Veleva Ralitsa, Topouzova-Hristova Tanya, Kostadinova Aneliya, Benkova Dayana, Trendafilova Antoaneta, Ivanova Viktoria, Moskova-Doumanova Veselina, Mladenova Kirilka, Doumanov Jordan, Yordanova Vesela, Staneva Galya
Faculty of Biology, Sofia University 'St. Kliment Ohridski', 1164 Sofia, Bulgaria.
Centre of Competence "Sustainable Utilization of Bio-Resources and Waste of Medicinal and Aromatic Plants for Innovative Bioactive Products" (BIORESOURCES BG), 1000 Sofia, Bulgaria.
Molecules. 2025 Jun 25;30(13):2740. doi: 10.3390/molecules30132740.
Oxidative stress induces lipid peroxidation within the membrane bilayer, thereby compromising membrane integrity. Polyphenols (PPs), renowned for their antioxidant properties, have been shown to mitigate oxidative damage. Here, we investigated the structural and antioxidant effects of PPs-specifically flavonoid glycosides (FGs) and phenolic acids (PAs)-extracted from using steady-state fluorescence spectroscopy in both model and cell membranes. Membrane lipid order was evaluated using DPH and Laurdan spectroscopy, while DPH-TEMPO fluorescence quenching was employed to quantify raft-like domain formation in model systems. The antioxidant capacity of the PP extracts was assessed via fluorescence quenching of -parinaric acid. Both FGs and PAs conferred approximately 2-fold antioxidant protection, with FGs showing a 1.13-fold greater effect than PAs. In addition, both PP classes promoted lipid raft formation, particularly in cholesterol-rich membranes. PPs increased order in the liquid-disordered (L) phase while inducing disorder in the liquid-ordered (L) phase, depending on the lipid-to-PP ratio. Notably, FGs enhanced membrane fluidity more strongly in A549 than in MDCKII cells, as reflected by a ~5.7-fold decrease in Laurdan GP in A549 (from 0.04 to -0.17) versus a ~1.4-fold decrease in MDCKII at 200 μg/mL. These findings highlight the dual structural and antioxidative roles of FGs and PAs in preserving membrane integrity under oxidative stress.
氧化应激会诱导膜双层内的脂质过氧化,从而损害膜的完整性。以其抗氧化特性而闻名的多酚(PPs)已被证明可减轻氧化损伤。在此,我们使用稳态荧光光谱法,在模型膜和细胞膜中研究了从[具体来源未给出]提取的PPs(特别是黄酮糖苷(FGs)和酚酸(PAs))的结构和抗氧化作用。使用DPH和Laurdan光谱评估膜脂质有序性,而DPH-TEMPO荧光猝灭用于量化模型系统中筏状结构域的形成。通过对-花生四烯酸的荧光猝灭评估PP提取物的抗氧化能力。FGs和PAs均提供了约2倍的抗氧化保护,其中FGs的效果比PAs高1.13倍。此外,两类PPs均促进脂质筏的形成,尤其是在富含胆固醇的膜中。根据脂质与PP的比例,PPs在液相无序(L)相中增加有序性,同时在液相有序(L)相中诱导无序性。值得注意的是,FGs在A549细胞中比在MDCKII细胞中更强烈地增强膜流动性,这表现为在200μg/mL时,A549细胞中Laurdan GP下降约5.7倍(从0.04降至-0.17),而MDCKII细胞中下降约1.4倍。这些发现突出了FGs和PAs在氧化应激下保护膜完整性方面的双重结构和抗氧化作用。