The increased interest of terrorist groups in toxic chemicals and chemical warfare agents presents a continuing threat to our societies. Early warning and detection is a key component for effective countermeasures against such deadly agents. Presently available and near term solutions have a number of major drawbacks, e.g. lack of automated, remote warning and detection of primarily low volatile chemical warfare agents. An alternative approach is the use of animals as sentinels for exposure to toxic chemicals. To overcome disadvantages of vertebrates the present pilot study was initiated to investigate the suitability of South American cockroaches (Blaptica dubia) as warning system for exposure to chemical warfare nerve and blister agents. Initial in vitro experiments with nerve agents showed an increasing inhibitory potency in the order tabun - cyclosarin - sarin - soman - VX of cockroach cholinesterase. Exposure of cockroaches to chemical warfare agents resulted in clearly visible and reproducible reactions, the onset being dependent on the agent and dose. With nerve agents the onset was related to the volatility of the agents. The blister agent lewisite induced signs largely comparable to those of nerve agents while sulfur mustard exposed animals exhibited a different sequence of events. In conclusion, this first pilot study indicates that Blaptica dubia could serve as a warning system to exposure of chemical warfare agents. A cockroach-based system will not detect or identify a particular chemical warfare agent but could trigger further actions, e.g. specific detection and increased protective status. By designing appropriate boxes with (IR) motion sensors and remote control (IR) camera automated off-site warning systems could be realized.

译文

恐怖组织对有毒化学品和化学战剂的兴趣日益增加,这对我们的社会构成了持续的威胁。预警和检测是针对此类致命病原体的有效对策的关键组成部分。目前可用的和近期的解决方案具有许多主要缺点,例如缺乏自动,远程警告和主要是低挥发性化学战剂的检测。另一种方法是使用动物作为暴露于有毒化学物质的哨兵。为了克服脊椎动物的缺点,开始了本初步研究,以研究南美蟑螂 (Blaptica dubia) 作为暴露于化学战神经和水泡剂的警告系统的适用性。最初使用神经毒剂进行的体外实验显示,蟑螂胆碱酯酶的tabun-环沙林-梭曼-VX的抑制能力不断提高。蟑螂暴露于化学战剂会导致清晰可见且可重现的反应,其发作取决于药剂和剂量。神经毒剂的发作与毒剂的波动性有关。起泡剂lewisite诱导的体征与神经毒剂相当,而芥末暴露的动物表现出不同的事件顺序。总之,这项初步研究表明,Blaptica dubia可以作为暴露化学战剂的警告系统。基于蟑螂的系统不会检测或识别特定的化学战剂,但可能会触发进一步的动作,例如特定的检测和增加的保护状态。通过设计带有 (IR) 运动传感器和远程控制 (IR) 摄像机的适当盒子,可以实现自动化的异地警告系统。

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