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基于适配体作为识别元件的生物传感器现场爆炸物检测。

Biosensor-based on-site explosives detection using aptamers as recognition elements.

作者信息

Ehrentreich-Förster Eva, Orgel Dagmar, Krause-Griep Andrea, Cech Birgit, Erdmann Volker A, Bier Frank, Scheller F W, Rimmele Martina

机构信息

Fraunhofer Institute for Biomedical Technology, Am Mühlenberg 13, Potsdam, 14476, Germany.

出版信息

Anal Bioanal Chem. 2008 Jul;391(5):1793-800. doi: 10.1007/s00216-008-2150-5. Epub 2008 May 27.

Abstract

Reliable observation, detection and characterisation of polluted soil are of major concern in regions with military activities in order to prepare efficient decontamination. Flexible on-site analysis may be facilitated by biosensor devices. With use of fibre-optic evanescent field techniques, it has been shown that immunoaffinity reactions can be used to determine explosives sensitively. Besides antibodies as molecular recognition elements, high-affinity nucleic acids (aptamers) can be employed. Aptamers are synthetically generated and highly efficient binding molecules that can be derived for any ligand, including small organic molecules like drugs, explosives or derivatives thereof. In this paper we describe the development of specific aptamers detecting the explosives molecule TNT. The aptamers are used as a sensitive capture molecule in a fibre-optic biosensor. In addition, through the biosensor measurements the aptamers could be characterised. The advantages of the aptamer biosensor include its robustness, its ability to discriminate between different explosives molecules while being insensitive to other chemical entities in natural soil and its potential to be incorporated into a portable device. Results can be obtained within minutes. The measurement is equally useful for soil that has been contaminated for a long time and for urgent hazardous spills.

摘要

在有军事活动的地区,对污染土壤进行可靠的观察、检测和特性描述对于准备有效的去污工作至关重要。生物传感器设备可能有助于进行灵活的现场分析。利用光纤倏逝场技术已表明,免疫亲和反应可用于灵敏地测定爆炸物。除了抗体作为分子识别元件外,还可采用高亲和力核酸(适体)。适体是合成产生的高效结合分子,可针对任何配体获得,包括药物、爆炸物或其衍生物等小分子有机化合物。在本文中,我们描述了检测爆炸物分子三硝基甲苯(TNT)的特异性适体的开发。这些适体在光纤生物传感器中用作灵敏的捕获分子。此外,通过生物传感器测量可以对适体进行特性描述。适体生物传感器的优点包括其稳健性、能够区分不同爆炸物分子同时对天然土壤中的其他化学物质不敏感以及有潜力集成到便携式设备中。几分钟内即可获得结果。该测量对于长期受污染的土壤和紧急危险泄漏同样有用。

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