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首页> 外文期刊>Materials science & engineering >Functionalization of the surface of electrospun poly(epsilon-caprolactone) mats using zwitterionic poly(carboxybetaine methacrylate) and cell-specific peptide for endothelial progenitor cells capture
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Functionalization of the surface of electrospun poly(epsilon-caprolactone) mats using zwitterionic poly(carboxybetaine methacrylate) and cell-specific peptide for endothelial progenitor cells capture

机译:两性离子聚甲基丙烯酸甜菜碱酯和细胞特异性肽用于内皮祖细胞捕获的电纺聚(ε-己内酯)垫的表面功能化

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摘要

A novel approach for vascular grafts to achieve rapid endothelialization is to attract endothelial progenitor cells (EPCs) from peripheral blood onto grafts via EPC-specific antibodies, aptamer, or peptides that specifically bind to EPCs. Inspired by this idea, the electrospun poly(epsilon-caprolactone) (PCL) mats were modified with zwitterionic poly(carboxybetaine methacrylate) (PCBMA) and phage display-selected-EPC-specific peptide, TPSLEQRTVYAK (TPS). We tested the physical and chemical properties, cyto-compatibility, and platelet adhesion of the modified material, and investigated the specificity of the functionalized surface for capturing EPCs. The results indicated that PCL modified with zwitterionic PCBMA and TPS peptide showed improved hydrophilicity without morphology change and damage of the mats. Furthermore, the modified material supported adherence and growth of vascular cells and resisted platelets adhesion. The surfaces also specifically captured EPCs rather than bone marrow mesenchymal stem cells and human umbilical vein endothelial cells. This surface-functionalized PCL graft may offer new opportunities for designing new vascular grafts.
机译:血管移植物实现快速内皮化的一种新方法是通过特异性结合EPC的EPC特异性抗体,适体或肽,将外周血中的内皮祖细胞(EPC)吸引到移植物上。受此想法的启发,静电纺丝聚(ε-己内酯)(PCL)毡被两性离子聚(甲基丙烯酸甜菜碱酯)(PCBMA)和噬菌体展示选择的EPC特异性肽TPSLEQRTVYAK(TPS)修饰。我们测试了改性材料的物理和化学性质,细胞相容性以及血小板粘附性,并研究了功能化表面捕获EPC的特异性。结果表明,用两性离子PCBMA和TPS肽修饰的PCL表现出改善的亲水性,而没有形态变化和垫子损坏。此外,改性材料支持血管细胞的粘附和生长以及抵抗血小板粘附。这些表面还专门捕获了EPC,而不是骨髓间充质干细胞和人脐静脉内皮细胞。这种表面功能化的PCL移植物可能为设计新的血管移植物提供新的机会。

著录项

  • 来源
    《Materials science & engineering》 |2013年第3期|1646-1653|共8页
  • 作者单位

    State Key Laboratory of Medicinal Chemical Biology, the Key Laboratory of Bioactive Materials (Ministry of Education), Nankai University, Tianjin 300071, China;

    State Key Laboratory of Medicinal Chemical Biology, the Key Laboratory of Bioactive Materials (Ministry of Education), Nankai University, Tianjin 300071, China;

    Tianjin Key Laboratory of Biomaterial Research, Institute of Biomedical Engineering, Chinese Academy of Medical Science, Tianjin 300192, PR China;

    State Key Laboratory of Medicinal Chemical Biology, the Key Laboratory of Bioactive Materials (Ministry of Education), Nankai University, Tianjin 300071, China;

    State Key Laboratory of Medicinal Chemical Biology, the Key Laboratory of Bioactive Materials (Ministry of Education), Nankai University, Tianjin 300071, China;

    State Key Laboratory of Medicinal Chemical Biology, the Key Laboratory of Bioactive Materials (Ministry of Education), Nankai University, Tianjin 300071, China;

    State Key Laboratory of Medicinal Chemical Biology, the Key Laboratory of Bioactive Materials (Ministry of Education), Nankai University, Tianjin 300071, China;

    State Key Laboratory of Medicinal Chemical Biology, the Key Laboratory of Bioactive Materials (Ministry of Education), Nankai University, Tianjin 300071, China;

    State Key Laboratory of Medicinal Chemical Biology, the Key Laboratory of Bioactive Materials (Ministry of Education), Nankai University, Tianjin 300071, China Tianjin Key Laboratory of Biomaterial Research, Institute of Biomedical Engineering, Chinese Academy of Medical Science, Tianjin 300192, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Poly(epsilon-caprolactone); Zwitterions; Platelet adhesion; Endothelial progenitor cells; Endothelialization;

    机译:聚(ε-己内酯);两性离子;血小板粘附;内皮祖细胞;内皮化;

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