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The mechanism of antioxidant activity of IRFI005 as a synthetic hydrophilic analogue of vitamin E

机译:IRFI005作为维生素E的合成亲水类似物的抗氧化作用机理

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Developing a rational strategy to control intracellular reactive oxygen species (ROS) requires understanding the mechanism of antioxidant activity. In this investigation the properties of a novel synthetic analog of vitamin E (IRFI005) with potent antioxidant activity are described. A mechanism is proposed for its efficient radical-scavenging effects. Cellular antioxidant and antitoxicity assays showed IRFI005 to freely permeate across cellular membranes, enabling it to be an effective suppressor of intracellular ROS and to protect cells against toxicity induced by free radical generating compounds. The free radical-scavenging activity of IRFI005 examined by UV-Vis and electron spin resonance (ESR) techniques clearly confirmed a "two electrons and/or H-atom" donation mechanism for each molecule of IRFI005. Reducing power assay as well as semi-empirical calculations revealed that under physiological conditions (pH~7) almost all IRFI005 molecules are in the anionic state (IRFI005~). Data indicated that the electron donating ability of IRFI005* was dominant at physiological pH because of higher stability of quinine-IRFI005~ and less barrier energy of IRFI005~ than neutral IRFI005. Consequently, the efficient cellular protection of IRFI005 against toxic free radicals can be explained by a two electron-transfer process, because of reduced inter-frontier molecular orbital energy gap barrier at physiological pH. Our findings suggest that hydrophilic vitamin E-like antioxidants are good candidates in designing novel therapeutic strategies for inhibition of oxidative stress associated with different human diseases.
机译:制定合理的策略来控制细胞内活性氧(ROS)需要了解抗氧化剂活性的机制。在这项研究中,描述了具有有效抗氧化活性的新型维生素E合成类似物(IRFI005)的特性。提出了一种有效的自由基清除作用机理。细胞抗氧化剂和抗毒性试验表明,IRFI005可自由渗透到细胞膜上,使其成为细胞内ROS的有效抑制剂,并保护细胞免受自由基产生的化合物诱导的毒性。通过UV-Vis和电子自旋共振(ESR)技术检查的IRFI005清除自由基的活性清楚地证实了每个IRFI005分子的“两个电子和/或H原子”捐赠机制。降低功率分析和半经验计算表明,在生理条件下(pH〜7),几乎所有IRFI005分子都处于阴离子状态(IRFI005〜)。数据表明,与碱性IRFI005相比,由于奎宁-IRFI005〜的稳定性更高,且IRFI005〜的势垒能量较小,因此IRFI005 *的供电子能力在生理pH值下占主导。因此,由于在生理pH值下边界间分子轨道能隙壁垒的减少,可以通过两个电子转移过程来解释IRFI005对有毒自由基的有效细胞保护。我们的发现表明,亲水性维生素E类抗氧化剂是设计抑制与不同人类疾病相关的氧化应激的新治疗策略的良好候选者。

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