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Multifunctional polyphenol-based silk hydrogel alleviate soxidative stress and enhances endogenous regeneration of osteochondral defects.

Mater Today Bio. 2022-04; 
Wei Zhang 1 2 3, Yanan Zhang 1, Xiaolong Li 1, Zhicheng Cao 1 4, Qingyun Mo 1, Renwang Sheng 1, Chen Ling 1 4, Jiayu Chi 1, Qingqiang Yao 4 3, Jialin Chen 1 2 3, Hongmei Wang 1
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Recombinant Proteins BMSCs were seeded into a 96-well plate and treated with 1 ng/ml IL-1β (Genscript, Nanjing, China) together with various hydrogel-conditioned media for 20 min. Get A Quote

摘要

In osteochondral defects, oxidative stress caused by elevated levels of reactive oxygen species (ROS) can disrupt the normal endogenous repair process. In this study, a multifunctional hydrogel composed of silk fibroin (SF) and tannic acid (TA), the FDA-approved ingredients, was developed to alleviate oxidative stress and enhance osteochondral regeneration. In this proposed hydrogel, SF first interacts with TA to form a hydrogen-bonded supramolecular structure, which is subsequently enzymatically crosslinked to form a stable hydrogel. Furthermore, TA had multiple phenolic hydroxyl groups that formed interactions with the therapeutic molecule E7 peptide for controlled drug delivery. In vitro investigations showe... More

关键词

Hydrogel; Microenvironment; Osteochondral regeneration; Oxidative stress; Silk fibroin; Tannic acid.