Boulebd Houssem
Laboratory of Synthesis of Molecules with Biological Interest, University of Frères Mentouri Constantine 1, Constantine 25017, Algeria.
Int J Biol Macromol. 2025 Jan;284(Pt 1):138044. doi: 10.1016/j.ijbiomac.2024.138044. Epub 2024 Nov 25.
Monolignols, p-coumaryl alcohol (CouA), coniferyl alcohol (ConiA), and sinapyl alcohol (SinA), are the fundamental materials for lignin biosynthesis, a major component of lignocellulosic biomass. In the present study, we report a comprehensive analysis of the antioxidant properties of monolignols, using density functional theory (DFT) calculations. Under model physiological conditions, monolignols demonstrated a high hydroperoxyl radical scavenging capacity in polar media, with overall rate constants (k) ranging from 5.80 × 10 to 1.15 × 10 M s. In contrast, this activity was less pronounced in lipid media, with k in the range of 2.66 × 10 to 2.61 × 10 M s. The single electron transfer (SET) mechanism was found to play a decisive role in water at physiological pH and under basic conditions, whereas the formal hydrogen transfer (FHT) mechanism was the exclusive pathway in aqueous acid conditions and lipid media. Furthermore, the monolignols ConiA and SinA, demonstrated a strong capacity to chelate Cu(II) and Fe(III) ions in water, with apparent equilibrium constants in the range of 9.21 × 10 to 5.93 × 10 M s. Their complexes were also found to be highly effective in blocking the reduction of Cu(II)-to-Cu(I) and Fe(III)-to-Fe(II) via the ascorbic acid anion pathway.
单木质醇,对香豆醇(CouA)、松柏醇(ConiA)和芥子醇(SinA),是木质素生物合成的基本原料,木质素是木质纤维素生物质的主要成分。在本研究中,我们使用密度泛函理论(DFT)计算报告了对单木质醇抗氧化性能的全面分析。在模拟生理条件下,单木质醇在极性介质中表现出较高的氢过氧自由基清除能力,总速率常数(k)范围为5.80×10至1.15×10 M⁻¹ s⁻¹。相比之下,这种活性在脂质介质中不太明显,k范围为2.66×10至2.61×10 M⁻¹ s⁻¹。发现单电子转移(SET)机制在生理pH值的水中和碱性条件下起决定性作用,而形式氢转移(FHT)机制是在酸性水溶液条件和脂质介质中的唯一途径。此外,单木质醇ConiA和SinA在水中表现出很强的螯合Cu(II)和Fe(III)离子的能力,表观平衡常数范围为9.21×1至5.93×10 M⁻¹ s⁻¹。还发现它们的配合物在通过抗坏血酸阴离子途径阻断Cu(II)还原为Cu(I)和Fe(III)还原为Fe(II)方面非常有效。