自愈水凝胶
药物输送
控制释放
纳米技术
药品
化学
利多卡因
材料科学
生物医学工程
药理学
医学
外科
有机化学
作者
Jiezhou Pan,Haotian Liao,Guidong Gong,Yunxiang He,Qin Wang,Lang Qin,Yaoyao Zhang,Hirotaka Ejima,Blaise L. Tardy,Joseph J. Richardson,Jiaojiao Shang,Orlando J. Rojas,Yong Zeng,Junling Guo
标识
DOI:10.1016/j.jconrel.2023.07.003
摘要
Drug-dependent design of hydrogels is currently required for engineering the controlled release of therapeutics, which is a major contributor to the technical challenges relating to the clinical translation of hydrogel-drug systems. Herein, by integrating supramolecular phenolic-based nanofillers (SPFs) into hydrogel microstructures we developed a facile strategy to endow a range of clinically relevant hydrogels with controlled release properties for diverse therapeutic agents. The assembly of multiscale SPF aggregates leads to tunable mesh size and multiple dynamic interactions between SPF aggregates and drugs, which relaxes the available choices of drugs and hydrogels. This simple approach allowed for the controlled release of 12 representative drugs evaluated with 8 commonly used hydrogels. Moreover, the anesthetic drug lidocaine was loaded into SPF-integrated alginate hydrogel and demonstrated sustained release for 14 days in vivo, validating the potential for long-term anesthesia in patients.
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