Bae J Y, Mende P, Shevlin G, Spiegelhalder B, Preussmann R, Loeppky R N
Department of Chemistry, University of Missouri, Columbia 65211.
Chem Res Toxicol. 1994 Nov-Dec;7(6):868-76. doi: 10.1021/tx00042a023.
The acidic nitrosation of hexetidine and hexedine, common antimicrobial agents and drug constituents, leads to a mixture of nitrosamines. The major nitrosamine product, "HEXNO", forms rapidly in yields as high as 60% over the pH range 1-4.8 at incubation times of 1 h at 37 degrees C with 40 mM NO2- and 10 mM hexetidine. On the basis of extensive spectroscopic characterization and independent synthesis HEXNO has been assigned the structure of 1-(2-ethylhexyl)-3-nitroso-4-methyl-4-[[N-(2-ethylhexyl)-N- nitrosoamino]methyl]imidazolidine (7). The synthesis of HEXNO involves the novel interception by potassium nitrite in ether/18-crown-6 of an imminium ion produced from the reaction of hexedine with benzyl chloroformate. Collapse of the alpha-amino nitrous ester produced by this reaction yields the nitrosamine containing carbamate 8, which yields HEXNO after removal of the carbamate with trimethylsilyl iodide and subsequent nitrosation. The rapid formation of HEXNO from hexetidine and hexedine supports the hypothesis that tertiary geminal diamines will produce nitrosamines rapidly by a mechanism which involves the cleavage of a nitrosammonium ion with the assistance of the neighboring nitrogen atom. This process is deemed to be of possible importance in the endogenous production of potentially carcinogenic nitrosamines because of its low nitrite requirement and high nitrosation rate. The available data suggest the probable formation of HEXNO and other nitrosamines from hexetidine under conditions of its use.
己脒定和海克替啶是常见的抗菌剂和药物成分,它们的酸性亚硝化反应会生成亚硝胺混合物。主要的亚硝胺产物“HEXNO”在37℃下,于pH值1 - 4.8的范围内,在40 mM NO₂⁻和10 mM己脒定存在下孵育1小时,能够快速形成,产率高达60%。基于广泛的光谱表征和独立合成,HEXNO被确定为1-(2-乙基己基)-3-亚硝基-4-甲基-4-[[N-(2-乙基己基)-N-亚硝基氨基]甲基]咪唑烷(7)的结构。HEXNO的合成涉及亚硝酸钾在乙醚/18-冠-6中对海克替啶与苄基氯甲酸酯反应生成的亚胺离子的新型捕获。该反应生成的α-氨基亚硝酸酯分解产生含氨基甲酸酯的亚硝胺8,在用三甲基硅基碘除去氨基甲酸酯并随后进行亚硝化后生成HEXNO。己脒定和海克替啶能快速形成HEXNO,这支持了叔偕二胺将通过一种机制快速产生亚硝胺的假说,该机制涉及在相邻氮原子的协助下亚硝铵离子的裂解。由于其对亚硝酸盐的需求低且亚硝化速率高,这一过程被认为在内源性产生潜在致癌亚硝胺方面可能具有重要意义。现有数据表明在己脒定的使用条件下可能会形成HEXNO和其他亚硝胺。