Doctorat internacionalCell membrane permeability is modulated by complex dynamical structures created by objects interacting with the lipid bilayer. Paying attention to the kinetics of ion transport in response to different bioelectrochemical signals, we use planar bilayer electrophysiology to provide a perspective on membrane permeabilization mechanisms that goes from order to disorder as regards to the pore conformational dynamics. We first study stable channels shaped by large transmembrane proteins like OmpF. Next, we provide insights on lipid-peptide interactions leading to the formation of pores by Dynorphin A neuropeptides. Finally, we describe selective ion channels induced by large complex objects like plastic nanoparticles while t...
Two distinct mechanisms are most frequently discussed to describe the permeation of ions across the ...
Electroporation or electropermeabilization is a technique that enables transient increase in the cel...
This article reports on recent electrical and optical techniques for investigating cellular signalin...
Ion channels are biological nanotubes that are formed by membrane proteins. Because ion channels reg...
Molecular dynamics simulations of lipid membranes reveal the nanoscale evolution of biophysical syst...
A good understanding of cell membrane properties is crucial for better controlled and reproducible e...
Synthetic nanopores and mesoscopic protein channels have common traits like the importance of electr...
Biological membranes are quasi-two-dimensional bilayer structures consisting of a nonideal mixture o...
AbstractA good understanding of cell membrane properties is crucial for better controlled and reprod...
Cell-penetrating and antimicrobial peptides show a remarkable ability to translocate across physiolo...
ABSTRACT The interpretation electrical phenomena in biomembranes is usually based on the assumption ...
Altres ajuts: Universitat Jaume I (UJI-B2018-53; UJI-A2020-21) i Generalitat Valenciana (GRISOLIAP/2...
ABSTRACT: Electroporation, the application of electric fields to alter the permeability of biologica...
AbstractFree-standing lipid bilayer membranes can be formed on small apertures (60nm diameter) on hi...
The cell membrane is a selectively permeable barrier that controls the transport of ions, molecules,...
Two distinct mechanisms are most frequently discussed to describe the permeation of ions across the ...
Electroporation or electropermeabilization is a technique that enables transient increase in the cel...
This article reports on recent electrical and optical techniques for investigating cellular signalin...
Ion channels are biological nanotubes that are formed by membrane proteins. Because ion channels reg...
Molecular dynamics simulations of lipid membranes reveal the nanoscale evolution of biophysical syst...
A good understanding of cell membrane properties is crucial for better controlled and reproducible e...
Synthetic nanopores and mesoscopic protein channels have common traits like the importance of electr...
Biological membranes are quasi-two-dimensional bilayer structures consisting of a nonideal mixture o...
AbstractA good understanding of cell membrane properties is crucial for better controlled and reprod...
Cell-penetrating and antimicrobial peptides show a remarkable ability to translocate across physiolo...
ABSTRACT The interpretation electrical phenomena in biomembranes is usually based on the assumption ...
Altres ajuts: Universitat Jaume I (UJI-B2018-53; UJI-A2020-21) i Generalitat Valenciana (GRISOLIAP/2...
ABSTRACT: Electroporation, the application of electric fields to alter the permeability of biologica...
AbstractFree-standing lipid bilayer membranes can be formed on small apertures (60nm diameter) on hi...
The cell membrane is a selectively permeable barrier that controls the transport of ions, molecules,...
Two distinct mechanisms are most frequently discussed to describe the permeation of ions across the ...
Electroporation or electropermeabilization is a technique that enables transient increase in the cel...
This article reports on recent electrical and optical techniques for investigating cellular signalin...