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Detection of Pathogenic Bacteria Using a Homogeneous Immunoassay Based on Shear Alignment of Virus Particles and Linear Dichroism

机译:基于病毒颗粒剪切比对和线性二色性的均相免疫分析检测病原细菌

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Biomolecular detection has for a long time depended on a relatively small number of established methodologies. Many of these depend on the detection of a ligand-antibody complex using some kind of optical technique, e.g., chemiluminescence. Before this measurement can be made, the ligand-antibody complex generally has to be separated from bulk contaminants. This process involves the implementation of a heterogeneous assay format involving immobilization of the antibody onto a solid support to enable washing of the unbound ligand. This approach has a number of inherent issues including being slow and complex and requiring the use of expensive reagents. In this paper, we demonstrate how we have harnessed a biologically inspired nanoparticle to provide the basis for a homogeneous assay which requires no immobilization. The method relies on using fluid shear flow to align a fiber-like nanoparticle formed from a filamentous virus, M13, combined with a ligand-specific antibody. This renders the particle visible to linear dichroic spectroscopy, which provides an easily interpretable signal. The addition of the target ligand (in this case Escherichia coli O157) leads to the formation of a nanoparticle-ligand particle that is unable to align, leading to the perturbation of the linear dichroism signal.
机译:生物分子检测长期以来一直依赖于相对较少的已建立方法。其中许多取决于使用某种光学技术(例如化学发光)对配体-抗体复合物的检测。在进行该测量之前,通常必须将配体-抗体复合物与大量污染物分离。该过程涉及异质分析形式的实施,该形式涉及将抗体固定在固体支持物上以能够洗涤未结合的配体。该方法具有许多固有的问题,包括缓慢和复杂以及需要使用昂贵的试剂。在本文中,我们演示了如何利用生物学启发的纳米颗粒为不需要固定的均相测定提供基础。该方法依赖于使用流体剪切流将由丝状病毒M13形成的纤维状纳米颗粒与配体特异性抗体结合排列。这使粒子对线性二向色光谱可见,从而提供了易于解释的信号。靶配体(在这种情况下为大肠杆菌O157)的添加导致形成不能排列的纳米颗粒-配体颗粒,从而导致线性二色性信号的扰动。

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