Treatment of diseases that affect the CNS by gene therapy requires delivery of oligonucleotides to target cells within the brain. As the blood brain barrier prevents movement of large biomolecules, current approaches involve direct injection of the oligonucleotides, which is invasive and may have only a localised effect. The aim of this study was to investigate the potential of 2 nm galactose-coated gold nanoparticles (NP-Gal) as a delivery system of oligonucleotides across brain endothelium. DNA oligonucleotides of different types were attached to NP-Gal by the place exchange reaction and were characterised by EMSA (electrophoretic mobility shift assay). Several nanoparticle formulations were created, with single- or double-stranded (20nt...
Drugs delivery into the brain across the blood brain barrier (BBB) has always remained a challenging...
Drugs delivery into the brain across the blood brain barrier (BBB) has always remained a challenging...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
Nanoparticles with oligonucleotides bound to the outside or incorporated into the matrix can be used...
The treatment of brain disease is challenging due to the blood-brain barrier, a physiological struct...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
The facile and modular functionalization of gold nanoparticles makes them versatile tools in nanomed...
Aim: To identify the localization of glucose-coated gold nanoparticles within cells of the brain aft...
<div><p>The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Variou...
<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...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
Treatment of many CNS disorders, specifically neurodegenerative disorders are severely limited at pr...
Drugs delivery into the brain across the blood brain barrier (BBB) has always remained a challenging...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
Drugs delivery into the brain across the blood brain barrier (BBB) has always remained a challenging...
Drugs delivery into the brain across the blood brain barrier (BBB) has always remained a challenging...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
Nanoparticles with oligonucleotides bound to the outside or incorporated into the matrix can be used...
The treatment of brain disease is challenging due to the blood-brain barrier, a physiological struct...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
The facile and modular functionalization of gold nanoparticles makes them versatile tools in nanomed...
Aim: To identify the localization of glucose-coated gold nanoparticles within cells of the brain aft...
<div><p>The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Variou...
<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...
The blood-brain barrier prevents the entry of many therapeutic agents into the brain. Various nanoca...
Treatment of many CNS disorders, specifically neurodegenerative disorders are severely limited at pr...
Drugs delivery into the brain across the blood brain barrier (BBB) has always remained a challenging...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...
Drugs delivery into the brain across the blood brain barrier (BBB) has always remained a challenging...
Drugs delivery into the brain across the blood brain barrier (BBB) has always remained a challenging...
The selective entry of nanoparticles into target tissues is the key factor which determines their ti...