Tiz Davide Benedetto, Tofani Giorgio, Vicente Filipa A, Likozar Blaž
Department of Catalysis and Chemical Reaction Engineering, National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana, Slovenia.
Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000 Ljubljana, Slovenia.
Antioxidants (Basel). 2024 Nov 14;13(11):1387. doi: 10.3390/antiox13111387.
Monolignols represent pivotal alcohol-based constituents in lignin synthesis, playing indispensable roles in plant growth and development with profound implications for industries reliant on wood and paper. Monolignols and their derivates have multiple applications in several industries. Monolignols exhibit antioxidant activity due to their ability to donate hydrogen atoms or electrons to neutralize free radicals, thus preventing oxidative stress and damage to cells. Characterized by their alcohol functionalities, monolignols present three main forms: -coumaryl alcohol, coniferyl alcohol, and sinapyl alcohol. In nature, particularly in plants, monolignols with geometry () predominate over their counterparts. The methods for obtaining the three canonical monolignols, two less-common monolignols, and a monolignol analogue are addressed to present an overview of these phenol-based compounds, particularly from a synthetic standpoint. A SWOT (Strengths, Weaknesses, Opportunities, and Threats) analysis is used to explain the advantages and disadvantages of synthesizing monolignols, key alcohol-containing raw materials with enormous significance in both plant biology and industrial applications, using bench chemical methods. The uniqueness of this work is that it provides an overview of the synthetic pathways of monolignols to assist researchers in pharmaceutical and biological fields in selecting an appropriate procedure for the preparation of their lignin models. Moreover, we aim to inspire scientists, particularly chemists, to develop more sustainable synthetic protocols for monolignols.
单木质醇是木质素合成中关键的醇类成分,在植物生长发育中发挥着不可或缺的作用,对依赖木材和纸张的产业有着深远影响。单木质醇及其衍生物在多个行业有多种应用。单木质醇因其能够提供氢原子或电子以中和自由基,从而防止氧化应激和细胞损伤而具有抗氧化活性。以其醇官能团为特征,单木质醇呈现三种主要形式:对香豆醇、松柏醇和芥子醇。在自然界中,特别是在植物中,具有特定几何结构()的单木质醇比其对应物占主导地位。文中阐述了获取三种典型单木质醇、两种不太常见的单木质醇以及一种单木质醇类似物的方法,以概述这些基于酚的化合物,特别是从合成的角度。运用SWOT(优势、劣势、机会和威胁)分析来解释使用实验室化学方法合成单木质醇(在植物生物学和工业应用中都具有重大意义的关键含醇原料)的优缺点。这项工作的独特之处在于它概述了单木质醇的合成途径,以帮助制药和生物领域的研究人员选择合适的方法来制备他们的木质素模型。此外,我们旨在激励科学家,特别是化学家,开发更可持续的单木质醇合成方案。