Endothelial leakiness or permeability directly determines the access of any bionanotechnology to the target tissue site. Currently, cancer nanotechnology relies on tumor-derived endothelial leakiness, which suffers from unreliability, inhomogeneity of leakiness, and uncontrollability. Nanomaterials by themselves are capable of inducing endothelial leakiness (NanoEL) without any tumor involvement by targeting the endothelial cell junctions; this NanoEL phenomenon not well understood. Here, we showed that the negatively charged Au nanoparticles (NPs) induce significantly higher NanoEL than positively charged nanoparticles. We hypothesized and showed that in both <i>in vitro</i> and <i>in silico</i> models that cell junction targeting arose fo...
In order to improve the current success of nanomedicine, a better understanding of how nano-sized ma...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
The successful delivery of nanoparticles to solid tumors depends on their ability to pass through bl...
Endothelial leakiness or permeability directly determines the access of any bionanotechnology to the...
The endothelium presents a formidable barrier for cancer nanomedicine, as the intravenously introduc...
Nanomaterial-induced endothelial leakiness (NanoEL) is an interfacial phenomenon denoting the parace...
Abstract Nanomaterial‐induced endothelial leakiness (NanoEL) is an interfacial phenomenon denoting t...
Gold nanoparticles (Au-NPs) are being increasingly used as constituents in cosmetics, biosensors, bi...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
International audienceNanoparticles offer a promising medical tool for targeted drug delivery, for e...
The facile and modular functionalization of gold nanoparticles makes them versatile tools in nanomed...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
It is currently recognized that perpetual cross talk among key players in tumor microenvironment suc...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
In the research field of nanoparticles, many studies demonstrated a high impact of the shape, size a...
In order to improve the current success of nanomedicine, a better understanding of how nano-sized ma...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
The successful delivery of nanoparticles to solid tumors depends on their ability to pass through bl...
Endothelial leakiness or permeability directly determines the access of any bionanotechnology to the...
The endothelium presents a formidable barrier for cancer nanomedicine, as the intravenously introduc...
Nanomaterial-induced endothelial leakiness (NanoEL) is an interfacial phenomenon denoting the parace...
Abstract Nanomaterial‐induced endothelial leakiness (NanoEL) is an interfacial phenomenon denoting t...
Gold nanoparticles (Au-NPs) are being increasingly used as constituents in cosmetics, biosensors, bi...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
International audienceNanoparticles offer a promising medical tool for targeted drug delivery, for e...
The facile and modular functionalization of gold nanoparticles makes them versatile tools in nanomed...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
It is currently recognized that perpetual cross talk among key players in tumor microenvironment suc...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
In the research field of nanoparticles, many studies demonstrated a high impact of the shape, size a...
In order to improve the current success of nanomedicine, a better understanding of how nano-sized ma...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
The successful delivery of nanoparticles to solid tumors depends on their ability to pass through bl...