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公开(公告)号:EP3074134A4
公开(公告)日:2017-07-12
申请号:EP14865949
申请日:2014-11-26
申请人: STC UNM
发明人: BRUECK STEVEN R J , EDWARDS JEREMY SCOTT , NEUMANN ALEXANDER , KUZNETSOVA YULIYA , MENDOZA EDGAR A
CPC分类号: G01N33/48721 , B01L3/502707 , B01L3/502761 , B01L2200/0663 , B01L2200/0689 , B01L2200/12 , B01L2300/046 , B01L2300/0654 , B01L2300/0816 , B01L2300/087 , B01L2300/0896 , B01L2300/16 , B01L2300/168 , B01L2400/0421 , C12Q1/6869 , C23C16/345 , C23C16/45525 , C23C16/50 , G01N21/65 , G01N2021/653 , G01N2201/061 , C12Q2563/155 , C12Q2565/631
摘要: Methods and apparatus for long read, label-free, optical nanopore long chain molecule sequencing. In general, the present disclosure describes a novel sequencing technology based on the integration of nanochannels to deliver single long-chain molecules with widely spaced (>wavelength), ˜1-nm aperture “tortuous” nanopores that slow translocation sufficiently to provide massively parallel, single base resolution using optical techniques. A novel, directed self-assembly nanofabrication scheme using simple colloidal nanoparticles is used to form the nanopore arrays atop nanochannels that unfold the long chain molecules. At the surface of the nanoparticle array, strongly localized electromagnetic fields in engineered plasmonic/polaritonic structures allow for single base resolution using optical techniques.
摘要翻译: 用于长读取,无标记,光学纳米孔长链分子测序的方法和设备。 通常,本公开内容描述了基于纳米通道整合以递送具有宽间隔(>波长),〜1nm孔径“曲折”纳米孔的单个长链分子的新型测序技术,其缓慢移位足以提供大规模平行, 使用光学技术的单基准分辨率。 使用简单的胶体纳米粒子的新型定向自组装纳米制造方案用于在展开长链分子的纳米通道上形成纳米孔阵列。 在纳米颗粒阵列的表面,工程等离子体激元/极化激元结构中的强局部电磁场允许使用光学技术实现单基极分辨率。