Bay Mai Van, Nam Pham Cam, Quang Duong Tuan, Mechler Adam, Hien Nguyen Khoa, Hoa Nguyen Thi, Vo Quan V
Department of Chemistry, The University of Da Nang, University of Science and Education, Da Nang 550000, Vietnam.
Department of Chemical Engineering, The University of Da Nang, University of Science and Technology, Da Nang 550000, Vietnam.
ACS Omega. 2020 Mar 31;5(14):7895-7902. doi: 10.1021/acsomega.9b04179. eCollection 2020 Apr 14.
Depsidones are secondary metabolites in lichens with a range of potential health benefits. Among others, these compounds are believed to exhibit high hydroxyl radical and superoxide scavenging abilities, warranting a detailed investigation of their antioxidant properties. In this study, the radical scavenging activity of natural depsidones from lichenized fungi was investigated in silico. Calculations of the thermodynamic parameters suggested that the main radical scavenging pathway follows the formal hydrogen transfer (FHT) mechanism; however, unexpectedly low rate constants were found in the CHOO scavenging reaction. Establishing that the depsidones are mostly ionized in an aqueous environment suggested that the single-electron transfer (SET) mechanism should not be ruled out. Consistently, depsidones were revealed to be excellent HO and O scavengers in aqueous solutions ( = 4.60 × 10 - 8.60 × 10 M s and = 2.60 × 10 - 8.30 × 10 M s, respectively) following the sequential proton loss electron transfer (SPLET) mechanism. These results suggest that natural fungal depsidones are potent hydroxyl and superoxide radical scavengers in aqueous solutions.
缩酚酸环醚是地衣中的次生代谢产物,具有一系列潜在的健康益处。其中,这些化合物被认为具有高的羟基自由基和超氧阴离子清除能力,因此有必要对其抗氧化性能进行详细研究。在本研究中,利用计算机模拟研究了地衣化真菌中天然缩酚酸环醚的自由基清除活性。热力学参数计算表明,主要的自由基清除途径遵循形式氢转移(FHT)机制;然而,在CHOO清除反应中发现了出乎意料的低速率常数。确定缩酚酸环醚在水环境中大多被电离,这表明单电子转移(SET)机制不应被排除。一致地,缩酚酸环醚在水溶液中被揭示为优异的HO和O清除剂(分别为 = 4.60 × 10 - 8.60 × 10 M s和 = 2.60 × 10 - 8.30 × 10 M s),遵循顺序质子损失电子转移(SPLET)机制。这些结果表明,天然真菌缩酚酸环醚在水溶液中是有效的羟基和超氧阴离子自由基清除剂。