University of Kragujevac, Institute for Information Technologies, Department of Science, Jovana Cvijića bb, 34000, Kragujevac, Serbia.
Chem Biol Interact. 2024 Jun 1;396:111034. doi: 10.1016/j.cbi.2024.111034. Epub 2024 May 7.
This study aimed to explore the antioxidant and prooxidative activity of two natural furanocoumarin derivatives, Bergaptol (4-Hydroxy-7H-furo [3,2-g] [1]benzopyran-7-one, BER) and Xanthotoxol (9-Hydroxy-7H-furo [3,2-g] [1]benzopyran-7-one, XAN). The collected thermodynamic and kinetic data demonstrate that both compounds possess substantial antiradical activity against HO and CClOO radicals in physiological conditions. BER exhibited better antiradical activity in comparison to XAN, which can be attributed to the enhanced deprotonation caused by the positioning of the -OH group on the psoralen ring. In contrast to highly reactive radical species, newly formed radical species BER and XAN exhibited negligible reactivity towards the chosen constitutive elements of macromolecules (fatty acids, amino acids, nucleobases). Furthermore, in the presence of O, the ability to regenerate newly formed radicals BER and XAN was observed. Conversely, in physiological conditions in the presence of Cu(II) ions, both compounds exhibit prooxidative activity. Nevertheless, the prooxidative activity of both compounds is less prominent than their antioxidant activity. Furthermore, it has been demonstrated that anionic species can engage in the creation of a chelate complex, which restricts the reduction of metal ions when reducing agents are present (O and Asc). Moreover, studies have demonstrated that these chelating complexes can be coupled with other radical species, hence enhancing their ability to inactivate radicals. Both compounds exhibited substantial inhibitory effects against enzymes involved in the direct or indirect generation of ROS: Xanthine Oxidase (XOD), Lipoxygenase (LOX), Myeloperoxidase (MPO), NADPH oxidase (NOX).
本研究旨在探讨两种天然呋喃香豆素衍生物, Bergaptol(4-羟基-7H-呋喃并[3,2-g][1]苯并吡喃-7-酮,BER)和黄曲霉素(9-羟基-7H-呋喃并[3,2-g][1]苯并吡喃-7-酮,XAN)的抗氧化和促氧化活性。收集的热力学和动力学数据表明,这两种化合物在生理条件下均对 HO 和 CClOO 自由基具有很强的抗自由基活性。与 XAN 相比,BER 表现出更好的抗自由基活性,这归因于 psoralen 环上-OH 基团的定位增强了去质子化。与高反应性自由基不同,新形成的自由基 BER 和 XAN 对大分子的选定组成部分(脂肪酸、氨基酸、核苷碱基)几乎没有反应性。此外,在 O 的存在下,观察到新形成的自由基 BER 和 XAN 的再生能力。相反,在生理条件下存在 Cu(II)离子时,这两种化合物均表现出促氧化活性。然而,这两种化合物的促氧化活性不及抗氧化活性显著。此外,研究表明,阴离子物种可以参与形成螯合配合物,当存在还原剂(O 和 Asc)时,这会限制金属离子的还原。此外,研究表明,这些螯合配合物可以与其他自由基结合,从而增强其灭活自由基的能力。两种化合物对直接或间接产生 ROS 的酶,如黄嘌呤氧化酶(XOD)、脂氧合酶(LOX)、髓过氧化物酶(MPO)、NADPH 氧化酶(NOX),均表现出显著的抑制作用。