A high-throughput label-free nanoparticle analyser

Synthetic nanoparticles and genetically modified viruses are used in a range of applications, but high-throughput analytical tools for the physical characterization of these objects are needed. Here we present a microfluidic analyser that detects individual nanoparticles and characterizes complex, u...

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Veröffentlicht in:Nature nanotechnology 2011-05, Vol.6 (5), p.308-313
Hauptverfasser: Fraikin, Jean-Luc, Teesalu, Tambet, McKenney, Christopher M., Ruoslahti, Erkki, Cleland, Andrew N.
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Sprache:eng
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Zusammenfassung:Synthetic nanoparticles and genetically modified viruses are used in a range of applications, but high-throughput analytical tools for the physical characterization of these objects are needed. Here we present a microfluidic analyser that detects individual nanoparticles and characterizes complex, unlabelled nanoparticle suspensions. We demonstrate the detection, concentration analysis and sizing of individual synthetic nanoparticles in a multicomponent mixture with sufficient throughput to analyse 500,000 particles per second. We also report the rapid size and titre analysis of unlabelled bacteriophage T7 in both salt solution and mouse blood plasma, using just ∼1 × 10 −6  l of analyte. Unexpectedly, in the native blood plasma we discover a large background of naturally occurring nanoparticles with a power-law size distribution. The high-throughput detection capability, scalable fabrication and simple electronics of this instrument make it well suited for diverse applications. A microfluidic analyser can detect individual nanoparticles and characterize complex multicomponent mixtures of nanoparticles and viruses.
ISSN:1748-3387
1748-3395
DOI:10.1038/nnano.2011.24