AbstractThe study of interactions between carbon nanotubes and cellular components, such as membranes and biomolecules, is fundamental for the rational design of nanodevices interfacing with biological systems. In this work, we use molecular dynamics simulations to study the electrophoretic transport of RNA through carbon nanotubes embedded in membranes. Decorated and naked carbon nanotubes are inserted into a dodecane membrane and a dimyristoylphosphatidylcholine lipid bilayer, and the system is subjected to electrostatic potential differences. The transport properties of this artificial pore are determined by the structural modifications of the membrane in the vicinity of the nanotube openings and they are quantified by the nonuniform ele...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
AbstractThe study of interactions between carbon nanotubes and cellular components, such as membrane...
We study the electrophoretic transport of single-stranded RNA molecules through 1.5-nm-wide pores of...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
Carbon nanotubes have been proposed to be efficient nanovectors able to deliver genetic or therapeut...
One of the major challenges of nanomedicine and gene therapy is the effective translocation of drugs...
One of the major challenges of nanomedicine and gene therapy is the effective translocation of drugs...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
DNA origami offers the possibility of developing novel membrane-spanning pores with potential applic...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
The creation of biomimetic structures based on one-dimensional nanomaterials and lipid membranes wil...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
AbstractThe study of interactions between carbon nanotubes and cellular components, such as membrane...
We study the electrophoretic transport of single-stranded RNA molecules through 1.5-nm-wide pores of...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
Carbon nanotubes have been proposed to be efficient nanovectors able to deliver genetic or therapeut...
One of the major challenges of nanomedicine and gene therapy is the effective translocation of drugs...
One of the major challenges of nanomedicine and gene therapy is the effective translocation of drugs...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
DNA origami offers the possibility of developing novel membrane-spanning pores with potential applic...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
The creation of biomimetic structures based on one-dimensional nanomaterials and lipid membranes wil...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
International audienceCarbon nanotubes have been proposed to be efficient nanovectors able to delive...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...