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Electrochemical Polymerization of PEDOT-Graphene Oxide-Heparin Composite Coating for Anti-fouling and Anti-clotting of Cardiovascular Stents.
Yang, Ming-Chien; Tsou, Hui-Ming; Hsiao, Yu-Sheng; Cheng, Yu-Wei; Liu, Che-Chun; Huang, Li-Ying; Peng, Xin-Yao; Liu, Ting-Yu; Yung, Ming-Chi; Hsu, Chuan-Chih.
Afiliação
  • Yang MC; Department of Materials Science and Engineering, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.
  • Tsou HM; Department of Materials Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
  • Hsiao YS; Department of Materials Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
  • Cheng YW; Department of Materials Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
  • Liu CC; Department of Materials Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
  • Huang LY; Department of Materials Science and Engineering, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.
  • Peng XY; Department of Materials Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
  • Liu TY; Department of Materials Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan. tyliu0322@gmail.com.
  • Yung MC; Division of Cardiovascular Surgery, Department of Surgery, School of Medicine, Taipei Medical University Hospital, Taipei 11031, Taiwan.
  • Hsu CC; Division of Cardiovascular Surgery, Department of Surgery, School of Medicine, Taipei Medical University Hospital, Taipei 11031, Taiwan. cchsu1967@hotmail.com.
Polymers (Basel) ; 11(9)2019 Sep 18.
Article em En | MEDLINE | ID: mdl-31540544
ABSTRACT
In this study, a novel hemocompatible coating on stainless steel substrates was prepared by electrochemically copolymerizing 3,4-ethylenedioxythiophene (EDOT) with graphene oxide (GO), polystyrene sulfonate (PSS), or heparin (HEP) on SUS316L stainless steel, producing an anti-fouling (anti-protein adsorption and anti-platelet adhesion) surface to avoid the restenosis of blood vessels. The negative charges of GO, PSS, and HEP repel negatively charged proteins and platelets to achieve anti-fouling and anti-clotting. The results show that the anti-fouling capability of the poly(3,4-ethylenedioxythiophene) (PEDOT)/PSS coating is similar to that of the PEDOT/HEP coating. The anti-fouling capability of PEDOT/GO is higher than those of PEDOT/HEP and PEDOT/PSS. The reason for this is that GO exhibits negatively charged functional groups (COO-). The highest anti-fouling capability was found with the PEDOT/GO/HEP coating, indicating that electrochemical copolymerization of PEDOT with GO and HEP enhances the anti-fouling capability. Furthermore, the biocompatibility of the PEDOT coatings was tested with 3T3 cells for 1-5 days. The results show that all PEDOT composite coatings exhibited biocompatibility. The blood clotting time (APTT) of PEDOT/GO/HEP was prolonged to 225 s, much longer than the 40 s of pristine SUS316L stainless steel (the control), thus greatly improving the anti-blood-clotting capability of cardiovascular stents.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Polymers (Basel) Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Taiwan

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Polymers (Basel) Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Taiwan