详细信息
Development of mussel adhesive polypeptide mimics coating for in-situ inducing re-endothelialization of intravascular stent devices ( EI收录)
文献类型:期刊文献
英文题名:Development of mussel adhesive polypeptide mimics coating for in-situ inducing re-endothelialization of intravascular stent devices
作者:Yin, Min[1]; Yuan, Yuan[2]; Liu, Changsheng[1,2]; Wang, Jing[2]
机构:[1] State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, 200237, China; [2] Engineering Research Center for Biomedical Materials, Ministry of Education, East China University of Science and Technology, Shanghai, 200237, China
年份:2009
卷号:30
期号:14
起止页码:2764
外文期刊名:Biomaterials
收录:EI(收录号:20091111952908)
语种:英文
外文关键词:Synthesis (chemical) - Adhesion - Coatings - Molluscs - Cell culture - Polyethylenes - Amino acids - Thermoplastic elastomers - Ethylene - Endothelial cells - Grafting (chemical) - Platelets - Stents - Polyethylene oxides
摘要:In this study, to improve the attachment, growth and adhesion of endothelial cells (ECs) and thus accelerate the re-endothelialization of stents, a synthesized mussel adhesive polypeptide mimics containing dihydroxyphenylalanine and l-lysine (MAPDL) was immobilized onto 316L stainless steel (316LSS) with polyethylene glycol (PEG) molecule as spacer arm by using cold plasma-induced grafting technique. To immobilize MAPDL effectively, ethylene vinyl acetate (EVA) was first coated onto 316LSS. Different molecular weights of PEG and grafting times were tested to obtain the optimal cell bioactivity. XPS and water contact angles measurement indicated the successful immobilization of MAPDL. In vitro cell culture results showed that compared with the control of 316LSS, the attachment, adhesion and growth of cells on the MAPDL-coated EVA surface, in particular with PEG as spacer arm, were significantly enhanced, and a confluent endothelial cells layer was formed after a 2-day culture. A platelet adhesion experiment revealed that the platelet adhesion was also reduced on the MAPDL-coated EVA surface. The in vitro inflammatory assessment showed that the MAPDL coating inhibited the TNF-α and IL-1 release from monocyte cells, indicative of good anti-inflammation property. Therefore, it is concluded that the MAPDL coating developed here appeared to be a promising strategy for rapid re-endothelialization of intravascular stent devices. ? 2009 Elsevier Ltd. All rights reserved.
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