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首页> 外文期刊>Biomacromolecules >Interaction of Tissue Engineering Substrates with Serum Proteins and Its Influence on Human Primary Endothelial Cells
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Interaction of Tissue Engineering Substrates with Serum Proteins and Its Influence on Human Primary Endothelial Cells

机译:组织工程底物与血清蛋白的相互作用及其对人原初级内皮细胞的影响

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摘要

Polymer-based biomaterials particularly polycaprolactone (PCL) are one of the most promising substrates for tissue engineering. The surface chemistry of these materials plays a major role since it governs protein adsorption, cell adhesion, viability, degradation, and biocompatibility in the first place. This study correlates the interaction of the most abundant serum proteins (albumin, immunoglobulins, fibrinogen) with the surface properties of PCL and its influence on the morphology and metabolic activity of primary human arterial endothelial cells that are seeded on the materials. Prior to that, thin films of PCL are manufactured by spin-coating and characterized in detail. A quartz crystal microbalance with dissipation (QCM-D), a multiparameter surface plasmon resonance spectroscopy instrument (MP-SPR), wettability data, and atomic force microscopy are combined to elucidate the pH-dependent protein adsorption on the PCL substrates. Primary endothelial cells are cultured on the protein modified polymer, and conclusions are drawn on the significant impact of type and form of proteins coatings on cell morphology and metabolic activity.
机译:特别是聚合物基生物材料,特别是聚己内酯(PCL)是组织工程最有前途的基材之一。这些材料的表面化学在首先控制蛋白质吸附,细胞粘附,活力,降解和生物相容性,以来起着重要作用。该研究将最丰富的血清蛋白(白蛋白,免疫球蛋白,纤维蛋白原)与PCL的表面性质相关的相互作用及其对母动内皮细胞的形态和代谢活性的影响,这些内皮细胞的形态和代谢活性接种在材料上。在此之前,通过旋涂制造PCL的薄膜并详细表征。具有耗散(QCM-D)的石英晶体微稳定,多次样物表面等离子体共振光谱仪(MP-SPR),润湿性数据和原子力显微镜被组合以阐明PCL底物上的pH依赖性蛋白质吸附。原发性内皮细胞在蛋白质改性聚合物上培养,并在蛋白质涂层的类型和形式对细胞形态和代谢活性的显着影响下进行结论。

著录项

  • 来源
    《Biomacromolecules》 |2017年第2期|共9页
  • 作者单位

    Graz Univ Inst Chem Heinrichstr 28 A-8010 Graz Austria;

    Graz Univ Technol Inst Chem &

    Technol Mat Stremayrgasse 9 A-8010 Graz Austria;

    Ludwig Boltzmann Inst Lung Vasc Res Stiftingtalstr 24 A-8010 Graz Austria;

    Graz Univ Technol Inst Chem &

    Technol Mat Stremayrgasse 9 A-8010 Graz Austria;

    Graz Univ Technol Inst Chem &

    Technol Mat Stremayrgasse 9 A-8010 Graz Austria;

    Ludwig Boltzmann Inst Lung Vasc Res Stiftingtalstr 24 A-8010 Graz Austria;

    Univ Maribor LCPP Smetanova 17 Maribor 2000 Slovenia;

    Graz Univ Technol Inst Chem &

    Technol Mat Stremayrgasse 9 A-8010 Graz Austria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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