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Surface Tailoring for Controlled Protein Adsorption:Effect of Topography at the Nanometer Scale and Chemistry

机译:用于控制蛋白质吸附的表面剪裁:纳米尺度和化学形态对地形的影响

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摘要

Protein adsorption behavior is at the heart of many of today's research fields including biotechnology and materials science.With understanding of protein-surface interactions,control over the conformation and orientation of immobilized species may ultimately allow tailor-made surfaces to be generated.In this contribution protein-surface interactions have been examined with particular focus on surface curvature with and without surface chemistry effects.Silica spheres with diameters in the range 15-165 nm with both hydrophilic and hydrophobic surface chemistries have been used as model substrates.Two proteins differing in size and shape,bovine serum albumin (BSA) and bovine fibrinogen (Fg),have been used in model studies of protein binding with detailed secondary structure analysis being performed using infrared spectroscopy (IR) on surface-bound proteins.Although trends in binding affinity and saturation values were similar for both proteins,albumin is increasingly less ordered on larger substrates,while fibrinogen,in contrast,loses secondary structure to a greater extent when adsorbing onto particles with high surface curvature.These effects are compounded by surface chemistry,with both proteins becoming more denatured on hydrophobic surfaces.Both surface chemistry and topography play key roles in determining the structure of the bound proteins.A model of the binding characteristics of these two proteins onto surfaces having differing curvature and chemistry is presented.We propose that properties of an adsorbed protein layer may be guided through careful consideration of surface structure,allowing the fabrication of materials/surface coatings with tailored bioactivity.
机译:蛋白质吸附行为是当今许多研究领域(包括生物技术和材料科学)的核心。通过了解蛋白质与表面的相互作用,控制固定化物种的构象和方向最终可能会产生定制的表面。已研究了蛋白质-表面的相互作用,特别着眼于具有和不具有表面化学作用的表面曲率。使用直径在15-165 nm范围内的具有亲水和疏水表面化学性质的二氧化硅球作为模型底物。两种大小不同的蛋白质牛血清白蛋白(BSA)和牛纤维蛋白原(Fg)的形状和形状已用于蛋白质结合的模型研究,并使用红外光谱(IR)对表面结合的蛋白质进行了详细的二级结构分析。两种蛋白质的饱和度值相似,白蛋白在lar上的排列越来越少相比之下,ger底物(而纤维蛋白原)在吸附到具有高表面曲率的颗粒时会更大程度地失去二级结构。这些作用在表面化学作用下变得更加复杂,两种蛋白质在疏水性表面上都变得更加变性。表面化学作用和形貌起着关键作用提出了这两种蛋白在曲率和化学性质不同的表面上的结合特征模型。我们建议可以通过仔细考虑表面结构来指导吸附蛋白层的性质,具有定制生物活性的材料/表面涂层的制造。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2006年第12期|p.3939-3945|共7页
  • 作者单位

    Contribution from the Division of Chemistry,Interdisciplinary Biomedical Research Centre,School of Biomedical and Natural Sciences,Nottingham Trent University,Clifton,Nottingham,U.K.,and Smith and Nephew Group Research Centre,Heslington,York,U.K.;

    Contribution from the Division of Chemistry,Interdisciplinary Biomedical Research Centre,School of Biomedical and Natural Sciences,Nottingham Trent University,Clifton,Nottingham,U.K.,and Smith and Nephew Group Research Centre,Heslington,York,U.K.;

    Contribution from the Division of Chemistry,Interdisciplinary Biomedical Research Centre,School of Biomedical and Natural Sciences,Nottingham Trent University,Clifton,Nottingham,U.K.,and Smith and Nephew Group Research Centre,Heslington,York,U.K.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:22:32

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