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在便携式 3D 打印显微镜上进行单分子检测。

Single-molecule detection on a portable 3D-printed microscope.

机构信息

EMBL Australia Node in Single Molecule Science, and School of Medical Sciences, University of New South Wales, Sydney, 2052, NSW, Australia.

The Institute for Molecular Bioscience, University of Queensland, St Lucia, QLD, 4072, Australia.

出版信息

Nat Commun. 2019 Dec 11;10(1):5662. doi: 10.1038/s41467-019-13617-0.

Abstract

Single-molecule assays have, by definition, the ultimate sensitivity and represent the next frontier in biological analysis and diagnostics. However, many of these powerful technologies require dedicated laboratories and trained personnel and have therefore remained research tools for specialists. Here, we present a single-molecule confocal system built from a 3D-printed scaffold, resulting in a compact, plug and play device called the AttoBright. This device performs single photon counting and fluorescence correlation spectroscopy (FCS) in a simple format and is widely applicable to the detection of single fluorophores, proteins, liposomes or bacteria. The power of single-molecule detection is demonstrated by detecting single α-synuclein amyloid fibrils, that are currently evaluated as biomarkers for Parkinson's disease, with an improved sensitivity of >100,000-fold over bulk measurements.

摘要

单分子分析技术具有终极灵敏度,代表了生物分析和诊断的下一个前沿。然而,这些强大的技术中的许多都需要专门的实验室和训练有素的人员,因此它们仍然是专家的研究工具。在这里,我们展示了一种由 3D 打印支架构建的单分子共焦系统,该系统产生了一种称为 AttoBright 的紧凑、即插即用的设备。该设备以简单的格式执行单光子计数和荧光相关光谱 (FCS),并且广泛适用于检测单个荧光团、蛋白质、脂质体或细菌。通过检测目前被评估为帕金森病生物标志物的单个 α-突触核蛋白淀粉样纤维,证明了单分子检测的强大功能,其灵敏度比体相测量提高了>100,000 倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11ed/6906517/704172f44ba9/41467_2019_13617_Fig1_HTML.jpg

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