We present a versatile and controlled route to immobilize gold nanoparticles (NPs) on the surface of living cells, while preserving the sensing and optothermal capabilities of the original colloid. Our approach is based on the controlled and selective binding of Au NPs to phospholipids prior to cell incubation. We show that in the presence of the cells the lipid-bound Au NPs are delivered to the cellular membrane and that their diffusion is rather slow and spatially limited, as a result of lipid binding. Avoiding nonspecific membrane labeling, this approach is of general application to several types of colloids and cells and thereby provides a platform for controlled plasmonic and optothermal investigations of living cell membranes.Fil: Ba,...
The development of remotely controlled nanoscopic sources of heat is essential for investigating and...
The use of functionalised gold nanoparticles in biomedical applications is expanding. Here we explor...
Nanomaterials exhibit various interesting and fundamental properties that are distinctly different f...
A synthetic protocol is described for preparing lipid-coated gold nanoparticles (AuNPs) of varying s...
Gold nanoparticles provide a template for preparing supported lipid layers with well-defined curvatu...
We present a supported membrane platform consisting of a fluid lipid bilayer membrane embedded with ...
A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is app...
Investigations for accurately controlling the interaction between functional nanoparticles (NPs) and...
Gold nanoparticles (AuNPs) encapsulated within reconstituted phospholipid bilayers have been utilize...
A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is app...
The nanoparticle (nano)-cell membrane interface is one of the most important interactions determinin...
The electronic, optical, catalytic, and magnetic properties of metal nanoparticles (NPs) make them e...
Technological limitations have prevented interrogation and manipulation of many signaling pathways i...
International audienceAccording to their high electron density and ultrasmall size, gold nanocluster...
Experiments and simulations reveal that amphiphilic nanoparticles suppress phase separation in neuro...
The development of remotely controlled nanoscopic sources of heat is essential for investigating and...
The use of functionalised gold nanoparticles in biomedical applications is expanding. Here we explor...
Nanomaterials exhibit various interesting and fundamental properties that are distinctly different f...
A synthetic protocol is described for preparing lipid-coated gold nanoparticles (AuNPs) of varying s...
Gold nanoparticles provide a template for preparing supported lipid layers with well-defined curvatu...
We present a supported membrane platform consisting of a fluid lipid bilayer membrane embedded with ...
A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is app...
Investigations for accurately controlling the interaction between functional nanoparticles (NPs) and...
Gold nanoparticles (AuNPs) encapsulated within reconstituted phospholipid bilayers have been utilize...
A nanoplasmonics-based opto-nanoporation method of creating nanopores upon laser illumination is app...
The nanoparticle (nano)-cell membrane interface is one of the most important interactions determinin...
The electronic, optical, catalytic, and magnetic properties of metal nanoparticles (NPs) make them e...
Technological limitations have prevented interrogation and manipulation of many signaling pathways i...
International audienceAccording to their high electron density and ultrasmall size, gold nanocluster...
Experiments and simulations reveal that amphiphilic nanoparticles suppress phase separation in neuro...
The development of remotely controlled nanoscopic sources of heat is essential for investigating and...
The use of functionalised gold nanoparticles in biomedical applications is expanding. Here we explor...
Nanomaterials exhibit various interesting and fundamental properties that are distinctly different f...