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Nanoscale tweezers for single-cell biopsies

Authors :
Nadappuram, Binoy Paulose
Cadinu, Paolo
Barik, Avijit
Ainscough, Alexander J.
Devine, Michael J.
Kang, Minkyung
Gonzalez-Garcia, Jorge
Kittler, Josef T.
Willison, Keith R.
Vilar, Ramon
Actis, Paolo
Wojciak-Stothard, Beata
Oh, Sang-Hyun
Ivanov, Aleksandar P.
Edel, Joshua B.
Source :
Nature Nanotechnology; January 2019, Vol. 14 Issue: 1 p80-88, 9p
Publication Year :
2019

Abstract

Much of the functionality of multicellular systems arises from the spatial organization and dynamic behaviours within and between cells. Current single-cell genomic methods only provide a transcriptional ‘snapshot’ of individual cells. The real-time analysis and perturbation of living cells would generate a step change in single-cell analysis. Here we describe minimally invasive nanotweezers that can be spatially controlled to extract samples from living cells with single-molecule precision. They consist of two closely spaced electrodes with gaps as small as 10–20 nm, which can be used for the dielectrophoretic trapping of DNA and proteins. Aside from trapping single molecules, we also extract nucleic acids for gene expression analysis from living cells without affecting their viability. Finally, we report on the trapping and extraction of a single mitochondrion. This work bridges the gap between single-molecule/organelle manipulation and cell biology and can ultimately enable a better understanding of living cells.

Details

Language :
English
ISSN :
17483387 and 17483395
Volume :
14
Issue :
1
Database :
Supplemental Index
Journal :
Nature Nanotechnology
Publication Type :
Periodical
Accession number :
ejs47305546
Full Text :
https://doi.org/10.1038/s41565-018-0315-8