Food Biochemistry and Food Processing (2 edition)

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44 Emerging Bacterial Food-Borne Pathogens and Methods of Detection 849

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REFERENCES


Aarestrup FM, Engberg J. 2001. Antimicrobial resistance of ther-
mophilicCampylobacter.Vet Res32: 311–321.
Abeyta C et al. 1990. Incidence of motile aeromonads from United
States west coast shellfish growing estuaries.J Food Prot53:
849–855.
Acheson DW 1999. Foodborne Infections.Curr Opin Gastroenterol
15: 538–545.
Alarcon B et al. 2004. Simultaneous and sensitive detection of
three foodborne pathogens by multiplex PCR, capillary gel elec-
trophoresis, and laser-induced fluorescent.J Agric Food Chem
52: 7180–7186.
Al Saif N, Brazier JS. 1996. The distribution ofClostridium difficile
in the environment of South Wales.J Med Microbiol45: 133–
137.
Al-Holy MA et al. 2006. The use of fourier transform infrared
spectroscopy to differentiateEscherichia coliO157: H7 from
other bacteria inoculated into apple juice.Food Microbiol23:
162–168.
Alketruse SF et al. 1997. Emerging foodborne diseases.Emerg In-
fect Dis3: 285–293.
Anderson GP, Taitt CR. 2005. Biosensor-based detection of food-
borne pathogens. In: PM Fratamico, et al. (eds.)Foodborne
Pathogens Microbiology and Molecular Biology. Caister Aca-
demic Press, Norfolk, pp. 33–50.
Andres PG, Friedman LS. 1999. Epidemiology and the natural
course of inflammatory bowel disease.Gastroenterol Clin North
Am28: 255–281.
Anjum MF et al. 2007. PathotypingEscherichia coliby using
miniaturized DNA microarrays.Appl Environ Microbiol73:
5692–5697.
Argueta C et al. 2000. Isolation and Identification of nontuberculosis
mycobacteria from foods as possible exposure sources.J Food
Prot63: 930–933.
Arshak K et al. 2009. Conducting polymers and their applications to
biosensors: emphasizing on foodborne pathogen detection.IEEE
Sensors Journal9: 1942–1951.
Asakura M et al. 2008. Development of a cytolethal distending (cdt)
gene –based species-specific multiplex PCR assay for the detec-
tion and identification ofCampylobacter jejuni,Campylobacter
coliandCampylobacter fetus.FEMS Immunol Med Microbiol
52: 260–266.
Atabay HI, Corry JE. 1997. The prevalence ofCampylobactersand
arcobacters in broiler chickens.J Appl Microbiol86: 619–626.
Atanassova V et al. 2001. Prevalence ofStaphylococcus aureusand
staphylococcal enterotoxins in raw pork and uncooked smoked
ham – a comparison of classical culturing detection and RFLP-
PCR.Int J Food Microbiol15: 105–113.
Auvray F et al. 2007. Detection, isolation and characterization of
shiga toxin-producingEscherichia coliin retail-minced beef us-
ing PCR-based techniques, immunoassays, and colony hybridiza-
tion.Lett Appl Microbiol45: 646–651.
Baert L et al. 2008. Evaluation of viral extraction methods on a
broad range of ready-to-eat foods with conventional and real-

time RT-PCR for norovirus GII detection.Int J Food Microbiol
31: 101–108.
Bakri M et al. 2009.Clostridium difficilein ready to eat salads,
Scotland.Emerg Infect Dis15: 817–818.
Balasubramanian S et al. 2005. Identification ofSalmonellainoc-
ulated beef using a portable electronic nose system.Journal of
Food Safety13: 71–95.
Barlow M. 2009. What antimicrobial resistance has taught us about
horizontal gene transfer.Methods Mol Biol532: 397–411.
Bartlett JG, Perl TM. 2005. The newClostridium– what does it
mean?N Engl J Med353: 2503–2505.
Batchelor M et al. 2008. Development of a miniaturized microarray-
based assay for the rapid identification of antimicrobial resistance
genes in gram-negative bacteria.Int J Antimicrob Agents31:
440–451.
Baumgartner A et al. 2009. Detection and frequency ofCronobacter
spp. (Enterobacter sakazakii) in different categories of ready-to-
eat foods other than infant formula.Int J Food Microbiol31:
189–192.
Berkenpas E et al. 2006. Detection ofEscherichia coliO157: H7
with langasite pure shear horizontal surface acoustic wave sen-
sors.Biosens Bioelectron21: 2255–2262.
Bhunia AK et al. 2004. Optical immunosensors for detection of
Listeria monocytogenesandSalmonella enteritidisfrom food.
In: BS Bennedsen, et al. (eds.)SPIE-International Society for
Optical Engineering Providence, RI, pp. 1–6.
Black RE et al. 1988. ExperimentalCampylobacter jejuniinfection
in humans.J Infect Dis157: 472–479.
Blaser MJ, Engberg J. 2008. Clinical aspects ofCampylobacter
jejuniandCampylobacter coliinfections. In: I Nachamkin, et al.
(eds.) Campylobacter, 3rd edn. ASM Press, Washington, DC, pp.
99–121.
Blaser MJ et al. 1980. Survival ofCampylobacter fetussubsp.jejuni
in biological milieus.J Clin Microbiol11: 309–313.
Bohaychuk VM et al. 2007. A real-time PCR assay for the detection
ofSalmonellain a wide variety of food and food-animal matrices.
J Food Prot70: 1080–1087.
Bokken G et al. 2003 Immunochemical detection ofSalmonella
group B, D and E using an optical surface Plasmon resonance
biosensor.FEMS Microbiology Letters222: 75–82.
Borriello S. 1998. Pathogenesis ofClostridium difficileinfection.J
Antimicrob Chemother41(suppl C): 13–19.
Bortolussi R. 2008. Listeriosis: a primer.Can Med Assoc J179:
795–797.
Bouttier S et al. 2010.Clostridium difficlein ground meat, France.
Emerg Infect Dis16: 733–735.
Boyd EF et al. 2003. Differences in gene content amongSalmonella
entericaserovar typhi isolates.J Clin Microbiol41: 3823–
3828.
Broqui P, Raoult D. 2001. Endocarditis due to rare and fastidious
bacteria.Clin Microbiol Rev14: 177–207.
Call DR et al. 2001. Detecting and genotyping ofEscherichia coli
O157:H7 using multiplexed PCR and nucleic acid microarrays.
Int J Food Microbiol20: 71–80.
Carattoli A. 2008. Animal reservoirs for extended spectrum beta-
lactamase producers.Clin Microbiol Infect1: 117–123.
Carrick K et al. 2001. The comparison of four bioluminators and
their swab kits for instant hygiene monitoring and detection of
microorganisms in the brewery.JInstBrew107: 31–37.
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