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蜡样芽胞杆菌在胃肠道条件下产生肠毒素及其通过市售试剂盒进行的免疫学检测。

Enterotoxin production by Bacillus cereus under gastrointestinal conditions and their immunological detection by commercially available kits.

机构信息

Faculty of Bioscience Engineering, Laboratory of Food Microbiology and Food Preservation, Ghent University, Ghent, Belgium.

出版信息

Foodborne Pathog Dis. 2012 Dec;9(12):1130-6. doi: 10.1089/fpd.2012.1230.

Abstract

Currently, three commercial kits for Bacillus cereus enterotoxins Nhe and/or Hbl detection are available, namely, the Bacillus diarrheal enterotoxin visual immunoassay (BDE VIA™) kit (3M Tecra), B. cereus enterotoxin reversed passive latex agglutination (BCET-RPLA) kit (Oxoid), and the Duopath(®) Cereus Enterotoxins (Merck). The performance of the kits and their applicability to gastrointestinal simulation samples were evaluated. Then, the stability and production of enterotoxins Hbl and Nhe under gastrointestinal conditions were investigated. Enterotoxin production was absent or impaired at acidic pH, i.e., in gastric medium with pH 5.0 and lasagne verde with pH 5.5. B. cereus did produce enterotoxins Nhe and Hbl during anaerobic growth in intestinal medium at pH 7.0, but the toxins were instantly degraded by the enzymes in the host's digestive secretions. Preformed enterotoxins did not withstand gastrointestinal passage under the simulated conditions, which suggests that preformed enterotoxins in food do not contribute to the diarrheal food poisoning syndrome. In conclusion, diarrhea is probably caused by de novo enterotoxin production by B. cereus cells located closely to the host's intestinal epithelium.

摘要

目前,有三种用于检测蜡样芽胞杆菌肠毒素 Nhe 和/或 Hbl 的商业试剂盒,即蜡样芽胞杆菌腹泻肠毒素可视化免疫检测试剂盒(BDE VIA™)(3M Tecra)、蜡样芽胞杆菌肠毒素反向被动乳胶凝集试剂盒(BCET-RPLA)(Oxoid)和 Duopath® 蜡样芽胞杆菌肠毒素试剂盒(Merck)。评估了这些试剂盒的性能及其对胃肠道模拟样品的适用性。然后,研究了在胃肠道条件下 Hbl 和 Nhe 肠毒素的稳定性和产生情况。在 pH5.0 的胃液和 pH5.5 的菠菜意面中,产酸性 pH 条件下毒素的产生受到抑制或受损。在 pH7.0 的肠道培养基中进行厌氧生长时,蜡样芽胞杆菌确实会产生 Nhe 和 Hbl 肠毒素,但这些毒素会被宿主消化液中的酶立即降解。在模拟条件下,预先形成的肠毒素不能经受胃肠道通过,这表明食物中的预先形成的肠毒素不会导致腹泻型食物中毒综合征。总之,腹泻可能是由宿主肠道上皮附近的蜡样芽胞杆菌细胞产生的新合成肠毒素引起的。

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