活性氧
纳米技术
化学
生化工程
对偶(语法数字)
合理设计
计算生物学
抗氧化剂
氧化还原
多酚
氧化还原
双重角色
癌症治疗
生物技术
生物化学
生物有机体
抗菌剂
人类健康
计算机科学
作者
Jose Bolaños-Cardet,Belén Pepió-Tàrrega,Javier Saiz Poseu,Alba López-Moral,Faiz Ullah,Victor J Yuste,Daniel Ruiz Molina,Salvio Suárez García
标识
DOI:10.1002/anie.202513698
摘要
Abstract Polyphenols, particularly catechols, represent a significant class of compounds characterized by their versatile physicochemical and biological properties, sourced from both natural origins and industrial by‐products. This review highlights their critical redox properties, which enable both antioxidant activity and controlled reactive oxygen species (ROS) generation. These dual capacities underpin their diverse biomedical applications, including the development of materials like nanoparticles, hydrogels, bioadhesives, coatings, and membranes. The review explores their utility in areas such as antimicrobial strategies, advanced cancer therapy, and tissue regeneration, demonstrating how their ROS modulation drives therapeutic effects. Despite promising preclinical studies, significant challenges persist in clinical translation, encompassing pharmacokinetics, biosafety, regulatory pathways, and manufacturing consistency. Future perspectives emphasize the crucial need for deeper understanding and precise control of ROS dynamics, advanced delivery systems, rational material design, and the integration of artificial intelligence (AI) to accelerate research and clinical validation. This comprehensive review synthesizes the current state, challenges, and future directions for polyphenol‐based biomedical materials.
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