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Ultra highly sensitive method for detecting Edwardsiella ictaluri using high-gradient immunomagnetic separation with polymerase chain reaction

机译:采用聚合酶链反应的高梯度免疫磁分离法检测极度爱德华氏菌的超高灵敏度方法

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Edwardsiella ictaluri causes an economically important bacterial disease in farm-raised catfish in the USA and abroad. To elucidate the route of infection for fish bacterial disease, it is important to monitor both fish health and trace bacteria in the water environment. In this study, we applied an ultra highly sensitive method to detect E. ictaluri using high-gradient immunomagnetic separation (HGIMS) with polymerase chain reaction (PCR). HGIMS is a magnetic separation method in which the magnetic force is strengthened by integrating a magnetic gradient between the magnetic filter and nearby column. Immunomagnetic beads were specifically designed to react with the target bacteria, allowing for more efficient collection. The accumulated beads were released from the filter by releasing the magnetic force. After the process, DNA was extracted from the concentrated cells, and PCR was applied to detect E. ictaluri . The HGIMS system had higher detection sensitivity using than the conventional method, and the total assay time, including sample preparation, was about 3.5 h. The optimal reaction time of immunomagnetic beads was 15 min and the flow rate of the HGIMS system was 10 ml min? 1. PCR products of the expected size were obtained from samples concentrated up to 102 cfu ml? 1. The proposed system appears to be suitable for highly sensitive detection of E. ictaluri . Improvements in the bacteria recovery ability of the immunomagnetic beads will further increase the detection limits.
机译:爱德华氏菌在美国和其他国家/地区在养殖的cat鱼中引起重要的细菌性疾病。为了阐明鱼类细菌性疾病的感染途径,重要的是监测鱼类健康和水环境中的痕量细菌。在这项研究中,我们应用了一种超高度灵敏的方法,即通过聚合酶链反应(PCR)和高梯度免疫磁分离(HGIMS)技术来检测鼠大肠杆菌。 HGIMS是一种磁分离方法,其中通过在磁过滤器和附近的色谱柱之间整合磁梯度来增强磁力。免疫磁珠经过专门设计,可与目标细菌反应,从而实现更有效的收集。通过释放磁力,从过滤器释放出累积的珠子。处理后,从浓缩的细胞中提取DNA,并进行PCR以检测埃卡塔尔大肠杆菌。与常规方法相比,HGIMS系统具有更高的检测灵敏度,包括样品制备在内的总测定时间约为3.5小时。免疫磁珠的最佳反应时间为15分钟,HGIMS系统的流速为10 ml分钟。 1 。从浓缩至10 2 cfu ml ?的样品中获得预期大小的PCR产物。 1 。提出的系统似乎适合于大肠杆菌的高灵敏度检测。免疫磁珠细菌恢复能力的提高将进一步提高检测限。

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