Despite success in probing chemical reactions and dynamics of macromolecules on submillisecond time and nanometer length scales, a major impasse faced by nanopore technology is the need to cheaply and controllably modulate macromolecule capture and trafficking across the nanopore. We demonstrate herein that tunable charge separation engineered at the both ends of a macromolecule very efficiently modulates the dynamics of macromolecules capture and traffic through a nanometer-size pore. In the proof-of-principle approach, we employed a 36 amino acids long peptide containing at the N- and C-termini uniform patches of glutamic acids and arginines, flanking a central segment of asparagines, and we studied its capture by the alpha-hemolysin (alp...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
Despite success in probing chemical reactions and dynamics of macromolecules on submillisecond time ...
Despite success in probing chemical reactions and dynamics of macromolecules on submillisecond time ...
Despite success in probing chemical reactions and dynamics of macromolecules on submillisecond time ...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
Despite success in probing chemical reactions and dynamics of macromolecules on submillisecond time ...
Despite success in probing chemical reactions and dynamics of macromolecules on submillisecond time ...
Despite success in probing chemical reactions and dynamics of macromolecules on submillisecond time ...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
We report on the ability to control the dynamics of a single peptide capture and passage across a vo...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...
In this work, we demonstrate the proof-of-concept of real-time discrimination between patches of hyd...