Institut für Pharmakologie und Toxikologie der Bundeswehr, Neuherbergstrasse 11, D-80937 München, Germany.
Toxicology. 2012 Dec 16;302(2-3):163-71. doi: 10.1016/j.tox.2012.08.013. Epub 2012 Sep 11.
The ability of 13 β-cyclodextrin and 2 glucose derivatives containing substituents with oxime groups as nucleophilic components to accelerate the degradation of tabun at physiological pH has been evaluated. To this end, a qualitative and a quantitative enzymatic assay as well as a highly sensitive enantioselective GC-MS assay were used. In addition, an assay was developed that provided information about the mode of action of the investigated compounds. The results show that attachment of pyridinium-derived substituents with an aldoxime group in 3- or 4-position to a β-cyclodextrin ring affords active compounds mediating tabun degradation. Activities differ depending on the structure, the number, and the position of the substituent on the ring. Highest activity was observed for a β-cyclodextrin containing a 4-formylpyridinium oxime residue in 6-position of one glucose subunit, which detoxifies tabun with a half-time of 10.2 min. Comparison of the activity of this compound with that of an analog in which the cyclodextrin ring was replaced by a glucose residue demonstrated that the cyclodextrin is not necessary for activity but certainly beneficial. Finally, the results provide evidence that the mode of action of the cyclodextrin involves covalent modification of its oxime group rendering the scavenger inactive after reaction with the first tabun molecule.
已评估了 13-β-环糊精和 2 种含有肟基取代基的葡萄糖衍生物作为亲核成分,加速生理 pH 下沙林的降解能力。为此,使用了定性和定量酶测定法以及高度灵敏的对映选择性 GC-MS 测定法。此外,还开发了一种测定方法,提供了有关所研究化合物作用方式的信息。结果表明,在 3 位或 4 位将吡啶衍生取代基与醛肟基连接到β-环糊精环上,得到了介导沙林降解的活性化合物。活性取决于结构、取代基的数量和环上的位置而有所不同。在一个葡萄糖单元的 6 位上含有 4-甲酰基吡啶鎓肟残基的β-环糊精显示出最高的活性,可将沙林解毒,半衰期为 10.2 分钟。将该化合物的活性与其中环糊精环被葡萄糖残基取代的类似物的活性进行比较表明,环糊精对于活性不是必需的,但肯定是有益的。最后,结果提供了证据,表明环糊精的作用方式涉及肟基的共价修饰,使得该清除剂在与第一个沙林分子反应后失去活性。