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布氏弓形杆菌、嗜冷弓形杆菌和斯氏弓形杆菌在奶牛场中的传播及牛奶污染来源。

Arcobacter butzleri, Arcobacter cryaerophilus, and Arcobacter skirrowii Circulation in a Dairy Farm and Sources of Milk Contamination.

作者信息

Giacometti Federica, Lucchi Alex, Di Francesco Antonietta, Delogu Mauro, Grilli Ester, Guarniero Ilaria, Stancampiano Laura, Manfreda Gerardo, Merialdi Giuseppe, Serraino Andrea

机构信息

Department of Veterinary Medical Sciences, Ozzano dell'Emilia, Bologna, Italy.

Department of Food Science, Ozzano dell'Emilia, Bologna, Italy.

出版信息

Appl Environ Microbiol. 2015 Aug;81(15):5055-63. doi: 10.1128/AEM.01035-15. Epub 2015 May 22.

Abstract

Even though dairy cows are known carriers of Arcobacter species and raw or minimally processed foods are recognized as the main sources of human Arcobacter infections in industrialized countries, data on Arcobacter excretion patterns in cows and in milk are scant. This study aimed to identify potentially pathogenic Arcobacter species in a dairy herd and to investigate the routes of Arcobacter transmission among animals and the potential sources of cattle infection and milk contamination. A strategy of sampling the same 50 dairy animals, feed, water, and milk every month for a 10-month period, as well as the sampling of quarter milk, animal teats, the milking environment, and animals living on the farm (pigeons and cats), was used to evaluate, by pulsed-field gel electrophoresis (PFGE), the characteristic patterns in animals, their living environment, and the raw milk they produced. Of the 463 samples collected, 105 (22.6%) were positive for Arcobacter spp. by culture examination. All the matrices except quarter milk and pigeon gut samples were positive, with prevalences ranging from 15 to 83% depending on the sample. Only three Arcobacter species, Arcobacter cryaerophilus (54.2%), A. butzleri (34.2%), and A. skirrowii (32.3%), were detected. PFGE analysis of 370 isolates from positive samples provided strong evidence of Arcobacter circulation in the herd: cattle likely acquire the microorganisms by orofecal transmission, either by direct contact or from the environment, or both. Water appears to be a major source of animal infection. Raw milk produced by the farm and collected from a bulk tank was frequently contaminated (80%) by A. butzleri; our PFGE findings excluded primary contamination of milk, whereas teats and milking machine surfaces could be sources of Arcobacter milk contamination.

摘要

尽管奶牛是已知的嗜冷弯曲菌属菌种携带者,并且在工业化国家,生的或最少加工的食品被认为是人类感染嗜冷弯曲菌属的主要来源,但关于奶牛中嗜冷弯曲菌属排泄模式以及牛奶中嗜冷弯曲菌属的相关数据却很少。本研究旨在鉴定奶牛群中潜在的致病性嗜冷弯曲菌属菌种,并调查嗜冷弯曲菌属在动物间的传播途径以及牛感染和牛奶污染的潜在来源。采用了一种策略,即连续10个月每月对50头相同的奶牛、饲料、水和牛奶进行采样,同时对乳区牛奶、动物乳头、挤奶环境以及农场中的动物(鸽子和猫)进行采样,通过脉冲场凝胶电泳(PFGE)来评估动物、其生活环境以及它们所产原料奶中的特征模式。在收集的463份样本中,通过培养检查发现有105份(22.6%)嗜冷弯曲菌属呈阳性。除乳区牛奶和鸽子肠道样本外,所有基质样本均呈阳性,根据样本不同,阳性率在15%至83%之间。仅检测到三种嗜冷弯曲菌属菌种,即嗜冷嗜冷弯曲菌(54.2%)、布氏嗜冷弯曲菌(34.2%)和斯氏嗜冷弯曲菌(32.3%)。对来自阳性样本的370株分离株进行的PFGE分析提供了有力证据,证明嗜冷弯曲菌属在牛群中传播:牛可能通过口粪传播获得这些微生物,传播途径可能是直接接触或来自环境,或者两者皆有。水似乎是动物感染的主要来源。该农场生产并从贮奶罐收集的原料奶经常被布氏嗜冷弯曲菌污染(80%);我们的PFGE结果排除了牛奶的原发性污染,而乳头和挤奶机表面可能是嗜冷弯曲菌属污染牛奶的来源。

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