氧化剂
自愈水凝胶
激进的
单宁酸
聚合
化学
单体
药品
自由基聚合
组合化学
化学工程
聚合物
有机化学
药理学
医学
工程类
作者
Yucen Cai,Xiaoxue Fu,Yingjuan Zhou,Lin Lei,Jiajia Wang,Wei‐Nan Zeng,Zhangyou Yang
标识
DOI:10.1016/j.jconrel.2023.09.004
摘要
The preparation of hydrogels as drug carriers via radical-mediated polymerization has significant prospects, but the strong oxidizing ability of radicals and the high temperatures generated by the vigorous reactions limits the loading for reducing/heat-sensitive drugs. Herein, an applicable hydrogel synthesized by radical-mediated polymerization is reported for the loading and synergistic application of specific drugs. First, the desired sol is obtained by polymerizing functional monomers using a radical initiator, and then tannic-acid-assisted specific drug mediates sol-branched phenylboric acid group to form the required functional hydrogel (New-gel). Compared with the conventional single-step radical-mediated drug-loading hydrogel, the New-gel not only has better chemical/physical properties but also efficiently loads and releases drugs and maintains drug activity. Particularly, the New-gel has excellent loading capacity for oxygen, and exhibits significant practical therapeutic effects for diabetic wound repair. Furthermore, owing to its high light transmittance, the New-gel synergistically promotes the antibacterial effect of photosensitive drugs. This gelation strategy for loading drugs has further promising biomedical applications.
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