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Label-free detection of nanoparticles using depth scanning correlation interferometric microscopy

机译:使用深度扫描相关干涉显微镜对纳米颗粒进行无标记检测

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摘要

Single particle level visualization of biological nanoparticles such as viruses and exosomes is challenging due to their small size and low dielectric contrast. Fluorescence based methods are highly preferred, however they require labelling which may perturb the functionality of the particle of interest. On the other hand, wide-field interferometric microscopy can be used to detect sub-diffraction limited nanoparticles without using any labels. Here we demonstrate that utilization of defocused images enhances the visibility of nanoparticles in interferometric microscopy and thus improves the detectable size limit. With the proposed method termed as Depth Scanning Correlation (DSC) Interferometric Microscopy, we experimentally demonstrate the detection of sub-35nm dielectric particles without using any labels. Furthermore, we demonstrate direct detection of single exosomes. This label-free and high throughput nanoparticle detection technique can be used to sense and characterize biological particles over a range between a few tens to a few hundred nanometers, where conventional methods are insufficient.
机译:生物纳米粒子(如病毒和外来体)的单粒子级可视化具有挑战性,因为它们的尺寸小且介电对比度低。基于荧光的方法是高度优选的,但是它们需要标记,这可能会干扰目标颗粒的功能。另一方面,宽视场干涉显微镜可用于检测亚衍射受限的纳米颗粒,而无需使用任何标记。在这里,我们证明了散焦图像的利用增强了干涉显微镜中纳米颗粒的可见性,从而提高了可检测的尺寸极限。使用称为深度扫描相关(DSC)干涉显微镜的拟议方法,我们通过实验证明了在不使用任何标记的情况下对35nm以下电介质颗粒的检测。此外,我们证明了直接检测单个外来体。这种无标记的高通量纳米颗粒检测技术可用于检测和表征几十到几百纳米范围内的生物颗粒,而常规方法是不够的。

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