Boulebd Houssem
Laboratory of Synthesis of Molecules with Biological Interest, Department of Chemistry, Faculty of Exact Sciences, University of Frères Mentouri Constantine 1, Constantine 25017, Algeria.
Molecules. 2025 Apr 10;30(8):1697. doi: 10.3390/molecules30081697.
Bromophenols (BPs), particularly those derived from marine sources, are known for their potent radical scavenging activity, effectively neutralizing reactive oxygen species (ROS). However, their exact mechanism of action remains largely unexplored, limiting our understanding of their potential as natural antioxidants. In this study, the antiradical mechanisms of two BP derivatives ( and ), previously isolated from the marine red alga , were systematically investigated using thermodynamic and kinetic calculations. Both compounds demonstrated potent hydroperoxyl radical (HOO) scavenging activity in polar and lipid environments, with rate constants surpassing those of the well-known antioxidant standards Trolox and BHT. In lipid media, BP exhibited approximately 600-fold greater activity than BP , with rate constants of 9.75 × 10 and 1.64 × 10 M s, respectively. In contrast, both BPs showed comparable activity in aqueous media, with rate constants of 3.46 × 10 and 9.67 × 10 M s for and , respectively. Mechanistic analysis revealed that formal hydrogen atom transfer (-HAT) is the predominant pathway for radical scavenging in both lipid and polar environments. These findings provide critical insights into the antiradical mechanisms of natural BPs and underscore the potential of BP and BP as highly effective hydroperoxyl radical scavengers under physiological conditions.
溴酚(BPs),尤其是那些源自海洋的溴酚,以其强大的自由基清除活性而闻名,能够有效中和活性氧(ROS)。然而,它们的确切作用机制在很大程度上仍未被探索,这限制了我们对其作为天然抗氧化剂潜力的理解。在本研究中,使用热力学和动力学计算系统地研究了两种先前从海洋红藻中分离出的BP衍生物( 和 )的抗自由基机制。这两种化合物在极性和脂质环境中均表现出强大的氢过氧自由基(HOO)清除活性,其速率常数超过了著名的抗氧化剂标准品Trolox和BHT。在脂质介质中,BP 的活性比BP 高约600倍,速率常数分别为9.75 × 10 和1.64 × 10 M s。相比之下,两种BP在水性介质中的活性相当, 和 的速率常数分别为3.46 × 10 和9.67 × 10 M s。机理分析表明,形式氢原子转移(-HAT)是脂质和极性环境中自由基清除的主要途径。这些发现为天然BP的抗自由基机制提供了关键见解,并强调了BP 和BP 在生理条件下作为高效氢过氧自由基清除剂的潜力。