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Psychiatric Disorders and Oxidative Injury: Antioxidant Effects of Zolpidem Therapy disclosed In Silico

机译:精神疾病和氧化损伤:唑吡坦疗法的抗氧化作用已在计算机上公开

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Zolpidem (N,N-Dimethyl-2-[6-methyl-2-(4-methylphenyl)imidazo[1,2-a]pyridin-3-yl]acetamide) is a well-known drug for the treatment of sleeping disorders. Recent literature reports on positive effects of zolpidem therapy on improving renal damage after cisplatin and on reducing akinesia without sleep induction. This has been ascribed to the antioxidant and neuroprotective capacity of this molecule, and tentatively explained according to a generic structural similarity between zolpidem and melatonin. In this work, we investigate in silico the antioxidant potential of zolpidem as scavenger of five ROSs, acting via hydrogen atom transfer (HAT) mechanism; computational methodologies based on density functional theory are employed. For completeness, the analysis is extended to six metabolites. Thermodynamic and kinetic results disclose that indeed zolpidem is an efficient radical scavenger, similarly to melatonin and Trolox, supporting the biomedical evidence that the antioxidant potential of zolpidem therapy may have a beneficial effect against oxidative injury, which is emerging as an important etiopathogenesis in numerous severe diseases, including psychiatric disorders.
机译:唑吡坦(N,N-二甲基-2- [6-甲基-2-(4-甲基苯基)咪唑并[1,2-a]吡啶-3--3-基]乙酰胺)是治疗睡眠障碍的知名药物。最近的文献报道了唑吡坦治疗对改善顺铂后肾损害和减少无睡眠诱导的运动障碍的积极作用。这已经归因于该分子的抗氧化和神经保护能力,并根据唑吡坦和褪黑激素之间的通用结构相似性进行了初步解释。在这项工作中,我们在计算机上研究了唑吡坦作为五种ROS的清除剂的抗氧化潜力,并通过氢原子转移(HAT)机理发挥作用。采用基于密度泛函理论的计算方法。为了完整起见,分析扩展到六个代谢物。热力学和动力学结果表明,唑吡坦确实是一种有效的自由基清除剂,与褪黑激素和Trolox相似,支持生物医学证据表明唑吡坦疗法的抗氧化潜力可能对氧化损伤具有有益作用,在许多重症患者中,唑吡坦已成为重要的病因疾病,包括精神疾病。

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