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Quantum Chemical and Biochemical Study on Antioxidant Properties of Halogenated Boroxine K2[B3O3F4OH]

机译:卤代硼氧烷K2 [B3O3F4OH]抗氧化性能的量子化学和生化研究

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摘要

The boron heterocyclic compound dipottasium trioxohydroxytetraflourotriborate, K2[B3O3F4OH] has been listed as a promising new therapeutic for the epidermal changes treatment. In order to elucidate its free radical scavenging activity, several appropriate thermodynamic molecular descriptors were calculated with the help of quantum-chemistry methods and their values were compared with the data obtained for ascorbic acid, trimethlyboroxine and trimethoxyboroxine. Considering the results, it may be suggested that the single electron transfer followed by proton transfer (SET-PT) is more favourable reaction pathway than hydrogen atom transfer (HAT) for the halogenated boroxine K2[B3O3F4OH]. Experimental support is provided by evaluating the in-vitro antioxidant activity of the investigated compounds in terms of their ferric-reducing antioxidant power (FRAP). Our study reveals that all three examined boroxines are extremely weak antioxidants. This work is licensed under a Creative Commons Attribution 4.0 International License.
机译:硼杂环化合物三氧三氟四氟硼酸二硼酸钾(K2 [B3O3F4OH])已被列为表皮变化治疗的有希望的新疗法。为了阐明其清除自由基的活性,借助量子化学方法计算了几种合适的热力学分子描述子,并将它们的值与抗坏血酸,三甲基环硼氧烷和三甲氧基环硼氧烷的数据进行了比较。考虑到结果,可能暗示对于卤代环硼氧烷K2 [B3O3F4OH],单电子转移随后质子转移(SET-PT)比氢原子转移(HAT)更有利。通过评估所研究化合物的三价铁还原抗氧化剂能力(FRAP),提供了实验支持。我们的研究表明,所有三种检测到的环硼氧烷都是极弱的抗氧化剂。本作品已根据知识共享署名4.0国际许可协议获得许可。

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