The University of Danang─University of Technology and Education, Da Nang 550000, Vietnam.
Department of Biochemistry and Chemistry, La Trobe University, Bundoora 3086, Victoria, Australia.
J Phys Chem A. 2023 Jun 15;127(23):4934-4939. doi: 10.1021/acs.jpca.3c01743. Epub 2023 Jun 2.
2-Mercaptoimidazole () is related to natural ovothiols that are recognized as powerful radical scavengers. Yet, despite early reports of its potent antioxidant properties, received little attention. Specifically, its radical scavenging activity against typical free radicals like HO and HOO has not yet been studied in terms of its mechanism and kinetics. In this project, density functional theory (DFT) simulations were used to assess the antiradical activity of . Calculations indicate that can demonstrate anti-HO activity in both lipid and aqueous environments ( of 1.05 × 10 and 2.07 × 10 M s, respectively). The calculated kinetics is extremely close to the experimental data in water (pH = 7.0), resulting in a / ratio of 1.73, validating the accuracy of the computational method and its usefulness for assessing radical scavenging activity in silico. In lipid media, the HOO radical scavenging activity of is faster than that of common typical natural scavengers such as ascorbic acid, Trolox, and trans-resveratrol; hence, is a powerful radical scavenger in nonpolar media.
2-巯基咪唑()与天然卵巯基化合物有关,后者被认为是强大的自由基清除剂。然而,尽管早期有报道称其具有很强的抗氧化特性,但并没有得到太多关注。具体来说,其对典型自由基(如 HO 和 HOO)的清除活性在机制和动力学方面尚未得到研究。在这个项目中,使用密度泛函理论(DFT)模拟来评估的抗自由基活性。计算表明,在脂质和水相环境中,都可以表现出抗 HO 活性(分别为 1.05×10 和 2.07×10 M s)。计算得到的动力学与水中的实验数据(pH=7.0)非常接近,导致/的比值为 1.73,验证了计算方法的准确性及其在计算机模拟中评估自由基清除活性的有用性。在脂质介质中,的 HOO 自由基清除活性比常见的典型天然清除剂(如抗坏血酸、Trolox 和反式白藜芦醇)更快;因此,在非极性介质中是一种强大的自由基清除剂。