Dixon Matthew C
Q-Sense Inc, Glen Burnie, MD, USA.
J Biomol Tech. 2008 Jul;19(3):151-8.
In recent years, there has been a rapid growth in the number of scientific reports in which the quartz crystal microbalance (QCM) technique has played a key role in elucidating various aspects of biological materials and their interactions. This article illustrates some key advances in the development of a special variation of this technique called quartz crystal microbalance with dissipation monitoring (QCM-D). The main feature and advantage of QCM-D, compared with the conventional QCM, is that it in addition to measuring changes in resonant frequency (Deltaf), a simultaneous parameter related to the energy loss or dissipation (DeltaD) of the system is also measured. Deltaf essentially measures changes in the mass attached to the sensor surface, while DeltaD measures properties related to the viscoelastic properties of the adlayer. Thus, QCM-D measures two totally independent properties of the adlayer. The focus of this review is an overview of the QCM-D technology and highlights of recent applications. Specifically, recent applications dealing with DNA, proteins, lipids, and cells will be detailed. This is not intended as a comprehensive review of all possible applications of the QCM-D technology, but rather a glimpse into a few highlighted application areas in the biomolecular field that were published in 2007.
近年来,石英晶体微天平(QCM)技术在阐明生物材料的各个方面及其相互作用中发挥关键作用的科学报告数量迅速增长。本文阐述了这种技术的一种特殊变体——带耗散监测的石英晶体微天平(QCM-D)发展过程中的一些关键进展。与传统QCM相比,QCM-D的主要特点和优势在于,除了测量共振频率的变化(Δf)外,还同时测量与系统能量损失或耗散相关的一个参数(ΔD)。Δf主要测量附着在传感器表面的质量变化,而ΔD测量与吸附层粘弹性性质相关的特性。因此,QCM-D测量吸附层的两种完全独立的性质。本综述的重点是QCM-D技术概述及近期应用亮点。具体而言,将详细介绍近期涉及DNA、蛋白质、脂质和细胞的应用。这并非对QCM-D技术所有可能应用的全面综述,而是对2007年发表的生物分子领域几个突出应用领域的简要介绍。