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[反刍动物中的肠出血性大肠杆菌携带情况及益生菌作用]

[EHEC carriage in ruminants and probiotic effects].

作者信息

Forano Evelyne, Chaucheyras-Durand Frédérique, Bertin Yolande, Martin Christine

机构信息

INRA, UR 454 Microbiologie, Centre de Recherches de Clermont-Ferrand/Theix, 63122 St-Genès-Champanelle, France.

INRA, UR 454 Microbiologie, Centre de Recherches de Clermont-Ferrand/Theix, 63122 St-Genès-Champanelle, France - Lallemand Animal Nutrition, 19 rue des Briquetiers, 31702 Blagnac, France.

出版信息

Biol Aujourdhui. 2013;207(4):261-7. doi: 10.1051/jbio/2013023. Epub 2014 Mar 5.

DOI:10.1051/jbio/2013023
PMID:24594574
Abstract

Enterohaemorrhagic Escherichia coli (EHEC) are Shiga-Toxin producing E. coli (STEC) that cause human outbreaks which can lead to a severe illness such as haemolytic-uraemic syndrome (HUS), particularly in young children. The gastrointestinal tract of cattle and other ruminants is the principal reservoir of EHEC strains and outbreaks have been associated with direct contact with the farm environment, and with the consumption of meat, dairy products, water and fruit or vegetable contaminated with ruminant manure. Several outbreaks occurred these last years in France. In Brazil, although STEC carriage in ruminants is important, human cases due to EHEC are fairly rare. In order to reduce EHEC survival in the ruminant gastrointestinal tract and thus limit contamination of food products, it is necessary to determine the mechanisms underlying EHEC persistence in this ecosystem with the aim of developing nutritional or ecological strategies. The effect of probiotics has been tested in vitro on the growth and survival of EHEC strains and in vivo on the animal carriage of these strains. Various studies have then shown that lactic bacteria or non-pathogenic E. coli strains were able to limit EHEC fecal shedding. In addition, understanding EHEC physiology in the ruminant gut is also critical for limiting EHEC shedding. We found that EHEC O157:H7 is able to use ethanolamine and mucus-derived sugars as nitrogen and carbon sources, respectively. Thus, these substrates represent an ecological niche for EHEC and their utilization confers a competitive growth advantage to these pathogens as they use them more rapidly than the bacteria belonging to the resident intestinal microbiota. Understanding EHEC metabolism and ecology in the bovine intestinal tract will allow proposing probiotic strains to compete with EHEC for nutrients and thus decrease the sanitary risk.

摘要

肠出血性大肠杆菌(EHEC)是产志贺毒素大肠杆菌(STEC),可引发人类疾病暴发,导致诸如溶血尿毒综合征(HUS)等严重疾病,尤其是在幼儿中。牛和其他反刍动物的胃肠道是EHEC菌株的主要储存库,疾病暴发与直接接触农场环境以及食用受反刍动物粪便污染的肉类、乳制品、水和水果或蔬菜有关。过去几年在法国发生了几起疫情。在巴西,虽然反刍动物中STEC的携带情况很严重,但由EHEC引起的人类病例相当罕见。为了减少EHEC在反刍动物胃肠道中的存活,从而限制食品污染,有必要确定EHEC在这个生态系统中持续存在的机制,以便制定营养或生态策略。已经在体外测试了益生菌对EHEC菌株生长和存活的影响,并在体内测试了其对这些菌株在动物体内携带情况的影响。随后的各种研究表明,乳酸菌或非致病性大肠杆菌菌株能够限制EHEC的粪便排泄。此外,了解EHEC在反刍动物肠道中的生理学对于限制EHEC的排泄也至关重要。我们发现EHEC O157:H7能够分别利用乙醇胺和黏液衍生糖作为氮源和碳源。因此,这些底物代表了EHEC的一个生态位,它们对这些底物的利用赋予了这些病原体竞争生长优势,因为它们比属于常驻肠道微生物群的细菌更快地利用这些底物。了解EHEC在牛肠道中的代谢和生态学将有助于提出益生菌菌株,与EHEC竞争营养物质,从而降低卫生风险。

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