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1.
Nano Lett ; 4(11): 2293-2298, 2004 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-25221441

RESUMO

Nanopores can serve as high throughput, single molecule sensing devices that provide insight into the distribution of static and dynamic molecular activities, properties, or interactions. We have studied double stranded DNA electrophoretic transport dynamics through fabricated nanopores in silicon nitride. A fabricated pore enables us to interrogate a broader range of molecules with a wider range of conditions than can be investigated in a self-assembled protein pore in a lipid membrane.

2.
Nano Lett ; 7(5): 1191-4, 2007 May.
Artigo em Inglês | MEDLINE | ID: mdl-17419658

RESUMO

We measured the UV optical absorption of single-stranded DNA bound to single-walled carbon nanotubes (DNA/SWNT). The nucleotide absorbance from DNA/SWNT provides the first experimental confirmation that DNA binds to nanotubes through pi-stacking. Because the hypochromic absorbance typical of pi-stacked structures are expected to occur primarily for DNA dipole transitions that lie along the axis of the optically anisotropic SWNTs, the absorbance changes following binding of DNA to nanotubes reveal the preferred orientation assumed by each of the four bound nucleotides with respect to the nanotube's long axis.


Assuntos
DNA/química , Nanotubos de Carbono , Análise Espectral/métodos , Óptica e Fotônica
3.
Electrophoresis ; 28(18): 3186-92, 2007 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-17854121

RESUMO

When dsDNA polymers containing identical number of base pairs were electrophoresed through a nanopore in a voltage biased silicon nitride membrane, the measured time integral of blocked ionic current (the event-charge-deficit, ecd, Fologea, D., Gershow, M., Ledden, B., McNabb, D. S. et al.., Nano Lett. 2005, 5, 1905-1909) for each translocation event was the same regardless of whether the molecules were in a linear, circular relaxed, or supercoiled form. Conversely, when DNA polymers containing different numbers of base pairs were electrophoresed through a nanopore, the ecd depended strongly on, and predicted the value of, the molecule's number of base pairs. Measurements showed that the magnitude of the current blockages was strongly affected by a molecule's form. The current blockages exhibited characteristic differences that distinguished among single-stranded linear, double-stranded linear, circular relaxed, and supercoiled forms. Because the data that establish ecd are usually determined concomitantly with current blockade measurements, our results show that a single nanopore assay can simultaneously determine both DNA conformation and base number.


Assuntos
DNA/química , Nanotecnologia , Conformação de Ácido Nucleico , Sequência de Bases , Eletroforese em Gel de Ágar
4.
Nat Mater ; 2(9): 611-5, 2003 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-12942073

RESUMO

A nanometre-scale pore in a solid-state membrane provides a new way of electronically probing the structure of single linear polymers, including those of biological interest in their native environments. Previous work with biological protein pores wide enough to let through and sense single-stranded DNA molecules demonstrates the power of using nanopores, but many future tasks and applications call for a robust solid-state pore whose nanometre-scale dimensions and properties may be selected, as one selects the lenses of a microscope. Here we demonstrate a solid-state nanopore microscope capable of observing individual molecules of double-stranded DNA and their folding behaviour. We discuss extensions of the nanopore microscope concept to alternative probing mechanisms and applications, including the study of molecular structure and sequencing.


Assuntos
DNA/química , DNA/isolamento & purificação , Eletroquímica/instrumentação , Membranas Artificiais , Nanotecnologia/instrumentação , Compostos de Silício/química , DNA/análise , Eletroquímica/métodos , Desenho de Equipamento , Micromanipulação/instrumentação , Micromanipulação/métodos , Movimento (Física) , Nanotecnologia/métodos , Conformação de Ácido Nucleico , Porosidade , Aderências Teciduais , Transdutores
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