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Engineering lignin-based antimicrobials: Experimental foundations and data-driven optimization
DOI:10.1016/j.biotechadv.2026.108953.png)
摘要
En 中文
• 木质素作为抗菌材料的可持续酚类平台。• 木质素的抗菌机制和活性被阐述。• 提高抗菌性能的工程策略被综述。• 木质素基水凝胶、薄膜、纳米材料和复合材料被综述。• 计算机和人工智能工具能够预测和优化活性。
Keyword:
Lignin
Engineering approaches
Global optimization
Machine learning
Rational design
期刊
IF:
12.5
论文数:
3.0K
被引数:
2.7W
机构
引用论文
Pretreatment and enzymatic hydrolysis optimization of lignocellulosic biomass for ethanol, xylitol, and phenylacetylcarbinol co-production using Candida magnoliae采用*Candida magnoliae*进行木质纤维素生物质预处理及酶解优化,以共生产乙醇、木糖醇和苯乙酰基甲醇。
Synthesis and characterization of gelatin/lignin hydrogels as quick release drug carriers for Ribavirin明胶/木质素水凝胶作为利巴韦林速释药物载体的合成与表征
Lignin-enzyme interaction: A roadblock for efficient enzymatic hydrolysis of lignocellulosics木质素-酶相互作用: 木质纤维素高效酶促水解的障碍
Predicting antimicrobial properties of lignin derivatives through combined data driven and experimental approach通过结合数据驱动和实验方法预测木质素衍生物的抗菌性能
Flavonoid Glycosides and Phenolic Acids from Inula Oculus-Christi Modulate Membrane Organization and Provide Antioxidant ProtectionVeleva, R.; Topouzova-Hristova, T.; Kostadinova, A.; Benkova, D.; Trendafilova, A.; Ivanova, V.; Moskova-Doumanova, V.; Mladenova, K.; Doumanov, J.; Yordanova, V.; et al. 槲皮素糖苷和酚酸来自Inula oculus-christi,能够调节膜结构并提供抗氧化保护。Molecules 2025, 30, 2740. [Google Scholar] [CrossRef]
Molecules
IF0
Antimicrobial intermediates of the general phenylpropanoid and lignin specific pathways
PHYTOCHEMISTRY
IF3.4

