n -芳基磺酰-1 4-naphtНoquinonЕimines与某些亲核试剂反应的氧化还原过程

A. Avdeenko, Yu. P. Kholmovoi, A. L. Yusina
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引用次数: 0

摘要

醌-对苯二酚对是有机氧化还原体系的原型,对这些化合物的电化学行为的研究具有重要的研究意义。与电子-质子转移平衡相关的电化学行为提供了有关该过程的分子结构和环境的信息。除了化学方面,醌类在活细胞的生物化学中也起着重要的作用。醌类衍生物被用作治疗几种人类癌症的药物,其生物活性与其氧化还原行为有关。醌亚胺-氨基苯酚形成类似的对。在N -取代对喹奈亚胺的亲核加成反应中,经常观察到平行氧化还原过程,并且喹奈亚胺的氧化还原电位越高,这种过程的可能性越大。萘醌亚胺与芳香胺和酰基肼的反应遵循1,4加成的方案,但作为反应产物是氧化产物-4-芳基磺酰氨基- 2-芳基氨基(2-芳基氨基)-1,4-萘醌亚胺。氧化剂可能是原来的萘醌亚胺和氧。研究表明,在1,4-萘醌亚胺与酰基肼反应中,氧是唯一氧化1,4加成产物的氧化剂,氧化还原电位的研究证明了这一点。氧化和还原形式的化合物,如萘醌亚胺和相应的氨基酚,被用来通过直接电位法测定氧化还原电位。由于萘醌亚胺-氨基萘酚对的还原形式的不稳定性,我们只使用在细胞中被氧氧化的还原形式。测定萘醌亚胺-氨基酚电偶的氧化还原电位为体系中起始物质完全氧化时(即体系中仅残留萘醌亚胺时)建立的电位Emax与体系中过程开始时以还原形式-相应的氨基酚登记的电位Emin之间的平均值。这就是直接电位法中位电位的变化。
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REDOX PROCESSES IN THE REACTIONS OF N-ARYLSULFONYL-1,4-NAPHTНOQUINONЕIMINES WITH CERTAIN NUCLEOPHILES
Quinone-hydroquinone pairs are prototypes of organic redox systems, and studies of the electrochemical behavior of these compounds are of great interest for research. Electrochemical behavior associated with the equilibrium of electron-proton transfer provides information about the molecular structure and environment of the process. Apart from chemical aspects, quinones play an important role in the biochemistry of living cells. Quinone derivatives, used as drugs for several types of human cancers, have been found to have their biological activity related to their redox behavior. Quinoneimines-aminophenols form similar pairs. In nucleophilic addition reactions of N‑substituted p-quinoneimines, parallel redox processes are often observed, and the higher the redox potential of quinoneimine, the greater the likelihood of such processes. Naphthoquinoneimines with aromatic amines and acylhydrazines follow the scheme of 1,4-addition, but as reaction products are oxidized products -4-arylsulfonylamido‑2-arylamino(2-aroylamino)-1,4-naphthoquinoneimines. The oxidant may be the original naphthoquinoneimine and oxygen. Studies have shown that oxygen in the reaction of 1,4-naphthoquinoneimines with acylhydrazines is the only oxidant that oxidizes the product of 1,4-addition, as evidenced by the study of redox potentials. Both oxidized and reduced form of the compounds, as naphthoquinoneimine and the corresponding aminonaphthol, are used to determine the redox potential by direct potentiometry. Due to the instability of the reduced form in the case of the pair naphthoquinoneimine-aminonaphthol, we used only the reduced form, which is oxidized in the cell by oxygen. The redox potential of the naphthoquinoneimine-aminonaphthol galvanic pair was determined as the average value between the potential Emax, which was established in the system upon complete oxidation of the starting substance, that is, when only naphthoquinone imine remains in the system, and the potential Emin, which was registered at the beginning of the process in the system with the reduced form – the corresponding aminonaphthol. This is the method of direct potentiometry in the variant of the middle potential.
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