机构:[1]School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China.[2]Department of Cardiology, Tongren Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200336, China.[3]Faculty of Medicine, University of Southampton, University Road, Southampton SO17 1BJ, United Kingdom.
Biodegradable stents are the most promising alternatives for the treatment of cardiovascular disease nowadays, and the strategy of preparing functional coatings on the surface is highly anticipated for addressing adverse effects such as in-stent restenosis and stent thrombosis. Yet, inadequate mechanical stability and biomultifunctionality limit their clinical application. In this study, we developed a multicross-linking hydrogel on the polylactic acid substrates by dip coating that boasts impressive antithrombotic ability, antibacterial capability, mechanical stability, and self-healing ability. Gelatin methacryloyl, carboxymethyl chitosan, and oxidized sodium alginate construct a double-cross-linking hydrogel through the dynamic Schiff base chemical and in situ blue initiation reaction. Inspired by the adhesion mechanism employed by mussels, a triple-cross-linked hydrogel is formed with the addition of tannic acid to increase the adhesion and antibiofouling properties. The strength and hydrophilicity of hydrogel coating are regulated by changing the composition ratio and cross-linking degree. It has been demonstrated in tests in vitro that the hydrogel coating significantly reduces the adhesion of proteins, MC3T3-E1 cells, platelets, and bacteria by 85% and minimizes the formation of blood clots. The hydrogel coating also exhibits excellent antimicrobial in vitro and antiinflammatory properties in vivo, indicating its potential value in vascular intervention and other biomedical fields.
基金:
This work was supported by the National Natural Science
Foundation of China (51603122 and 82270481), the Shanghai
Engineering Research Center of High-Performance Medical
Device Materials (No. 20DZ2255500), the Shanghai Natural
Science Foundation (22ZR1480800), and the Fund for
Scientific and Technological Innovation of Shanghai Jiaotong
University (YG2021QN141).
第一作者机构:[1]School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China.
共同第一作者:
通讯作者:
推荐引用方式(GB/T 7714):
Qiu Biwei,Cheng Qianqian,Chen Rukun,et al.Mussel-Mimetic Hydrogel Coating with Anticoagulant and Antiinflammatory Properties on a Poly(lactic acid) Vascular Stent[J].BIOMACROMOLECULES.2024,25(5):3098-3111.doi:10.1021/acs.biomac.4c00201.
APA:
Qiu Biwei,Cheng Qianqian,Chen Rukun,Liu Chunling,Qin Jinchao&Jiang Qixia.(2024).Mussel-Mimetic Hydrogel Coating with Anticoagulant and Antiinflammatory Properties on a Poly(lactic acid) Vascular Stent.BIOMACROMOLECULES,25,(5)
MLA:
Qiu Biwei,et al."Mussel-Mimetic Hydrogel Coating with Anticoagulant and Antiinflammatory Properties on a Poly(lactic acid) Vascular Stent".BIOMACROMOLECULES 25..5(2024):3098-3111