Sequencing of nucleic acids with nanopores has emerged as a powerful tool offering rapid readout, high accuracy, low cost and portability. This label-free method for sequencing at the …
Nanopore systems have emerged as a leading platform for the analysis of biomolecular complexes with single-molecule resolution. The conformation of biomolecules, such as …
K Lee, KB Park, HJ Kim, JS Yu, H Chae… - Advanced …, 2018 - Wiley Online Library
The solid‐state nanopore has attracted much attention as a next‐generation DNA sequencing tool or a single‐molecule biosensor platform with its high sensitivity of …
M Waugh, K Briggs, D Gunn, M Gibeault, S King… - Nature …, 2020 - nature.com
Solid-state nanopores are now well established as single-biomolecule sensors that hold great promise as sensing elements in diagnostic and sequencing applications. However …
Nanopores are powerful single-molecule tools for label-free sensing of nanoscale molecules including DNA that can be used for building designed nanostructures and …
Rapid sensing of molecules is increasingly important in many studies and applications, such as DNA sequencing and protein identification. Here, beyond atomically thin 2D nanopores …
K Chen, A Choudhary, SE Sandler, C Maffeo… - Advanced …, 2023 - Wiley Online Library
High‐resolution analysis of biomolecules has brought unprecedented insights into fundamental biological processes and dramatically advanced biosensing. Notwithstanding …
Various biological processes involve the translocation of macromolecules across nanopores; these pores are basically protein channels embedded in membranes …
In current nanopore-based label-free single-molecule sensing technologies, stochastic processes influence the selection of translocating molecule, translocation rate and …