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Semi-Quantitative Method for Streptococci Magnetic Detection in Raw Milk

机译:生乳中链球菌磁检测的半定量方法

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摘要

Bovine mastitis is the most costly disease for dairy farmers and the most frequent reason for the use of antibiotics in dairy cattle; thus, control measures to detect and prevent mastitis are crucial for dairy farm sustainability. The aim of this study was to develop and validate a sensitive method to magnetically detect Streptococcus agalactiae (a Group B streptococci) and Streptococcus uberis in raw milk samples. Mastitic milk samples were collected aseptically from 44 cows with subclinical mastitis, from 11 Portuguese dairy farms. Forty-six quarter milk samples were selected based on bacterial identification by conventional microbiology. All samples were submitted to PCR analysis. In parallel, these milk samples were mixed with a solution combining specific antibodies and magnetic nanoparticles, to be analyzed using a lab-on-a-chip magnetoresistive cytometer, with microfluidic sample handling. This paper describes a point of care methodology used for detection of bacteria, including analysis of false positiveegative results. This immunological recognition was able to detect bacterial presence in samples spiked above 100 cfu/mL, independently of antibody and targeted bacteria used in this work. Using PCR as a reference, this method correctly identified 73% of positive samples for streptococci species with an anti-S. agalactiae antibody, and 41% of positive samples for an anti-GB streptococci antibody.
机译:牛乳腺炎是奶农最昂贵的疾病,也是奶牛使用抗生素的最常见原因;因此,检测和预防乳腺炎的控制措施对于奶牛场的可持续发展至关重要。这项研究的目的是开发和验证一种灵敏的方法,以磁性方法检测生乳样品中的无乳链球菌(B组链球菌)和乳房链球菌。从葡萄牙11个奶牛场的44例亚临床乳腺炎母牛中无菌采集乳汁样品。基于常规微生物学对细菌的鉴定,选择了四十六份牛奶样品。所有样品均进行PCR分析。同时,将这些牛奶样品与结合了特定抗体和磁性纳米颗粒的溶液混合,然后使用芯片实验室的磁阻细胞仪和微流控样品进行分析。本文介绍了一种用于细菌检测的现场护理方法,包括对假阳性/阴性结果的分析。这种免疫学识别能力能够检测出加标浓度高于100 cfu / mL的样品中是否存在细菌,而与这项工作中使用的抗体和靶向细菌无关。该方法以PCR为参考,正确鉴定出73%的抗S链球菌阳性样品。无乳链球菌抗体和抗GB链球菌抗体阳性样本的41%。

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