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DNA-Directed Antibody Immobilization for Enhanced Detection of Single Viral Pathogens

机译:DNA定向抗体固定化,可增强对单个病毒病原体的检测

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Here, we describe the use of DNA-conjugated antibodies for rapid and sensitive detection of whole viruses using a single-particle interferometric reflectance imaging sensor (SP-IRIS), a simple, label-free biosensor capable of imaging individual nanopattides. First, we characterize the elevation of the antibodies conjugated to a DNA sequence on a threedimensional (3-D) polymeric surface using a fluorescence axial localization technique, spectral self-interference fluorescence microscopy (SSFM). Our results indicate that using DNA linkers results in significant elevation of the antibodies on the 3-D polymeric surface. We subsequently show the specific detection of pseudotyped vesicular stomatitis virus (VSV) as a model virus on SP-IRIS platform. We demonstrate that DNA-conjugated antibodies improve the capture efficiency by achieving the maximal virus capture for an antibody density as low as 0.72 ng/mm(2), whereas for unmodified antibody, the optimal virus capture requires six times greater antibody density on the sensor surface. We also show that using DNA conjugated anti-EBOV GP (Ebola virus glycoprotein) improves the sensitivity of EBOV-GP carrying VSV detection compared to directly immobilized antibodies. Furthermore, utilizing a DNA surface for conversion to an antibody array offers an easier manufacturing process by replacing the antibody printing step with DNA printing. The DNA-directed immobilization technique also has the added advantages of programmable sensor surface generation based on the need and resistance to high temperatures required for microfluidic device fabrication. These capabilities improve the existing SP-IRIS technology, resulting in a more robust and versatile platform, ideal for point-of-care diagnostics applications.
机译:在这里,我们描述了使用DNA偶联抗体通过单粒子干涉反射成像传感器(SP-IRIS)快速,灵敏地检测整个病毒,SP-IRIS是一种简单,无标签的生物传感器,能够成像各个纳米肽。首先,我们使用荧光轴向定位技术,光谱自干扰荧光显微镜(SSFM)表征了在三维(3-D)聚合物表面上偶联至DNA序列的抗体的高度。我们的结果表明,使用DNA接头可显着提高3-D聚合物表面上的抗体。我们随后显示了在SP-IRIS平台上作为模型病毒的假型水疱性口炎病毒(VSV)的特异性检测。我们证明,DNA缀合抗体通过实现最大病毒捕获率(低至0.72 ng / mm(2))来实现最大病毒捕获,从而提高了捕获效率,而对于未修饰的抗体,最佳病毒捕获则需要传感器上的抗体密度高六倍表面。我们还显示,与直接固定的抗体相比,使用DNA结合的抗EBOV GP(埃博拉病毒糖蛋白)可提高带有VSV检测的EBOV-GP的敏感性。此外,利用DNA表面转化为抗体阵列通过将抗体印刷步骤替换为DNA印刷而提供了更容易的制造过程。基于DNA的固定化技术还具有基于微流体设备制造所需的耐高温性和可编程传感器表面生成的附加优点。这些功能改进了现有的SP-IRIS技术,从而形成了更强大且更通用的平台,非常适合即时医疗诊断应用。

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