不同二异氰酸酯对DNA的体外结合电位比较。

M Peel, B Marczynski, X Baur
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引用次数: 10

摘要

吸入二异氰酸酯蒸气与立即型超敏反应和直接毒性反应有关。二异氰酸酯的基因毒性作用尚未明确。本研究的目的是检查DNA在体外暴露于三种最常用的二异氰酸酯(甲苯二异氰酸酯,TDI;MDI methylenediphenyl-4 4的二异氰酸酯;和六亚甲基二异氰酸酯(HDI),并利用DNA的熔化行为和DNA的电泳研究来比较它们的结合势。将DNA与MDI(纯和混合)和HDI孵育后,我们发现与对照小牛胸腺DNA相比,融化行为没有差异。然而,经过TDI处理的DNA由于高染性的改变而显示出天然DNA曲线形状的差异,并且在恢复后显示出14%的DNA重构。天然DNA熔融行为的微小变化并不表明DNA链内交联的形成,而是单链和双链DNA的构象变化。通过琼脂糖电泳进一步探讨了天然和变性小牛胸腺DNA的构象变化。对照组和所有暴露于二异氰酸酯的DNA在天然DNA片段的大小上没有差异。相反,在变性后,TDI混合物孵育的DNA电泳显示,与对照、mdi变性(纯和混合)和hdi变性的DNA相比,双链DNA片段大小明显减少。这些发现可能有助于更好地理解TDI基因毒性作用的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of the binding potential of various diisocyanates on DNA in vitro.

Inhalation of diisocyanate vapors is associated with immediate-type hypersensitivity reactions and direct toxic responses. The genotoxic effects of diisocyanates have not been clarified. The aim of this study was to examine the changes in DNA following in vitro exposure to three most commonly used diisocyanates (toluene diisocyanate, TDI; methylenediphenyl-4,4'-diisocyanate, MDI; and hexamethylene diisocyanate, HDI) and to compare their binding potential using melting behavior of DNA and electrophoresis studies in DNA. Following incubation of DNA with MDI (pure and mix) and HDI we found no differences in the melting behavior compared to the control calf thymus DNA. However, DNA treated with TDI showed differences in the shape of the native DNA curves due to changes in hyperchromicity and exhibited 14% more DNA reconstitution after renaturation. The small changes in the melting behavior of native DNA do not suggest the formation of DNA intrastrand cross-links but rather conformational changes of single- and double-stranded DNA. These conformational changes were further explored by agarose electrophoresis of native and denatured calf thymus DNA. Control and all diisocyanate-exposed DNA showed no differences in the size of native DNA fragments. Conversely, electrophoresis of TDI mix-incubated DNA, following denaturation, showed a distinct reduction in the double-stranded DNA fragment size compared to the control, MDI-denatured (pure and mix), and HDI-denatured DNA. These findings may help to better understand the mechanisms of the genotoxic effect of TDI.

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