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Rapid Detection of Bacillus anthracis Spores Using Immunomagnetic Separation and Amperometry

机译:免疫磁分离和安培法快速检测炭疽芽孢杆菌孢子

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摘要

Portable detection and quantitation methods for Bacillus anthracis (anthrax) spores in pure culture or in environmental samples are lacking. Here, an amperometric immunoassay has been developed utilizing immunomagnetic separation to capture the spores and remove potential interferents from test samples followed by amperometric measurement on a field-portable instrument. Antibody-conjugated magnetic beads and antibody-conjugated glucose oxidase were used in a sandwich format for the capture and detection of target spores. Glucose oxidase activity of spore pellets was measured indirectly via amperometry by applying a bias voltage after incubation with glucose, horseradish peroxidase, and the electron mediator 2,2′-azino-bis (3-ethylbenzthiazoline-6-sulphonic acid). Target capture was mediated by polyclonal antisera, whereas monoclonal antibodies were used for signal generation. This strategy maximized sensitivity (500 target spores, 5000 cfu/mL), while also providing a good specificity for Bacillus anthracis spores. Minimal signal deviation occurs in the presence of environmental interferents including soil and modified pH conditions, demonstrating the strengths of immunomagnetic separation. The simultaneous incubation of capture and detection antibodies and rapid substrate development (5 min) result in short sample-to-signal times (less than an hour). With attributes comparable or exceeding that of ELISA and LFDs, amperometry is a low-cost, low-weight, and practical method for detecting anthrax spores in the field.
机译:缺乏在纯培养物中或在环境样品中对炭疽芽孢杆菌(炭疽)孢子的便携式检测和定量方法。在这里,已开发出一种利用免疫磁分离法捕获电流的孢子并从测试样品中去除潜在干扰物的安培免疫测定方法,然后在现场便携式仪器上进行安培测量。抗体结合的磁珠和抗体结合的葡萄糖氧化酶以三明治形式用于捕获和检测目标孢子。在与葡萄糖,辣根过氧化物酶和电子介体2,2'-叠氮基双(3-乙基苯并噻唑啉-6-磺酸)孵育后,通过施加偏置电压,通过安培法间接测量孢子丸的葡萄糖氧化酶活性。多克隆抗血清介导靶标捕获,而单克隆抗体用于信号产生。该策略可最大程度地提高灵敏度(500个目标孢子,5000 cfu / mL),同时还为炭疽芽孢杆菌孢子提供了良好的特异性。在环境干扰物(包括土壤)和改良的pH条件下,信号偏差最小,这说明了免疫磁分离的优势。捕获抗体和检测抗体的同时孵育以及快速的底物形成(5分钟)可缩短样品到信号的时间(不到一个小时)。具有与ELISA和LFD相当或超过ELISA和LFD的属性,电流分析法是一种低成本,轻量且实用的现场炭疽孢子检测方法。

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