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首页> 外文期刊>Journal of biomedical nanotechnology >Nanogram Sensitivity via Quartz Crystal Microbalance with Dissipation Factor for Quick Real-Time Kinetic Monitoring of Bio-Macromolecular and -Cellular Interactions
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Nanogram Sensitivity via Quartz Crystal Microbalance with Dissipation Factor for Quick Real-Time Kinetic Monitoring of Bio-Macromolecular and -Cellular Interactions

机译:通过石英晶体微稳态的纳米图敏感,耗散因子用于生物高分子和细胞间的快速实时动力学监测

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Quartz crystal microbalance with dissipation factor (QCM-D) is a simple, cost effective, high-resolution mass sensing technique designed to sense different materials that can be mechanically excited providing information about the energy dissipating properties of the bound surface mass. The versatility of this technique allows for the performance of a wide set of analysis ranging from the study of biomimetic systems to the construction of biosensors via biochemical components or whole cell immobilization onto bare or modified resonator surfaces. The major advantage of biosensing is high efficiency and nanogram sensitivity through specific molecular interactions. QCM sensors can give information about weak interactions between adsorbed and free elements to be studied, in which changes in contact mechanics, interfacial dynamics, surface roughness, viscoelasticity, density and mass can be monitored in real time. This is a higher level of information content than that produced by other techniques that use optical label free. Recently, there has been a great deal of growth in the literature utilizing QCM-D as a characterization method on application areas of relevance to biological and biochemical research. This article reviews the application and use of QCM-D in the real-time kinetic monitoring of bio-macromolecular and cellular interactions onto various substrates.
机译:具有耗散因子(QCM-D)的石英晶体微稳态是一种简单,成本效益的高分辨率的质量传感技术,用于感测可以机械激发的不同材料,提供有关结合表面质量的能量耗散性质的信息。该技术的多功能性允许在仿生组分或全细胞固定到裸露或改进的谐振器表面上的生物化学系统的研究中,从生物摩擦系统的研究中的施加到生物传感器的结构的各种分析。通过特定的分子相互作用,生物化的主要优点是高效率和纳米敏感性。 QCM传感器可以提供有关要研究的吸附和自由元素之间的弱相互作用的信息,其中可以实时监测接触力学,界面动力学,表面粗糙度,粘弹性,密度和质量的变化。这是一种比使用光学标签的其他技术产生的更高级别的信息内容。最近,利用QCM-D作为应用领域与生物化学和生物化学研究的相关领域的表征方法,在文献中存在大量的增长。本文审查了QCM-D在生物高分子和细胞相互作用的实时动力学监测到各种基材的应用和使用。

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