Ren Ren, Zhang Yanjun, Nadappuram Binoy Paulose, Akpinar Bernice, Klenerman David, Ivanov Aleksandar P, Edel Joshua B, Korchev Yuri
Department of Medicine, Imperial College London, London, W12 0NN, UK.
Department of Chemistry, Imperial College London, London, SW7 2AZ, UK.
Nat Commun. 2017 Sep 19;8(1):586. doi: 10.1038/s41467-017-00549-w.
There has been a significant drive to deliver nanotechnological solutions to biosensing, yet there remains an unmet need in the development of biosensors that are affordable, integrated, fast, capable of multiplexed detection, and offer high selectivity for trace analyte detection in biological fluids. Herein, some of these challenges are addressed by designing a new class of nanoscale sensors dubbed nanopore extended field-effect transistor (nexFET) that combine the advantages of nanopore single-molecule sensing, field-effect transistors, and recognition chemistry. We report on a polypyrrole functionalized nexFET, with controllable gate voltage that can be used to switch on/off, and slow down single-molecule DNA transport through a nanopore. This strategy enables higher molecular throughput, enhanced signal-to-noise, and even heightened selectivity via functionalization with an embedded receptor. This is shown for selective sensing of an anti-insulin antibody in the presence of its IgG isotype.Efficient detection of single molecules is vital to many biosensing technologies, which require analytical platforms with high selectivity and sensitivity. Ren et al. combine a nanopore sensor and a field-effect transistor, whereby gate voltage mediates DNA and protein transport through the nanopore.
人们一直在大力推动将纳米技术解决方案应用于生物传感领域,然而,在开发经济实惠、集成化、快速、能够进行多重检测且对生物流体中的痕量分析物检测具有高选择性的生物传感器方面,仍存在未满足的需求。在此,通过设计一类新型的纳米级传感器——纳米孔扩展场效应晶体管(nexFET)来应对其中一些挑战,该传感器结合了纳米孔单分子传感、场效应晶体管和识别化学的优点。我们报道了一种聚吡咯功能化的nexFET,其具有可控的栅极电压,可用于打开/关闭以及减缓单分子DNA通过纳米孔的传输。这种策略通过用嵌入式受体进行功能化,实现了更高的分子通量、增强的信噪比以及甚至更高的选择性。这在抗胰岛素抗体存在其IgG同种型的情况下对其进行选择性传感时得到了证明。单分子的高效检测对于许多生物传感技术至关重要,这些技术需要具有高选择性和灵敏度的分析平台。任等人将纳米孔传感器和场效应晶体管结合起来,通过栅极电压介导DNA和蛋白质通过纳米孔的传输。