In this study, a novel approach for preparation of green fluorescent protein (GFP)-doped silica nanoparticles with a narrow size distribution is presented. GFP was chosen as a model protein due to its autofluorescence. Protein-doped nanoparticles have a high application potential in the field of intracellular protein delivery. In addition, fluorescently labelled particles can be used for bioimaging. The size of these protein-doped nanoparticles was adjusted from 15 to 35 nm using a multistep synthesis process, comprising the particle core synthesis followed by shell regrowth steps. GFP was selectively incorporated into the silica matrix of either the core or the shell or both by a one-pot reaction. The obtained nanoparticles were characteri...
Chromobodies have recently drawn great attention as bioimaging nanotools. They offer high antigen bi...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Nano-sized fluorescent materials have demonstrated great potential in the emergent fields of nanobio...
Abstract In this study, a novel approach for preparation of green fluorescent protein (GFP)-doped si...
Although conceptually obvious, the effective delivery of proteins in therapeutic applications is far...
The enhanced green fluorescence protein (EGFP) is efficiently encapsulated in silica nanoparticle by...
Background: Fluorescent silica nanoparticles have been extensively utilised in a broad range of biol...
(Figure Presented) Si'l vous plait? A facile and general method has been developed to encapsula...
Fluorescence spectra of pure GFP at a concentration of 1 μg mL−1, dissolved in either ʟ-arginine at ...
Unlike silica nanoparticles, the potential of silica mesoparticles (SMPs) (i.e. particles of submicr...
Formation of biological materials is a well-controlled process that is orchestrated by biomolecules ...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Fluorescent silica nanoparticles have been extensively utilised in a broad range of biological appli...
The need for novel design strategies for fluorescent nanomaterials to improve our understanding of b...
The production of uniform protein-binding biofunctional fluorescent spherical silica core-shell nano...
Chromobodies have recently drawn great attention as bioimaging nanotools. They offer high antigen bi...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Nano-sized fluorescent materials have demonstrated great potential in the emergent fields of nanobio...
Abstract In this study, a novel approach for preparation of green fluorescent protein (GFP)-doped si...
Although conceptually obvious, the effective delivery of proteins in therapeutic applications is far...
The enhanced green fluorescence protein (EGFP) is efficiently encapsulated in silica nanoparticle by...
Background: Fluorescent silica nanoparticles have been extensively utilised in a broad range of biol...
(Figure Presented) Si'l vous plait? A facile and general method has been developed to encapsula...
Fluorescence spectra of pure GFP at a concentration of 1 μg mL−1, dissolved in either ʟ-arginine at ...
Unlike silica nanoparticles, the potential of silica mesoparticles (SMPs) (i.e. particles of submicr...
Formation of biological materials is a well-controlled process that is orchestrated by biomolecules ...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Fluorescent silica nanoparticles have been extensively utilised in a broad range of biological appli...
The need for novel design strategies for fluorescent nanomaterials to improve our understanding of b...
The production of uniform protein-binding biofunctional fluorescent spherical silica core-shell nano...
Chromobodies have recently drawn great attention as bioimaging nanotools. They offer high antigen bi...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
Nano-sized fluorescent materials have demonstrated great potential in the emergent fields of nanobio...