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Massively parallel and highly quantitative single-particle analysis on interactions between nanoparticles on supported lipid bilayer.

Authors :
Lee YK
Kim S
Oh JW
Nam JM
Source :
Journal of the American Chemical Society [J Am Chem Soc] 2014 Mar 12; Vol. 136 (10), pp. 4081-8. Date of Electronic Publication: 2014 Feb 26.
Publication Year :
2014

Abstract

Observation of individual single-nanoparticle reactions provides direct information and insight for many complex chemical, physical, and biological processes, but this is utterly challenging with conventional high-resolution imaging techniques on conventional platforms. Here, we developed a photostable plasmonic nanoparticle-modified supported lipid bilayer (PNP-SLB) platform that allows for massively parallel in situ analysis of the interactions between nanoparticles with single-particle resolution on a two-dimensional (2D) fluidic surface. Each particle-by-particle PNP clustering process was monitored in real time and quantified via analysis of individual particle diffusion trajectories and single-particle-level plasmonic coupling. Importantly, the PNP-SLB-based nanoparticle cluster growth kinetics result was fitted well. As an application example, we performed a DNA detection assay, and the result suggests that our approach has very promising sensitivity and dynamic range (high attomolar to high femtomolar) without optimization, as well as remarkable single-base mismatch discrimination capability. The method shown herein can be readily applied for many different types of intermolecular and interparticle interactions and provide convenient tools and new insights for studying dynamic interactions on a highly controllable and analytical platform.

Details

Language :
English
ISSN :
1520-5126
Volume :
136
Issue :
10
Database :
MEDLINE
Journal :
Journal of the American Chemical Society
Publication Type :
Academic Journal
Accession number :
24521296
Full Text :
https://doi.org/10.1021/ja501225p