显微镜
荧光
荧光显微镜
等离子体子
亚历山福禄
材料科学
光学
化学
光电子学
物理
作者
Priya Rathi,Prashant Gupta,Avishek Debnath,Harsh Baldi,Yixuan Wang,Rohit Gupta,Baranidharan Raman,Srikanth Singamaneni
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-06-12
卷期号:23 (12): 5654-5662
被引量:2
标识
DOI:10.1021/acs.nanolett.3c01256
摘要
Expansion microscopy (ExM) is a rapidly emerging super-resolution microscopy technique that involves isotropic expansion of biological samples to improve spatial resolution. However, fluorescence signal dilution due to volumetric expansion is a hindrance to the widespread application of ExM. Here, we introduce plasmon-enhanced expansion microscopy (p-ExM) by harnessing an ultrabright fluorescent nanoconstruct, called plasmonic-fluor (PF), as a nanolabel. The unique structure of PFs renders nearly 15000-fold brighter fluorescence signal intensity and higher fluorescence retention following the ExM protocol (nearly 76%) compared to their conventional counterparts (<16% for IR-650). Individual PFs can be easily imaged using conventional fluorescence microscopes, making them excellent "digital" labels for ExM. We demonstrate that p-ExM enables improved tracing and decrypting of neural networks labeled with PFs, as evidenced by improved quantification of morphological markers (nearly a 2.5-fold increase in number of neurite terminal points). Overall, p-ExM complements the existing ExM techniques for probing structure–function relationships of various biological systems.
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