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A Nanopore Sequencing-Based Assay for Rapid Detection of Gene Fusions.基于纳米孔测序的快速融合基因检测方法。
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Length-independent DNA packing into nanopore zero-mode waveguides for low-input DNA sequencing.长度无关的 DNA 包被到纳米孔零模波导中用于低输入 DNA 测序。
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The Oxford Nanopore MinION: delivery of nanopore sequencing to the genomics community.牛津纳米孔MinION测序仪:将纳米孔测序技术带给基因组学界。
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通过电光零模波导直接测序快速鉴定 DNA 片段。

Rapid Identification of DNA Fragments through Direct Sequencing with Electro-Optical Zero-Mode Waveguides.

机构信息

Department of Bioengineering, Northeastern University, Boston, MA, 02115, USA.

Department of Electrical and Computer Engineering, Northeastern University, Boston, MA, 02115, USA.

出版信息

Adv Mater. 2022 Mar;34(9):e2108479. doi: 10.1002/adma.202108479. Epub 2022 Jan 24.

DOI:10.1002/adma.202108479
PMID:34964522
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8915919/
Abstract

In contrast to sequence-specific techniques such as polymerase chain reaction, DNA sequencing does not require prior knowledge of the sample for surveying DNA. However, current sequencing technologies demand high inputs for a suitable library preparation, which typically necessitates DNA amplification, even for single-molecule sequencing methods. Here, electro-optical zero-mode waveguides (eZMWs) are presented, which can load DNA into the confinement of zero-mode waveguides with high efficiency and negligible DNA fragment length bias. Using eZMWs, highly efficient voltage-induced loading of DNA fragments of various sizes from ultralow inputs (nanogram-to-picogram levels) is observed. Rapid DNA fragment identification is demonstrated by burst sequencing of short and long DNA molecules (260 and 20 000 bp) loaded from an equimolar picomolar-level concentration mixture in just a few minutes. The device allows further studies in which low-input DNA capture is essential, for example, in epigenetics, where native DNA is required for obtaining modified base information.

摘要

与聚合酶链反应等序列特异性技术相反,DNA 测序不需要事先了解样本,即可对 DNA 进行检测。然而,当前的测序技术需要大量的投入来进行合适的文库制备,即使对于单分子测序方法,这通常也需要 DNA 扩增。在这里,提出了光电零模波导(eZMWs),它可以高效率地将 DNA 加载到零模波导的限制区域中,并且不会导致 DNA 片段长度产生偏差。利用 eZMWs,可以从超低输入(纳克到皮克克级水平)中高效地感应加载各种大小的 DNA 片段。通过对从等摩尔皮摩尔级浓度混合物中加载的短链和长链 DNA 分子(260 和 20000 bp)进行突发测序,可实现快速的 DNA 片段鉴定,只需几分钟即可完成。该设备还可以进一步研究,在这些研究中,低输入 DNA 捕获是必不可少的,例如在表观遗传学中,需要原始 DNA 来获取修饰碱基信息。