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鉴于恐怖主义威胁日益增加,有机磷化合物的毒理学研究

Toxicology of organophosphorus compounds in view of an increasing terrorist threat.

作者信息

Worek Franz, Wille Timo, Koller Marianne, Thiermann Horst

机构信息

Bundeswehr Institute of Pharmacology and Toxicology, Neuherbergstrasse 11, 80937, Munich, Germany.

出版信息

Arch Toxicol. 2016 Sep;90(9):2131-2145. doi: 10.1007/s00204-016-1772-1. Epub 2016 Jun 27.

Abstract

The implementation of the Chemical Weapon Convention (CWC), prohibiting the development, production, storage and use of chemical weapons by 192 nations and the ban of highly toxic OP pesticides, especially class I pesticides according to the WHO classification, by many countries constitutes a great success of the international community. However, the increased interest of terrorist groups in toxic chemicals and chemical warfare agents presents new challenges to our societies. Almost seven decades of research on organophosphorus compound (OP) toxicology was mainly focused on a small number of OP nerve agents despite the fact that a huge number of OP analogues, many of these agents having comparable toxicity to classical nerve agents, were synthesized and published. Only limited physicochemical, toxicological and medical information on nerve agent analogues is available in the open literature. This implies potential gaps of our capabilities to detect, to decontaminate and to treat patients if nerve agent analogues are disseminated and may result in inadequate effectiveness of newly developed countermeasures. In summary, our societies may face new, up to now disregarded, threats by toxic OP which calls for increased awareness and appropriate preparedness of military and civilian CBRN defense, a broader approach for new physical and medical countermeasures and an integrated system of effective detection, decontamination, physical protection and treatment.

摘要

《化学武器公约》(CWC)的实施取得了巨大成功,192个国家禁止发展、生产、储存和使用化学武器,许多国家还禁止使用剧毒的有机磷农药,尤其是世界卫生组织分类中的一类农药。然而,恐怖组织对有毒化学品和化学战剂的兴趣增加,给我们的社会带来了新的挑战。尽管已经合成并发表了大量的有机磷类似物,其中许多与经典神经毒剂具有相当的毒性,但近七十年来对有机磷化合物(OP)毒理学的研究主要集中在少数几种OP神经毒剂上。公开文献中关于神经毒剂类似物的物理化学、毒理学和医学信息有限。这意味着如果神经毒剂类似物被传播,我们在检测、去污和治疗患者方面的能力可能存在潜在差距,并可能导致新开发的应对措施效果不佳。总之,我们的社会可能面临有毒有机磷带来的新的、迄今被忽视的威胁,这就要求提高军事和民用化生放核防御的意识并做好适当准备,采用更广泛的新物理和医学应对措施方法,以及建立有效的检测、去污、物理防护和治疗综合系统。

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