Farrell Svetlana, Halsall H Brian, Heineman William R
Department of Chemistry, University of Cincinnati, P.O. Box 210172, Cincinnati, OH 45221-0172, USA.
Analyst. 2005 Apr;130(4):489-97. doi: 10.1039/b413652g. Epub 2005 Feb 10.
The 2001 anthrax alarm in the US raised concerns about the Nation's preparedness to the threat of bioterrorism, and the demand for early warning systems that might be used in the case of a biological attack continues to grow. Here we develop an ultra-sensitive rapid detection method for B. globigii(BG) spores, the simulant of B. anthracis(BA) spores. BG spores were detected by a bead-based sandwich immunoassay with fluorescence detection. Paramagnetic Dynal beads were used as a solid support, primary antibody was attached to the beads by streptavidin-biotin coupling and the secondary antibody had an alkaline phosphatase (AP) enzyme label. Enzymatic conversion of fluorescein diphosphate (FDP) to fluorescein by AP was measured in real time with lambda(ex)= 490 nm and lambda(em)= 520 nm. The assay was linear from 2.6 x 10(3)-5.6 x 10(5) BG spores mL(-1), and the detection limit was 2.6 x 10(3) spores mL(-1) or 78 spores. All reagent concentrations and incubation times were optimized. The assay time from the moment the spores were introduced to the system was 30 min, and real-time fluorescence detection was done in less than 1 min. Formation of the BG spores-capture beads complex was confirmed by environmental scanning electron microscopy (ESEM). BG spores were detected successfully when doped into Cincinnati tap water to demonstrate the applicability of the developed method to detect the spores in non-buffered media.
2001年美国发生的炭疽恐慌引发了人们对该国应对生物恐怖主义威胁的准备情况的担忧,对可能用于生物攻击情况的早期预警系统的需求也在持续增长。在此,我们开发了一种用于检测球形芽孢杆菌(BG)孢子(炭疽芽孢杆菌(BA)孢子的模拟物)的超灵敏快速检测方法。通过基于磁珠的夹心免疫测定法并结合荧光检测来检测BG孢子。顺磁性的Dynal磁珠用作固相支持物,通过链霉亲和素 - 生物素偶联将一抗连接到磁珠上,二抗带有碱性磷酸酶(AP)酶标记。使用λ(激发)= 490 nm和λ(发射)= 520 nm实时测量AP将二磷酸荧光素(FDP)转化为荧光素的过程。该测定法在2.6×10³ - 5.6×10⁵ BG孢子 mL⁻¹范围内呈线性,检测限为2.6×10³孢子 mL⁻¹或78个孢子。所有试剂浓度和孵育时间均经过优化。从孢子引入系统开始的测定时间为30分钟,实时荧光检测在不到1分钟内完成。通过环境扫描电子显微镜(ESEM)确认了BG孢子 - 捕获磁珠复合物的形成。当BG孢子掺入辛辛那提自来水中时能够成功检测到,这证明了所开发方法在检测非缓冲介质中孢子的适用性。