A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is applied for inducing diffusion and triggered release of small and large molecules from red blood cells (RBCs). The method is Implemented using absorbing gold nanoparticle (Au-NP) aggregates on the membrane of loaded RBCs, which, upon near-IR laser light absorption, induce release of encapsulated molecules from selected cells. The binding of Au-NPs to RBCs is characterized by Raman spectroscopy. The process of release Is driven by heating localized at nanoparticles, which impacts the permeability of the membrane by affecting the lipid bilayer and/or trans-membrane proteins. Localized heating and temperature rise around Au-NP aggregates is simulat...
There is a great interest in delivering macromolecular agents into living cells for therapeutic purp...
In the framework of novel medical paradigm the red blood cells (RBC) have a great potential to be us...
Plasmonic nanoparticles (NP) possess great potential in photothermal therapy and diagnostics. Howeve...
A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is app...
A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is app...
Macromolecular agents such as nucleic acids and proteins need to be delivered into living cells for ...
Plasmon-resonant nanoparticles attached to cell membranes, under laser treatment can temporarily inc...
Abstract Laser optoporation of cells by local heating of plasmonic gold nanoparticles (GNPs) was pr...
A plasmon resonance based method for introducing foreign material into living cells is presented. By...
Here, an efficient intracellular delivery of molecules with high cell viability is reported using na...
Technological limitations have prevented interrogation and manipulation of many signaling pathways i...
We present a versatile and controlled route to immobilize gold nanoparticles (NPs) on the surface of...
There is a great interest in delivering macromolecular agents into living cells for therapeutic purp...
We have developed a nanoplasmonic-based approach to induce nanometer-sized local defects in the phos...
textPlasmonic Laser Nanosurgery (PLN) is a novel photodisruption technique that exploits the large e...
There is a great interest in delivering macromolecular agents into living cells for therapeutic purp...
In the framework of novel medical paradigm the red blood cells (RBC) have a great potential to be us...
Plasmonic nanoparticles (NP) possess great potential in photothermal therapy and diagnostics. Howeve...
A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is app...
A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is app...
Macromolecular agents such as nucleic acids and proteins need to be delivered into living cells for ...
Plasmon-resonant nanoparticles attached to cell membranes, under laser treatment can temporarily inc...
Abstract Laser optoporation of cells by local heating of plasmonic gold nanoparticles (GNPs) was pr...
A plasmon resonance based method for introducing foreign material into living cells is presented. By...
Here, an efficient intracellular delivery of molecules with high cell viability is reported using na...
Technological limitations have prevented interrogation and manipulation of many signaling pathways i...
We present a versatile and controlled route to immobilize gold nanoparticles (NPs) on the surface of...
There is a great interest in delivering macromolecular agents into living cells for therapeutic purp...
We have developed a nanoplasmonic-based approach to induce nanometer-sized local defects in the phos...
textPlasmonic Laser Nanosurgery (PLN) is a novel photodisruption technique that exploits the large e...
There is a great interest in delivering macromolecular agents into living cells for therapeutic purp...
In the framework of novel medical paradigm the red blood cells (RBC) have a great potential to be us...
Plasmonic nanoparticles (NP) possess great potential in photothermal therapy and diagnostics. Howeve...