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微波加速金属增强荧光:在不到30秒内用于检测基因组和芽孢炭疽DNA。

Microwave-accelerated metal-enhanced fluorescence: application to detection of genomic and exosporium anthrax DNA in <30 seconds.

作者信息

Aslan Kadir, Zhang Yongxia, Hibbs Stephen, Baillie Les, Previte Michael J R, Geddes Chris D

机构信息

Institute of Fluorescence, Laboratory for Advanced Medical Plasmonics, Medical Biotechnology Center, University of Maryland Biotechnology Institute, Baltimore, MD 21201, USA.

出版信息

Analyst. 2007 Nov;132(11):1130-8. doi: 10.1039/b707876e. Epub 2007 Sep 11.

Abstract

We describe the ultra-fast and sensitive detection of the gene encoding the protective antigen of Bacillus anthracis the causative agent of anthrax. Our approach employs a highly novel platform technology, Microwave-Accelerated Metal-Enhanced Fluorescence (MAMEF), which combines the use of Metal-Enhanced Fluorescence to enhance assay sensitivity and focused microwave heating to spatially and kinetically accelerate DNA hybridization. Genomic and exosporium target DNA of Bacillus anthracis spores was detected within a minute in the nanograms per microliter concentration range using low-power focused microwave heating. The MAMEF technology was able to distinguish between B. anthracis and B. cereus, a non-virulent close relative. We believe that this study has set the stage and indeed provides an opportunity for the ultra-fast and specific detection of B. anthracis spores with minimal pre-processing steps using a relatively simple but cost-effective technology that could minimize casualties in the event of another anthrax attack.

摘要

我们描述了对炭疽病病原体炭疽杆菌保护性抗原编码基因的超快速且灵敏的检测。我们的方法采用了一种高度新颖的平台技术,即微波加速金属增强荧光技术(MAMEF),该技术结合了金属增强荧光以提高检测灵敏度,并利用聚焦微波加热在空间和动力学上加速DNA杂交。使用低功率聚焦微波加热,在每微升纳克浓度范围内,一分钟内就能检测到炭疽杆菌孢子的基因组和芽孢外膜靶DNA。MAMEF技术能够区分炭疽杆菌和蜡样芽孢杆菌(一种无毒的近亲)。我们相信,这项研究已经搭建了平台,并且确实提供了一个机会,可利用一种相对简单但经济高效的技术,以最少的预处理步骤对炭疽杆菌孢子进行超快速和特异性检测,这在发生另一次炭疽袭击时能够将人员伤亡降至最低。

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