The molecular diffusion dynamics in unconstrained cases has been studied thoroughly during the last two centuries, leading to the well-known Fick’s diffusion laws and Stokes-Einstein equation. More recently, a new impulse to the study of this topic has been provided by the necessity of understanding the behavior of solute particles in the presence of environmental constraints of size comparable to the molecular dimensions. In this work, we investigate the diffusion kinetics of biomolecules, such as bovine serum albumin, interferon, and lysozyme, through microfabricated silicon membranes, having pores of nanometric size in only one dimension, in the range from few to tens of nanometers (the other dimensions are in the ím range). Experi...
Abstract. The progress of molecular manipulation technology has made it possible to conduct controll...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
The progress of molecular manipulation technology has made it possible to conduct controlled experim...
The molecular diffusion dynamics in unconstrained cases has been studied thoroughly during the last ...
Transport and surface interactions of proteins in nanopore membranes play a key role in many proces...
Passive transport of molecules through nanopores is characterized by the interaction of molecules wi...
International audienceA biomimetic model of cell-cell communication was developed to probe the passi...
We report in this account our efforts in the development of a novel multiscale simulation tool for ...
Cell mechanisms are actively modulated by membrane dynamics. We studied the dynamics of a first-stag...
Tracing the motion of macromolecules, viruses, and nanoparticles adsorbed onto cell membranes is cur...
The cellular environment is characterized by confinement and macro-molecular crowding: both concepts...
The diffusion behavior of biological components in cellular membranes is vital to the function of ce...
Biomicrofluidics is an emerging field at the cross roads of microfluidics and life sciences which re...
Diffusion in constrained geometries is paramount to transport across biological membranes and in mes...
The design and development of many emerging separation and catalytic process technologies require a ...
Abstract. The progress of molecular manipulation technology has made it possible to conduct controll...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
The progress of molecular manipulation technology has made it possible to conduct controlled experim...
The molecular diffusion dynamics in unconstrained cases has been studied thoroughly during the last ...
Transport and surface interactions of proteins in nanopore membranes play a key role in many proces...
Passive transport of molecules through nanopores is characterized by the interaction of molecules wi...
International audienceA biomimetic model of cell-cell communication was developed to probe the passi...
We report in this account our efforts in the development of a novel multiscale simulation tool for ...
Cell mechanisms are actively modulated by membrane dynamics. We studied the dynamics of a first-stag...
Tracing the motion of macromolecules, viruses, and nanoparticles adsorbed onto cell membranes is cur...
The cellular environment is characterized by confinement and macro-molecular crowding: both concepts...
The diffusion behavior of biological components in cellular membranes is vital to the function of ce...
Biomicrofluidics is an emerging field at the cross roads of microfluidics and life sciences which re...
Diffusion in constrained geometries is paramount to transport across biological membranes and in mes...
The design and development of many emerging separation and catalytic process technologies require a ...
Abstract. The progress of molecular manipulation technology has made it possible to conduct controll...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
The progress of molecular manipulation technology has made it possible to conduct controlled experim...