Li KongYan, Xu HuaiYu, Liu YiRun, Zhong Wei, Jin YongCan, Wu WenJuan
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China; College of Light Industry and Food Engineering, Nanjing Forestry University, Nanjing 210037, China.
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China.
Int J Biol Macromol. 2024 Dec;282(Pt 1):136786. doi: 10.1016/j.ijbiomac.2024.136786. Epub 2024 Oct 21.
Lignin has a natural polyphenol structure that is expected to replace chemically synthesized antioxidants as a native antioxidant with biodegradable and convenient source characteristics. However, the improvement of the antioxidant property of lignin and its application as an antioxidant are still somewhat limited due to the lack of understanding of the relationship between specific lignin structures and antioxidant property. Therefore, the study of the relationship between lignin structure and antioxidant property is crucial to realize the high-quality application of lignin. In this experiment, the scavenging ability of free 1,1-diphenyl-2-picrylhydrazyl (DPPH·) radicals was determined for different grades of acetylated tannins, typical lignin model compounds and different structural units of milled wood lignin to investigate the relationship between lignin structure and antioxidant property. Based on the experimental results, some structure-activity relationships were proposed and the mechanism of the antioxidant property of lignin was discussed. The number of phenolic hydroxyl groups was linearly and positively correlated with antioxidant property, and the scavenging of DPPH radicals increased significantly with the increase in the number of methoxy groups in the model compounds. Moreover, aldehyde and carboxyl groups had a negative effect on the antioxidant property of lignin, while methoxy, alkyl and alcohol hydroxyl groups played a positive role. The guaiacyl (G) and syringyl (S) units favored the antioxidant property, so the difference in the content of structural units in lignin under certain conditions of phenolic hydroxyl content also affected the antioxidant property. Therefore, the antioxidant property of aspen milled lignin was higher than that of other milled lignin from different wood species. Finally, the mechanism of DPPH free radical scavenging by lignin was revealed to better understand the relationship between lignin structure and antioxidant property.
木质素具有天然的多酚结构,有望作为一种具有可生物降解和来源便利特性的天然抗氧化剂,取代化学合成的抗氧化剂。然而,由于对特定木质素结构与抗氧化性能之间的关系缺乏了解,木质素抗氧化性能的改善及其作为抗氧化剂的应用仍然受到一定限制。因此,研究木质素结构与抗氧化性能之间的关系对于实现木质素的高质量应用至关重要。在本实验中,测定了不同等级的乙酰化单宁、典型的木质素模型化合物以及磨木木素的不同结构单元对1,1-二苯基-2-苦基肼自由基(DPPH·)的清除能力,以研究木质素结构与抗氧化性能之间的关系。基于实验结果,提出了一些构效关系,并讨论了木质素抗氧化性能的机制。酚羟基的数量与抗氧化性能呈线性正相关,模型化合物中随着甲氧基数量的增加,DPPH自由基的清除率显著提高。此外,醛基和羧基对木质素的抗氧化性能有负面影响,而甲氧基、烷基和醇羟基则起到积极作用。愈创木基(G)和紫丁香基(S)单元有利于抗氧化性能,因此在酚羟基含量一定的条件下,木质素中结构单元含量的差异也会影响抗氧化性能。因此,杨木磨木木素的抗氧化性能高于其他不同木材种类的磨木木素。最后,揭示了木质素清除DPPH自由基的机制,以更好地理解木质素结构与抗氧化性能之间的关系。