纳米孔
聚合
多路复用
复式(建筑)
单体
连接器
材料科学
聚合物
化学
纳米技术
组合化学
计算机科学
DNA
有机化学
生物信息学
生物化学
生物
操作系统
作者
Ruiping Wu,Yesheng Wang,Yu Jin,Huan Li,Chunmiao Yu,Huaning Wang,Ming Wang,Bingling Li
标识
DOI:10.1002/ange.202304891
摘要
Abstract Nanopore sensing is highly promising in single molecular analysis but their broad applications have been challenged by the limited strategies that can transduce a target‐of‐interest into a specific and anti‐false/inference signal, especially for solid‐state nanopores with relatively lower resolution and higher noise. Here we report a high‐resolution signal‐production concept named target‐induced duplex polymerization strategy (DPS). Through linking the same or different duplex substrates (DSs) with a special linker (L) and an optional structure tag (ST), the DPS can generate target‐specific DS polymers with highly controllable duration times, duration intervals and even distinguished secondary tagging currents. Experimentally, DPS mono‐polymerization of single DS and co‐polymerization of multiple DSs has verified the duration time of a DPS product is the sum of those for each DS monomer. Tetrahedron‐DNA structures with different sizes are used as the STs to provide needle‐like secondary peaks for further resolution enhancement and multiplex assay. With these examples DPS represents a general, programmable and advanced strategy that may simultaneously provide size‐amplification, concentration amplification, and signal‐specificity for molecular recognition. It is also promisingly in various applications regarding to single molecular investigation, such as polymerization degree, structure/side chain conformation, programmable multiplex decoding and information index.
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