首页> 外文期刊>Analytical chemistry >Combined Reflectometric Interference Spectroscopy and Quartz Crystal Microbalance Detect Differential Adsorption of Lipid Vesicles with Different Phase Transition Temperatures on SiO2, TiO2, and Au Surfaces
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Combined Reflectometric Interference Spectroscopy and Quartz Crystal Microbalance Detect Differential Adsorption of Lipid Vesicles with Different Phase Transition Temperatures on SiO2, TiO2, and Au Surfaces

机译:结合反射尺寸干扰光谱和石英晶体微观测量在SiO2,TiO2和Au表面上具有不同相变温度的脂质囊泡的差异吸附

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摘要

Quantitative analysis of biomolecular adsorption on a substrate is crucial for understanding biomolecular interactions. A quartz crystal microbalance (QCM) is a highly sensitive device to detect such interactions based on mass. However, the physicochemical analysis by the QCM alone often leads to overestimation of the actual adsorbed mass. Here, a combined reflectometric interference spectroscopy (RIfS) and QCM is developed to simultaneously analyze adsorption of biomolecules. RIfS detects the adsorbed mass based on the reflectance and predicts the adsorbed condition by modeling the reflection spectra using the transfer matrix method. In contrast, the QCM detects physicochemical characteristics of the adsorbed molecules along with the adsorbed mass. The combined RIfS-QCM successfully detected the adsorption of proteins with different surface properties and lipid vesicles with different phase transition temperatures. The initial stage of adsorption revealed distinct individual properties of the adsorbates. Moreover, the RIfS-QCM revealed differential adsorption of the vesicles on silicon dioxide, titania, and gold surfaces, and the differences in adsorption were further interrogated by atomic force microscopy. The results demonstrate that the RIfS-QCM serves as a useful tool to quantitatively analyze molecular adsorption on various surfaces.
机译:对底物上的生物分子吸附的定量分析对于了解生物分子相互作用至关重要。石英晶体微稳定(QCM)是一种高敏感的装置,用于检测基于质量的这种相互作用。然而,单独的QCM的物理化学分析通常导致实际吸附质量的高估。这里,开发了组合的反射射计干扰光谱(RIF)和QCM以同时分析生物分子的吸附。基于反射率检测吸附质量并通过使用转移矩阵法对反射光谱进行建模来预测吸附条件。相反,QCM检测吸附分子的物理化学特性以及吸附的质量。组合的RIFS-QCM成功地检测到具有不同表面性质和具有不同相变温度的脂质囊泡的蛋白质的吸附。吸附的初始阶段揭示了吸附物的不同个性性质。此外,RIFS-QCM揭示了二氧化硅,二氧化钛和金表面上的囊泡的差异吸附,并且通过原子力显微镜进一步询问吸附的差异。结果表明,RIFS-QCM用作定量分析各种表面上的分子吸附的有用工具。

著录项

  • 来源
    《Analytical chemistry》 |2017年第24期|共7页
  • 作者

    Kojima Taisuke;

  • 作者单位

    Georgia Inst Technol Dept Biomed Engn 950 Atlantic Dr NW Atlanta GA 30332 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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