AbstractWith the rapid development of nanotechnology and biotechnology, nanoscale structures are increasingly used in cellular biology. However, the interface between artificial materials and a biological membrane is not well understood, and the harm caused by the interaction is poorly controlled. Here, we utilize the dissipative particle dynamics simulation method to study the interface when a nanoscale probe penetrates the cell membrane, and propose that an appropriate surface architecture can reduce the harm experienced by a cell membrane. The simulation shows that a hydrophilic probe generates a hydrophilic hole around the probe while a hydrophobic probe leads to a ‘T-junction’ state as some lipid molecules move toward the two ends of t...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
Hydrophobic and functionalized nanoparticles of different sizes and shapes have a various biomedical...
AbstractWith the rapid development of nanotechnology and biotechnology, nanoscale structures are inc...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
AbstractNanoscale devices have been proposed as tools for measuring and controlling intracellular ac...
Using coarse-grained molecular dynamics simulations, we study the passive translocation of nanoparti...
Research of the mechanisms of interactions between nanoparticles (NPs) and lipid bilayers (LBs), whi...
Research of the mechanisms of interactions between nanoparticles (NPs) and lipid bilayers (LBs), whi...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
Hydrophobic and functionalized nanoparticles of different sizes and shapes have a various biomedical...
AbstractWith the rapid development of nanotechnology and biotechnology, nanoscale structures are inc...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
AbstractNanoscale devices have been proposed as tools for measuring and controlling intracellular ac...
Using coarse-grained molecular dynamics simulations, we study the passive translocation of nanoparti...
Research of the mechanisms of interactions between nanoparticles (NPs) and lipid bilayers (LBs), whi...
Research of the mechanisms of interactions between nanoparticles (NPs) and lipid bilayers (LBs), whi...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
Hydrophobic and functionalized nanoparticles of different sizes and shapes have a various biomedical...