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Enhanced nanochannel translocation and localization of genomic DNA molecules using three-dimensional nanofunnels

Publication ,  Journal Article
Zhou, J; Wang, Y; Menard, LD; Panyukov, S; Rubinstein, M; Michael Ramsey, J
Published in: Nature Communications
2017

The ability to precisely control the transport of single DNA molecules through a nanoscale channel is critical to DNA sequencing and mapping technologies that are currently under development. Here we show how the electrokinetically driven introduction of DNA molecules into a nanochannel is facilitated by incorporating a three-dimensional nanofunnel at the nanochannel entrance. Individual DNA molecules are imaged as they attempt to overcome the entropic barrier to nanochannel entry through nanofunnels with various shapes. Theoretical modeling of this behavior reveals the pushing and pulling forces that result in up to a 30-fold reduction in the threshold electric field needed to initiate nanochannel entry. In some cases, DNA molecules are stably trapped and axially positioned within a nanofunnel at sub-threshold electric field strengths, suggesting the utility of nanofunnels as force spectroscopy tools. These applications illustrate the benefit of finely tuning nanoscale conduit geometries, which can be designed using the theoretical model developed here.

Duke Scholars

Published In

Nature Communications

DOI

ISSN

2041-1723

Publication Date

2017
 

Citation

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MLA
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Zhou, J., Wang, Y., Menard, L. D., Panyukov, S., Rubinstein, M., & Michael Ramsey, J. (2017). Enhanced nanochannel translocation and localization of genomic DNA molecules using three-dimensional nanofunnels. Nature Communications. https://doi.org/10.1038/s41467-017-00951-4
Zhou, Jinsheng, Yanqian Wang, Laurent D. Menard, Sergey Panyukov, Michael Rubinstein, and J. Michael Ramsey. “Enhanced nanochannel translocation and localization of genomic DNA molecules using three-dimensional nanofunnels.” Nature Communications, 2017. https://doi.org/10.1038/s41467-017-00951-4.
Zhou J, Wang Y, Menard LD, Panyukov S, Rubinstein M, Michael Ramsey J. Enhanced nanochannel translocation and localization of genomic DNA molecules using three-dimensional nanofunnels. Nature Communications. 2017;
Zhou, Jinsheng, et al. “Enhanced nanochannel translocation and localization of genomic DNA molecules using three-dimensional nanofunnels.” Nature Communications, 2017. Manual, doi:10.1038/s41467-017-00951-4.
Zhou J, Wang Y, Menard LD, Panyukov S, Rubinstein M, Michael Ramsey J. Enhanced nanochannel translocation and localization of genomic DNA molecules using three-dimensional nanofunnels. Nature Communications. 2017;

Published In

Nature Communications

DOI

ISSN

2041-1723

Publication Date

2017