Acoustic physics of surface-attached biochemical species.

Hfsp Journal Pub Date : 2008-08-01 Epub Date: 2008-06-23 DOI:10.2976/1.2938856
Jonathan S Ellis, Michael Thompson
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引用次数: 6

Abstract

In this Commentary, we discuss the paper Quantitative Determination of Size and Shape of Surface-Bound DNA Using an Acoustic Wave Sensor [Tsortos et al., Biophys. J. 94(7), 2706-2715 (2008)]. The paper under discussion presents a novel theory that uses the response of a Shear-Horizontal Surface Acoustic Wave device to characterize surface-attached double- and triple-strand DNA. The authors relate the length and curvature of the DNA strands to the interfacial viscosity using classical polymer theory. In this Commentary, we discuss their results in the broader context of acoustic wave detection of biochemical interactions and some of the factors involved when probing "soft" surfaces. Specifically, we present a review of interfacial coupling and slip, and discuss how these phenomena can affect biosensors employing acoustic wave detection techniques.

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表面附着生物化学物质的声物理。
在这篇评论中,我们讨论了使用声波传感器定量测定表面结合DNA的大小和形状[Tsortos等人,Biophys]。[j].科学通报,2004,(5):444 - 444。本文提出了一种新的理论,该理论利用剪切水平表面声波装置的响应来表征表面附着的双链和三链DNA。作者运用经典聚合物理论将DNA链的长度和曲率与界面粘度联系起来。在这篇评论中,我们在更广泛的背景下讨论了声波检测生化相互作用的结果,以及探测“软”表面时涉及的一些因素。具体来说,我们介绍了界面耦合和滑移的综述,并讨论了这些现象如何影响使用声波探测技术的生物传感器。
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Hfsp Journal
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