The possibility of nanoparticle (NP) uptake to the human central nervous system is a major concern. Recent reports showed that in animal models, nanoparticles (NPs) passed through the blood–brain barrier (BBB). For the safe use of NPs, it is imperative to evaluate the permeability of NPs through the BBB. Here we used a commercially available in vitro BBB model to evaluate the permeability of NPs for a rapid, easy and reproducible assay. The model is reconstructed by culturing both primary rat brain endothelial cells and pericytes to support the tight junctions of endothelial cells. We used the permeability coefficient (Papp) to determine the permeability of NPs. The size dependency results, using fluorescent silica NPs (30, 100, and 400 nm)...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...
Abstract: The possibility of nanoparticle (NP) uptake to the human central nervous system is a major...
Blood-brain barrier (BBB) represents a formidable barrier for many therapeutic drugs to enter the br...
Blood-brain barrier (BBB) represents a formidable barrier for many therapeutic drugs to enter the br...
Blood-brain barrier (BBB) represents a formidable barrier for many therapeutic drugs to enter the br...
Nanoparticle transport through the blood-brain barrier has received much attention of late, both fro...
Nanoparticle transport through the blood-brain barrier has received much attention of late, both fro...
Understanding nanoparticle interactions with the central nervous system, in particular the blood-bra...
\u3cp\u3eThe delivery of therapeutics to the brain is greatly hampered by the blood-brain barrier (B...
Understanding nanoparticle interactions with the central nervous system, in particular the blood-bra...
The delivery of therapeutics to the brain is greatly hampered by the blood-brain barrier (BBB). The ...
The delivery of therapeutics to the brain is greatly hampered by the blood-brain barrier (BBB). The ...
International audienceA cell culture model of the blood-brain barrier (BBB) consisting of a cocultur...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...
Abstract: The possibility of nanoparticle (NP) uptake to the human central nervous system is a major...
Blood-brain barrier (BBB) represents a formidable barrier for many therapeutic drugs to enter the br...
Blood-brain barrier (BBB) represents a formidable barrier for many therapeutic drugs to enter the br...
Blood-brain barrier (BBB) represents a formidable barrier for many therapeutic drugs to enter the br...
Nanoparticle transport through the blood-brain barrier has received much attention of late, both fro...
Nanoparticle transport through the blood-brain barrier has received much attention of late, both fro...
Understanding nanoparticle interactions with the central nervous system, in particular the blood-bra...
\u3cp\u3eThe delivery of therapeutics to the brain is greatly hampered by the blood-brain barrier (B...
Understanding nanoparticle interactions with the central nervous system, in particular the blood-bra...
The delivery of therapeutics to the brain is greatly hampered by the blood-brain barrier (BBB). The ...
The delivery of therapeutics to the brain is greatly hampered by the blood-brain barrier (BBB). The ...
International audienceA cell culture model of the blood-brain barrier (BBB) consisting of a cocultur...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...
Understanding nanoparticle interactions with the central nervous system, in particular the blood–bra...