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Polymer-Based Modular Systems with Nanosensors for DNA/RNA Sequencing

Polymer-Based Modular Systems with Nanosensors for DNA/RNA Sequencing
具有用于 DNA/RNA 测序的纳米传感器的基于聚合物的模块化系统
批准号:
8319317
负责人:
Steven Allan Soper
金额:
$30.22万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-08-15 至 2014-07-31

项目摘要

项目成果

Steven Allan Soper的其他基金

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中文摘要
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DESCRIPTION (provided by applicant): While the cost of DNA sequencing has dropped significantly over the last few years due to the evolution of next-generation sequencing instruments, there still exists the need to produce new technologies that can significantly reduce sequencing cost and time and improve the level of automation to realize the ability of transitioning DNA sequencing into currently inaccessible areas, such as the clinic for in vitro diagnostics. In fact, reaching the goals mandated by the $1,000 Genome Project will provide the ability to use DNA sequencing as a de facto standard for looking at any sequence variation over the entire genome. The long term goal of this project is to generate a novel DNA sequencing platform that can substantially reduce the cost, labor and time associated with acquiring DNA sequencing information using a fully automated platform. The strategy uses nano-scale sensors that read the identity of mononucleotide bases from their characteristic flight- time through a 2-dimensional (2D) nanochannel (<10 nm in width and depth; >5 ¿m in length) fabricated in a thermoplastic, such as Plexiglas, via low-cost nanoimprint lithography and other replication-based techniques. The mononucleotide bases are generated from an intact DNA fragment (~50,000 bp) using a processive exonuclease, which is covalently anchored to a support contained within a bioreactor that feeds the mononucleotides into the 2D nanochannel. The identity of the mononucleotide is deduced from a molecular- dependent flight-time through the 2D nanochannel. The major focus of this R21 application is to develop a transduction modality that can measure the flight-time of mononucleotides through a 2D polymer nanochannel without requiring a reporter molecule covalently attached to the mononucleotide. The transducer to be investigated consists of 2 pairs of nanoelectrodes poised at each end of the 2D nanochannel with the signal resulting from perturbations in the conductivity induced by the mononucleotide. The sensing platform is produced from nanowires built using templating methods from anodized aluminum oxide materials and then, electrochemically thinned to the desired diameter (~10 nm). The wires are strategically placed on a nanofluidic chip using chemical patterns made via nanoimprint lithography with the required gap (<10 nm) generated via mechanical or chemical steps. The nanosensor chips are produced on a plastic module that can be integrated via novel interconnect technologies to other DNA processing modules to provide complete automation of the DNA sample processing pipeline. The envisioned DNA sequencing platform will produce ~1 x 106 nucleotide base reads s-1 when configured in an arrayed format, process an entire sample in a fully automated fashion with the cost of the modular fluidic system <$200. The low-cost of the fluidic system results not only from the use of replication technologies to produce the fluidic network spanning over multiple size scales, but also the simple and highly parallel strategies used to produce the nano-scale components required for this chip.
期刊论文(3)
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会议论文
DOI: 10.1021/ac5002965
发表时间: 2014-05-06
期刊: ANALYTICAL CHEMISTRY
影响因子: 7.4
作者: [Oliver-Calixte, Nyote J., Uba, Franklin I., Battle, Katrina N., Weerakoon-Ratnayake, Kumuditha M., Soper, Steven A.]
通讯作者: Soper, Steven A.
DOI: 10.1039/c0cs00138d
发表时间: 2011-07
期刊: Chemical Society reviews
影响因子: 46.2
作者: [Chantiwas R, Park S, Soper SA, Kim BC, Takayama S, Sunkara V, Hwang H, Cho YK]
通讯作者: Cho YK
DOI: 10.1039/c4an01439a
发表时间: 2015-01-07
期刊: The Analyst
影响因子: --
作者: [Uba FI, Pullagurla SR, Sirasunthorn N, Wu J, Park S, Chantiwas R, Cho YK, Shin H, Soper SA]
通讯作者: Soper SA
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