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蛋白质、孢子和细菌的固相捕获

Solid-phase capture of proteins, spores, and bacteria.

作者信息

Weimer B C, Walsh M K, Beer C, Koka R, Wang X

机构信息

Department of Nutrition & Food Sciences, Center for Microbe Detection & Physiology, Utah State University, Logan, Utah 84322-8700, USA.

出版信息

Appl Environ Microbiol. 2001 Mar;67(3):1300-7. doi: 10.1128/AEM.67.3.1300-1307.2001.

Abstract

Current methods for the detection of pathogens in food and water samples generally require a preenrichment step that allows selective enrichment of the test organism. The objective of this research was to eliminate an enrichment step to allow detection of bacteria directly in food and water samples in 30 min. A high-flow-rate, fluidized bed to capture and concentrate large (bacteria and spores) and small (protein) molecules was developed. This format, ImmunoFlow, is volume independent and uses large beads (greater than 3 mm in diameter) when capturing bacteria to prevent sample clogging when testing food samples. Detection of bound targets was done using existing enzyme-linked immunosorbent assay (ELISA) protocols. Four antibodies (anti-Escherichia coli O157:H7, -Bacillus globigii, -bovine serum albumin [BSA], and -ovalbumin [OVA]) were covalently coupled to various glass and ceramic beads. Very small amounts of BSA (<1 ng) and OVA (0.2 to 4.0 microg) were detected. Various industrial and environmental samples were used to observe the effect of the sample composition on the capture of anti-B. globigii and anti-E. coli O157:H7 modified beads. The lower limit of detection for both E. coli O157:H7 and B. globigii was 1 spore/cell independent of the sample size. The activity of anti-B. globigii modified beads declined after 3 days. Anti-E. coli O157:H7 modified beads declined in their capture ability after 2 days in various storage buffers. Storage temperature (4 and 25 degrees C) did not influence the stability. The ImmunoFlow technology is capable of capturing bacteria and spores directly from samples, with subsequent detection in an ELISA format in 30 min.

摘要

目前用于检测食品和水样中病原体的方法通常需要一个预富集步骤,以实现对测试微生物的选择性富集。本研究的目的是省去富集步骤,从而能够在30分钟内直接检测食品和水样中的细菌。为此开发了一种高流速流化床,用于捕获和浓缩大分子(细菌和孢子)和小分子(蛋白质)。这种名为ImmunoFlow的形式与体积无关,在捕获细菌时使用大珠子(直径大于3毫米),以防止在检测食品样品时出现样品堵塞的情况。使用现有的酶联免疫吸附测定(ELISA)方案对结合的目标物进行检测。将四种抗体(抗大肠杆菌O157:H7、抗球状芽孢杆菌、抗牛血清白蛋白[BSA]和抗卵清蛋白[OVA])共价偶联到各种玻璃珠和陶瓷珠上。检测到了极少量的BSA(<1纳克)和OVA(0.2至4.0微克)。使用各种工业和环境样品来观察样品组成对捕获抗球状芽孢杆菌和抗大肠杆菌O157:H7修饰珠子的影响。大肠杆菌O157:H7和球状芽孢杆菌的检测下限均为每样品1个孢子/细胞,与样品大小无关。抗球状芽孢杆菌修饰珠子的活性在3天后下降。抗大肠杆菌O157:H7修饰珠子在各种储存缓冲液中保存2天后捕获能力下降。储存温度(4和25摄氏度)不影响稳定性。ImmunoFlow技术能够直接从样品中捕获细菌和孢子,随后以ELISA形式在30分钟内进行检测。

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Solid-phase capture of proteins, spores, and bacteria.蛋白质、孢子和细菌的固相捕获
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