Artificial channels made of carbon nanotube (CNT) porins are promising candidates for applications in filtration and molecular delivery devices. Their symmetric shape and high mechanical, chemical, and thermal stability ensure well-defined transport properties, and at the same time make them ideal model systems for more complicated membrane protein pores. As the technology to produce and tune CNTs advances, simulations can aid in the design of customized membrane porins. Here we concentrate on CNTs embedded in lipid membranes. To derive design guidelines, we systematically studied the interaction of CNT porins with their surrounding lipids. For our simulations, we developed an AMBER- and Lipid14-compatible parameterization scheme for CNTs w...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
AbstractA cylindrical transmembrane molecule is constructed by linking hydrophobic sites selected fr...
Biomimetic nanopores based on membrane-spanning single-walled carbon nanotubes have been designed to...
Carbon nanotubes (CNTs) have been considered a prominent nano-channel in cell membranes because of t...
The biological membrane, which is composed of a lipid bilayer embedded with numerous proteins, defin...
Forces between carbon nanotubes (CNTs) embedded in lipid bilayers and effects of CNTs on structural ...
Nanofiltration technology faces the competing challenges of achieving high fluid flux through unifor...
Nanofiltration technology faces the competing challenges of achieving high fluid flux through unifor...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
In the present work, we describe Martini3 coarse-grained models of polystyrene and carboxyl-terminat...
Carbon nanotubes (CNTs) are possible nanoinjectors for the introduction of therapeutic agents into c...
One of the major challenges of nanomedicine and gene therapy is the effective translocation of drugs...
The dispersion of carbon nanotubes (CNTs) in aqueous media is of potential importance in a number of...
The processes of CNTs bundle formation and insertion/rearrangement inside lipid bilayers, as models ...
The processes of CNTs bundle formation and insertion/rearrangement inside lipid bilayers, as models ...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
AbstractA cylindrical transmembrane molecule is constructed by linking hydrophobic sites selected fr...
Biomimetic nanopores based on membrane-spanning single-walled carbon nanotubes have been designed to...
Carbon nanotubes (CNTs) have been considered a prominent nano-channel in cell membranes because of t...
The biological membrane, which is composed of a lipid bilayer embedded with numerous proteins, defin...
Forces between carbon nanotubes (CNTs) embedded in lipid bilayers and effects of CNTs on structural ...
Nanofiltration technology faces the competing challenges of achieving high fluid flux through unifor...
Nanofiltration technology faces the competing challenges of achieving high fluid flux through unifor...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
In the present work, we describe Martini3 coarse-grained models of polystyrene and carboxyl-terminat...
Carbon nanotubes (CNTs) are possible nanoinjectors for the introduction of therapeutic agents into c...
One of the major challenges of nanomedicine and gene therapy is the effective translocation of drugs...
The dispersion of carbon nanotubes (CNTs) in aqueous media is of potential importance in a number of...
The processes of CNTs bundle formation and insertion/rearrangement inside lipid bilayers, as models ...
The processes of CNTs bundle formation and insertion/rearrangement inside lipid bilayers, as models ...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
AbstractA cylindrical transmembrane molecule is constructed by linking hydrophobic sites selected fr...
Biomimetic nanopores based on membrane-spanning single-walled carbon nanotubes have been designed to...