Understanding the interaction between synthetic nanostructures and living cells is of crucial importance for the development of nanotechnology-based intracellular delivery systems. Fluorescence microscopy is one of the most widespread tools owing to its ability to image multiple colors in native conditions. However, due to the limited resolution, it is unsuitable to address individual diffraction-limited objects. Here we introduce a combination of super-resolution microscopy and single-molecule data analysis to unveil the behavior of nanoparticles during their entry into mammalian cells. Two-color Stochastic Optical Reconstruction Microscopy (STORM) addresses the size and positioning of nanoparticles inside cells and probes their interactio...
The design of targeted nanomedicines requires intracellular space- and time-resolved data of nanopar...
Background: Quantitative analysis of nanoparticle uptake at the cellular level is critical to nanome...
Recent advances in far-field fluorescence microscopy have led to substantial improvements in image r...
Understanding the interaction between synthetic nanostructures and living cells is of crucial import...
Nanoparticles (NPs) are used to encapsulate therapeutic cargos and deliver them specifically to the ...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
Author Institution: Department of Chemistry and Chemical Biology, Howard Hughes Medical Institute, H...
<div><p>Understanding of nanoparticle-bio-interactions within living cells requires knowledge about ...
The ability to directly visualize nanoscopic cellular structures and their spatial relationship in a...
The ability to directly visualize nanoscopic cellular structures and their spatial relationship in a...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Understanding the uptake and transport dynamics of engineered nanomaterials (ENMs) by mammalian cell...
Nanoparticulate systems have emerged as valuable tools in vaccine delivery through their ability to ...
UnlabelledFluorescence microscopy and spectroscopy techniques are commonly used to investigate compl...
The design of targeted nanomedicines requires intracellular space- and time-resolved data of nanopar...
Background: Quantitative analysis of nanoparticle uptake at the cellular level is critical to nanome...
Recent advances in far-field fluorescence microscopy have led to substantial improvements in image r...
Understanding the interaction between synthetic nanostructures and living cells is of crucial import...
Nanoparticles (NPs) are used to encapsulate therapeutic cargos and deliver them specifically to the ...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
Author Institution: Department of Chemistry and Chemical Biology, Howard Hughes Medical Institute, H...
<div><p>Understanding of nanoparticle-bio-interactions within living cells requires knowledge about ...
The ability to directly visualize nanoscopic cellular structures and their spatial relationship in a...
The ability to directly visualize nanoscopic cellular structures and their spatial relationship in a...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Understanding the uptake and transport dynamics of engineered nanomaterials (ENMs) by mammalian cell...
Nanoparticulate systems have emerged as valuable tools in vaccine delivery through their ability to ...
UnlabelledFluorescence microscopy and spectroscopy techniques are commonly used to investigate compl...
The design of targeted nanomedicines requires intracellular space- and time-resolved data of nanopar...
Background: Quantitative analysis of nanoparticle uptake at the cellular level is critical to nanome...
Recent advances in far-field fluorescence microscopy have led to substantial improvements in image r...