International audienceHealth concerns associated with the advent of nanotechnologies have risen sharply when it was found that particles of nanoscopic dimensions reach the cell lumina. Plasma and organelle lipid membranes, which are exposed to both the incoming and the engulfed nanoparticles, are the primary targets of possible disruptions. However, reported adhesion, invagination and embedment of nanoparticles (NPs) do not compromise the membrane integrity, precluding direct bilayer damage as a mechanism for toxicity. Here it is shown that a lipid membrane can be torn by small enough nanoparticles, thus unveiling mechanisms for how lipid membrane can be compromised by tearing from nanoparticles. Surprisingly, visualization by cryo transmis...
It has long been recognized that cationic nanoparticles induce cell membrane permeability. Recently,...
Nanotoxicity studies have shown that both carbon-based and inorganic engineered nanoparticles can be...
Nanoparticles-both natural and engineered-are ubiquitous in their interactions with cells and especi...
International audienceHealth concerns associated with the advent of nanotechnologies have risen shar...
International audienceHealth concerns associated with the advent of nanotechnologies have risen shar...
International audienceHealth concerns associated with the advent of nanotechnologies have risen shar...
International audienceHealth concerns associated with the advent of nanotechnologies have risen shar...
Health concerns associated with the advent of nanotechnologies have risen sharply when it was found ...
Nanoparticles with widely varying physical properties and origins (spherical versus irregular, synth...
Nanoparticle transport across cell membrane plays a crucial role in the development of drug delivery...
Nanoparticle transport across cell membrane plays a crucial role in the development of drug delivery...
Direct contact of nanoparticles with the plasma membrane is essential for biomedical applications su...
Nanoparticle transport across cell membrane plays a crucial role in the development of drug delivery...
International audienceNanoparticle transport across cell membrane plays a crucial role in the develo...
Physical disruption of cellular membranes arising from interactions with engineered nanoparticles is...
It has long been recognized that cationic nanoparticles induce cell membrane permeability. Recently,...
Nanotoxicity studies have shown that both carbon-based and inorganic engineered nanoparticles can be...
Nanoparticles-both natural and engineered-are ubiquitous in their interactions with cells and especi...
International audienceHealth concerns associated with the advent of nanotechnologies have risen shar...
International audienceHealth concerns associated with the advent of nanotechnologies have risen shar...
International audienceHealth concerns associated with the advent of nanotechnologies have risen shar...
International audienceHealth concerns associated with the advent of nanotechnologies have risen shar...
Health concerns associated with the advent of nanotechnologies have risen sharply when it was found ...
Nanoparticles with widely varying physical properties and origins (spherical versus irregular, synth...
Nanoparticle transport across cell membrane plays a crucial role in the development of drug delivery...
Nanoparticle transport across cell membrane plays a crucial role in the development of drug delivery...
Direct contact of nanoparticles with the plasma membrane is essential for biomedical applications su...
Nanoparticle transport across cell membrane plays a crucial role in the development of drug delivery...
International audienceNanoparticle transport across cell membrane plays a crucial role in the develo...
Physical disruption of cellular membranes arising from interactions with engineered nanoparticles is...
It has long been recognized that cationic nanoparticles induce cell membrane permeability. Recently,...
Nanotoxicity studies have shown that both carbon-based and inorganic engineered nanoparticles can be...
Nanoparticles-both natural and engineered-are ubiquitous in their interactions with cells and especi...