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用于检测具有国防意义的化学和生物制剂的生物传感器。

Biosensors for chemical and biological agents of defence interest.

作者信息

Paddle B M

机构信息

DSTO, Aeronautical and Maritime Research Laboratory, Department of Defence, Melbourne, Victoria, Australia.

出版信息

Biosens Bioelectron. 1996;11(11):1079-113. doi: 10.1016/0956-5663(96)82333-5.

Abstract

This review discusses current developments in biosensors for toxic materials of defence interest with particular emphasis on the biological element of such devices. A wide variety of synthetic chemicals, toxins of plant or animal origin and biological materials--including various disease micro-organisms as well as some bacterial exotoxins--have either been used as warfare agents or are perceived as having the potential to be used for that purpose. Although an enormous effort is being put into developing biosensors, relatively few analytes, especially toxic materials, can yet be measured by commercially available devices. The factors which currently mitigate against the use of enzyme, natural receptor or antibody based biosensors for unattended continuous environmental monitoring of toxic materials include the inherent instability and availability of suitable proteins and--for receptors and antibodies--the essentially irreversible nature of the binding event, which necessitates a continuous supply of reagents for sequential measurements. Assays involving antibody or DNA based biosensors are time consuming when working in a hazardous environment. Nevertheless, biosensors are capable of being used for extremely sensitive and specific on-site measurements of contamination by specific toxic materials. Methods for improving the stability, extending the range and altering the binding characteristics of sensing molecules are discussed.

摘要

本综述讨论了用于检测具有军事意义的有毒物质的生物传感器的当前发展情况,特别强调了此类设备的生物元件。各种各样的合成化学品、动植物源毒素以及生物材料——包括各种致病微生物以及一些细菌外毒素——要么已被用作战争制剂,要么被认为有潜力被用于此目的。尽管在开发生物传感器方面投入了巨大努力,但目前市售设备能够检测的分析物相对较少,尤其是有毒物质。目前阻碍使用基于酶、天然受体或抗体的生物传感器对有毒物质进行无人值守连续环境监测的因素包括合适蛋白质固有的不稳定性和可得性,以及——对于受体和抗体而言——结合事件本质上的不可逆性,这就需要持续供应试剂以进行连续测量。在危险环境中工作时,涉及基于抗体或DNA的生物传感器的检测很耗时。然而,生物传感器能够用于对特定有毒物质的污染进行极其灵敏和特异的现场检测。文中讨论了提高传感分子稳定性、扩大检测范围以及改变其结合特性的方法。

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