AbstractDiffusion time distribution analysis has been employed to highlight the microfluidity fingerprint of plasma membrane of living cells. Diffusion time measurements were obtained through fluorescence correlation spectroscopy performed at the single cell level, over various eukaryotic cell lines (MCF7, LR73, KB3.1, MESSA and MDCKII). The nonsymmetric profile of the diffusion time distributions established experimentally, is discussed according to Monte Carlo simulations, which reproduce the diffusion of the fluorescent probe in heterogeneous membrane
AbstractThe plasma membrane of various mammalian cell types is heterogeneous in structure and may co...
Our present description of the plasma membrane includes heterogeneities or mechanisms that may hinde...
Our present description of the plasma membrane includes heterogeneities or mechanisms that may hinde...
AbstractDiffusion time distribution analysis has been employed to highlight the microfluidity finger...
International audienceDiffusion time distribution analysis has been employed to highlight the microf...
The plasma membrane organization of live cells defines a plethora of cellular processes important fo...
AbstractThe plasma membrane of various mammalian cell types is heterogeneous in structure and may co...
AbstractTo probe the complexity of the cell membrane organization and dynamics, it is important to o...
AbstractWe describe the development of a new methodology to probe the plasma membrane organization o...
AbstractSingle-molecule tracking and fluorescence correlation spectroscopy (FCS) applied to the plas...
International audienceDynamic biological processes in living cells, including those associated with ...
International audienceDynamic biological processes in living cells, including those associated with ...
AbstractThis review describes the application of fluorescence correlation spectroscopy (FCS) for the...
International audienceDynamic biological processes in living cells, including those associated with ...
International audienceDynamic biological processes in living cells, including those associated with ...
AbstractThe plasma membrane of various mammalian cell types is heterogeneous in structure and may co...
Our present description of the plasma membrane includes heterogeneities or mechanisms that may hinde...
Our present description of the plasma membrane includes heterogeneities or mechanisms that may hinde...
AbstractDiffusion time distribution analysis has been employed to highlight the microfluidity finger...
International audienceDiffusion time distribution analysis has been employed to highlight the microf...
The plasma membrane organization of live cells defines a plethora of cellular processes important fo...
AbstractThe plasma membrane of various mammalian cell types is heterogeneous in structure and may co...
AbstractTo probe the complexity of the cell membrane organization and dynamics, it is important to o...
AbstractWe describe the development of a new methodology to probe the plasma membrane organization o...
AbstractSingle-molecule tracking and fluorescence correlation spectroscopy (FCS) applied to the plas...
International audienceDynamic biological processes in living cells, including those associated with ...
International audienceDynamic biological processes in living cells, including those associated with ...
AbstractThis review describes the application of fluorescence correlation spectroscopy (FCS) for the...
International audienceDynamic biological processes in living cells, including those associated with ...
International audienceDynamic biological processes in living cells, including those associated with ...
AbstractThe plasma membrane of various mammalian cell types is heterogeneous in structure and may co...
Our present description of the plasma membrane includes heterogeneities or mechanisms that may hinde...
Our present description of the plasma membrane includes heterogeneities or mechanisms that may hinde...