<div><p>The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanocarriers have been developed to help agents to cross this barrier, but they all have limitations, with regard to tissue-selectivity and their ability to cross the endothelium. This study investigated the potential for 4 nm coated gold nanoparticles to act as selective carriers across human brain endothelium and subsequently to enter astrocytes. The transfer rate of glucose-coated gold nanoparticles across primary human brain endothelium was at least three times faster than across non-brain endothelia. Movement of these nanoparticles occurred across the apical and basal plasma membranes via the cytosol with relatively little vesicular or...
The facile and modular functionalization of gold nanoparticles makes them versatile tools in nanomed...
Treatment of diseases that affect the CNS by gene therapy requires delivery of oligonucleotides to t...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
<p>Treatment of CNS disease is severly restricted because of the structure called the blood-brain ba...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
and other research outputs Glucose-coated gold nanoparticles transfer across hu-man brain endotheliu...
Aim: To identify the localization of glucose-coated gold nanoparticles within cells of the brain aft...
Glucose-coated gold nanoparticles (10 µm from the nearest microvessel during the experimental time c...
Gold nanoparticles with a core size of 2 nm covalently coated with glycans to maintain solubility, t...
<p>(a) Brain endothelial hCMEC/D3 cells and human primary brain endothelium (1-BEC) were compared wi...
The neurovascular unit (NVU) is a complex functional and anatomical structure composed of endothelia...
The aim of this study was to develop a three-dimensional (3D) model of the human blood-brain barrier...
The aim of this study was to develop a three-dimensional (3D) model of the human blood-brain barrier...
The facile and modular functionalization of gold nanoparticles makes them versatile tools in nanomed...
Treatment of diseases that affect the CNS by gene therapy requires delivery of oligonucleotides to t...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
<p>Treatment of CNS disease is severly restricted because of the structure called the blood-brain ba...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
and other research outputs Glucose-coated gold nanoparticles transfer across hu-man brain endotheliu...
Aim: To identify the localization of glucose-coated gold nanoparticles within cells of the brain aft...
Glucose-coated gold nanoparticles (10 µm from the nearest microvessel during the experimental time c...
Gold nanoparticles with a core size of 2 nm covalently coated with glycans to maintain solubility, t...
<p>(a) Brain endothelial hCMEC/D3 cells and human primary brain endothelium (1-BEC) were compared wi...
The neurovascular unit (NVU) is a complex functional and anatomical structure composed of endothelia...
The aim of this study was to develop a three-dimensional (3D) model of the human blood-brain barrier...
The aim of this study was to develop a three-dimensional (3D) model of the human blood-brain barrier...
The facile and modular functionalization of gold nanoparticles makes them versatile tools in nanomed...
Treatment of diseases that affect the CNS by gene therapy requires delivery of oligonucleotides to t...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...