| Literature DB >> 29672026 |
Seung-Ryoung Jung1, Rui Han1, Wei Sun1, Yifei Jiang1, Bryant S Fujimoto1, Jiangbo Yu1, Chun-Ting Kuo1, Yu Rong1, Xing-Hua Zhou1, Daniel T Chiu1.
Abstract
We describe here a flow platform for quantifying the number of biomolecules on individual fluorescent nanoparticles. The platform combines line-confocal fluorescence detection with near nanoscale channels (1-2 μm in width and height) to achieve high single-molecule detection sensitivity and throughput. The number of biomolecules present on each nanoparticle was determined by deconvolving the fluorescence intensity distribution of single-nanoparticle-biomolecule complexes with the intensity distribution of single biomolecules. We demonstrate this approach by quantifying the number of streptavidins on individual semiconducting polymer dots (Pdots); streptavidin was rendered fluorescent using biotin-Alexa647. This flow platform has high-throughput (hundreds to thousands of nanoparticles detected per second) and requires minute amounts of sample (∼5 μL at a dilute concentration of 10 pM). This measurement method is an additional tool for characterizing synthetic or biological nanoparticles.Entities:
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Year: 2018 PMID: 29672026 PMCID: PMC5953847 DOI: 10.1021/acs.analchem.8b00024
Source DB: PubMed Journal: Anal Chem ISSN: 0003-2700 Impact factor: 6.986