The potential and challenges of nanopore sequencing.
The potential and challenges of nanopore sequencing.
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DOI:
10.1038/nbt.1495
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发表时间:
2008-10
影响因子:
46.9
通讯作者:
Schloss, Jeffery A.
中科院分区:
文献类型:
--
作者:
Branton, Daniel;Deamer, David W.;Marziali, Andre;Bayley, Hagan;Benner, Steven A.;Butler, Thomas;Di Ventra, Massimiliano;Garaj, Slaven;Hibbs, Andrew;Huang, Xiaohua;Jovanovich, Stevan B.;Krstic, Predrag S.;Lindsay, Stuart;Ling, Xinsheng Sean;Mastrangelo, Carlos H.;Meller, Amit;Oliver, John S.;Pershin, Yuriy V.;Ramsey, J. Michael;Riehn, Robert;Soni, Gautam V.;Tabard-Cossa, Vincent;Wanunu, Meni;Wiggin, Matthew;Schloss, Jeffery A.
A nanopore-based device provides single-molecule detection and analytical capabilities that are achieved by electrophoretically driving molecules in solution through a nano-scale pore. The nanopore provides a highly confined space within which single nucleic acid polymers can be analyzed at high throughput by one of a variety of means, and the perfect processivity that can be enforced in a narrow pore ensures that the native order of the nucleobases in a polynucleotide is reflected in the sequence of signals that is detected. Kilobase length polymers (single-stranded genomic DNA or RNA) or small molecules (e.g., nucleosides) can be identified and characterized without amplification or labeling, a unique analytical capability that makes inexpensive, rapid DNA sequencing a possibility. Further research and development to overcome current challenges to nanopore identification of each successive nucleotide in a DNA strand offers the prospect of `third generation' instruments that will sequence a diploid mammalian genome for ~$1,000 in ~24 h.
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影响因子:
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作者:
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通讯作者:
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