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Because conventional methods for detecting emetic-toxinproducing

B. cereus are laborious and costly, various PCR

assays, which are easy and cheap, have recently been

reported. Therefore, this study estimated and compared

the ability of various PCR assays to detect emetic-toxinproducing

B. cereus strains isolated in Korea. The PCR

assays were performed on 160 B. cereus strains, including

40 emetic-toxin-producing strains. Although the speciesspecific

PCR assays were all shown to be highly specific,

the sensitivities varied greatly. The accuracies of the

primers were 97.5% (CER), 95.6% (EM1), 96.3% (RE234),

89.4% (CES), and 83.1% (Ces3R/CESR2). Moreover, the

CER primer had a higher sensitivity (100%) than all the

other primers tested, and a specificity of 96.7%. Thus, the

CER primer was shown to be the most effective for

screening the emetic-toxin-producing B. cereus strains

tested in this study. However, the ability of these PCR

assays to identify emetic-toxin-producing B. cereus should

also be confirmed using other methods.

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
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참고문헌 (30건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 A novel dodecadepsipeptide, cereulide, isolated fromBacillus cereus causes vacuole formation in HEp-2 cells 네이버 미소장
2 A novel sensitive bioassay for detection of Bacillus cereus emetic toxin and related depsipeptide ionophores. 네이버 미소장
3 Arnesen, L. P. S., A. Fagerlund, and P. E. Granum. 2008. Bacillus cereus and its food poisoning toxins. FEMS Microbiol. Rev. 32: 579-606. 미소장
4 Bartoszewicz, M., B. M. Hansen, and I. Swiecicka. 2008. The members of the Bacillus cereus group are commonly present contaminants of fresh and heat-treated milk. Food Microbiol. 25: 588-596. 미소장
5 A comparison of ELISA and RPLA for detection of Bacillus cereus diarrhoeal enterotoxin. 네이버 미소장
6 Production and characterization of antibodies against each of the three subunits of the Bacillus cereus nonhemolytic enterotoxin complex. 네이버 미소장
7 Duc, L. H., T. C. Ding, N. A. Logan, A. D. Sutherland, J. Taylor, and S. M. Cutting. 2005. Cases of emesis associated with bacterial contamination of an infant breakfast cereal product. Int. J. Food Microbiol. 102: 245-251. 미소장
8 Ehling-Schulz, M., M. Fricker, and S. Scherer. 2004. Identification of emetic toxin producing Bacillus cereus strains by a novel molecular assay. FEMS Microbiol. Lett. 232: 189-195. 미소장
9 Identification and partial characterization of the nonribosomal peptide synthetase gene responsible for cereulide production in emetic Bacillus cereus. 네이버 미소장
10 Granum, P. E. 1990. Clostridium perfringens toxins involved in food poisoning. Int. J. Food Microbiol. 10: 101-111. 미소장
11 How to read a paper: Papers that report diagnostic or screening tests 네이버 미소장
12 Quantitative analysis of cereulide, the emetic toxin of Bacillus cereus, produced under various conditions. 네이버 미소장
13 Evidence for non-ribosomal peptide synthetase production of cereulide (the emetic toxin) in Bacillus cereus. 네이버 미소장
14 Jääskeläinen, E. L., V. Teplova, M. A. Adersson, L. C. Andersson, P. Tammela, M. C. Andersson, et al. 2003. In vitro assay for human toxicity of cereulide, the emetic mitochondrial toxin produced by food poisoning Bacillus cereus. Toxicol. In Vitro 17: 737-744. 미소장
15 Quantitative Analysis of Cereulide, an Emetic Toxin of Bacillus cereus, by Using Rat Liver Mitochondria 네이버 미소장
16 Kim, J. H., E. G. Lim, H. C. Jang, J. Y. Park, S. J. Lee, M. S. Park, G. B. Chli, and B. K. Lee. 2009. A case of emetic toxin producing Bacillus cereus strains isolated from outbreak. Korean J. Clin. Microbiol. 12: 48-52. 미소장
17 Koneman, E., S. D. Allen, W. M. Janda, P. C. Schreckenberger, and W. C. Winn Jr. 1997. The aerobic Gram-positive bacilli, pp. 651-708. In: Color Atlas and Textbook of Diagnostic Microbiology, 5th Ed. Lippincott, New York. 미소장
18 Kramer, J. M. and R. J. Gilbert. 1992. Bacillus cereus gastroenteritis, pp. 119-153. In A. T. Tu (ed.). Food Poisoning - Handbook of Natural Toxins, Vol. 7. Marcel Dekker, Inc., New York. 미소장
19 Kramer, J. M. and R. J. Gilbert. 1989. Bacillus cereus and other Bacillus species, pp. 21-70. In M. P. Doyle (ed.). Foodborne Bacterial Pathogens. Marcel Dekker, New York. 미소장
20 A new cytotoxin from Bacillus cereus that may cause necrotic enteritis. 네이버 미소장
21 McKillip, J. L. 2000. Prevalence and expression of enterotoxins in Bacillus cereus and other Bacillus spp. Antonie van Leeuwenhoek 77: 393-399. 미소장
22 Mikkola, R., N.-E. L. Saris, P. A. Grigoriev, M. A. Andersson, and M. S. Salkinoja-Salonen. 1999. Ionphoretic properties and mitochondrial effect of cereulide. Eur. J. Biochem. 262: 112-117. 미소장
23 A PCR assay based on a sequence-characterized amplified region marker for detection of emetic Bacillus cereus. 네이버 미소장
24 The hemolytic enterotoxin HBL is broadly distributed among species of the Bacillus cereus group. 네이버 미소장
25 Bacillus cereus food poisoning and its toxins. 네이버 미소장
26 Toxin Gene Profiling of Bacillus cereus Food Isolates by PCR 소장
27 Microarray analysis of Bacillus cereus group virulence factors 네이버 미소장
28 Mouse Lethal Activity of a HEp-2 Vacuolation Factor, Cereulide, Produced by Bacillus cereus Isolated from Vomiting-Type Food Poisoning 네이버 미소장
29 Toh, M., M. C. Moffitt, L. Henrichsen, M. Raftery, K. Barrow, J. M. Cox, C. P. Marquis, and B. A. Neilan. 2004. Cereulide, the emetic toxin of Bacillus cereus, is putatively a product of nonribosomal peptide synthesis. J. Appl. Microbiol. 97: 992- 1000. 미소장
30 Exploring the Domain Structure of Modular Nonribosomal Peptide Synthetases 네이버 미소장