Hjerten S, Elenbring K, Kilar F, Liao F, Chen AJC, Siebert CJ, Zhu M. (1987) Carrier free zone electrophoresis, displacement
electrophoresis and isoelectric focusing in a high performance electrophoresis apparatus. Chromatogr., 403, 47–61.
|
| |
| 23. |
Grossman PD, Soane DS. (1990) Orientation effects on the electrophoretic mobility of rod-shaped molecules in free solution.
Anal. Chem. 62, 1592–1596.
|
| |
| 24. |
Okun V, Ronacher B, Blaas D, Kenndler E. (1999) Analysis of common cold virus (human Rhinovirus serotype 2) by capillary zone
electrophoresis: the problem of peak identification. Anal. Chem. 71, 2028–2032.
|
| |
| 25. |
Okun VM, Blaas D, Kenndler E. (1999) Separation and biospecific identification of subviral particlets of human rhinovirus
serotype 2 by capillary zone electrophoresis. Anal. Chem.71, 4480–4485.
|
| |
| 26. |
Scnabel U, Groiss F, Blaas D, Kenndler E. (1996) Determination of the pI of human rhinovirus serotype 2 by capillary isoelectric
focusing. Anal. Chem. 68, 4300–4303.
|
| |
| 27. |
Ebersole RC, McCormick RM (1993) Separation and isolation of viable bacteria by capillary zone electrophoresis. Bio-Technology 11, 1278–1282.
|
| |
| 28. |
Shen YF, Berger SJ, Smith RD. (2000) Capillary isoelectric focusing of yeast cells. Anal. Chem. 72, 4603–4607.
|
| |
| 29. |
Armstrong DW, Schulte G, Schneiderheinze JM, Westenberg DJ. (1999) Separating microbes in the manner of molecules. 1. Capillary
electrokinetic approaches. Anal. Chem. 71, 5465–5469.
|
| |
| 30. |
Armstrong DW, Schneiderheinze JM. (2000) Rapid identification of the bacterial pathogens responsible for urinary tract infections
using direct injection CE. Anal. Chem. 72, 4474–4476.
|
| |
| 31. |
Schneiderheinze JM, Armstrong DW, Schulte G, Westenberg DJ. (2000) High efficiency separation of microbial aggregates using
capillary electrophoresis. Fems Micro-bio. Lett. 189, 39–44.
|
| |
| 32. |
Girod M, Armstrong DW. (2002) Monitoring the migration behavior of living microorganisms in capillary electrophoresis using
laser-induced fluorescence detection with a charge-coupled device imaging system. Elec-trophoresis. 23, 2048–2056.
|
| |
| 33. |
Armstrong DW, He L. (2001) Determination of cell viability in single or mixed samples using capillary electrophoresis laser
induced fluorescence microfluidic systems. Anal. Chem.73, 4551–4557.
|
| |
| 34. |
Horka M, Ruzicka F, Hola V, Slais K. (2006) Capillary isoelectric focusing of microorganisms in the pH range 2-5 in a dynamically
modified FS capillary with UV detection. Anal. Bioanal. Chem. 385, 840–846.
|
| |
| 35. |
Manz A, Harrison DJ, Verpoorte EMJ, Fettinger JC, Paulus A, Ludi H, Widmer HM. (1992) Planar chips technology for miniaturization
and integration and integration of separation techniques into a monitoring systems, capillary electrophoresis on a chip. J. Chromatogr. 593, 253–258.
|
| |
| 36. |
Kricka LJ, Wilding P. (2003) Microchip PCR. Anal. Bioanal. Chem. 377, 820–825.
|
| |
| 37. |
Yuen PK, Kricka LJ, Fortina P, Panaro NJ, Sakazume T, Wilding P. (2001) Microchip module for blood sample preparation and
nucleic acid amplification. Genome Res. 11, 405–412.
|
| |
| 38. |
Wilding P, Kricka LJ, Cheng J, Hvichia G, Shoffner MA, Fortina P. (1998) Integrated cell isolation and polymerase chain reaction
analysis using silicon microfilter chambers. Anal. Biochem. 257, 95–100.
|
| |
| 39. |
Lou XJ, Panaro NJ, Wilding P, Fortina P, Kricka LJ. (2004) Mutation detection using ligase chain reaction in passivated silicon-glass
microchips and microchip capillary electrophoresis. Biotechniques 37, 392.
|
| |
| 40. |
Cheng J, Shoffner MA, Mitchelson KR, Kricka LJ, Wilding P. (1996) Analysis of ligase chain reaction products amplified in
a silicon-glass chip using capillary electro-phoresis. J. Chromatogr. A 732, 151–158.
|
| |
| 41. |
SFY Li, Kricka LJ. (2006) Clinical analysis by microchip capillary electrophoresis. Clin. Chem. 52, 37–45.
|
| |
| 42. |
Kricka LJ. (2001) Microchips, microarrays, biochips and nanochips: personal laboratories for the 21st century. Clin. Chim. Acta 307, 219–223.
|
| |
| 43. |
Kricka LJ. (1998) Miniaturization of analysis systems. Clin. Chem. 44, 2008–2014.
|
| |