Since nanoparticles (NPs) can translocate to the brain and impact the highly vulnerable central nervous system (CNS), novel in vitro tools for the assessment of NP-induced neurotoxicity are advocated. In this study, two types of CNS spheroids have been developed from human D384 astrocyte- and SH-SY5Y neuronal-like cells, and optimized in combination with standard assays (viability readout and cell morphology) to test neurotoxic effects caused by Fe3O4NPs, as NP-model, after short- (24–48 h; 1–100µg/ml) and long-term repeated exposure (30days; 0.1–25µg/ml). Short-term exposure of 3D-spheroids to Fe3O4NP induced cytotoxicity at 10 µg/mL in astrocytes and 25 µg/mL neurons. After long-term repeated dose...
Environmental or biomedical exposure to nanoparticles (NPs) can results in translocation and accumul...
Several in vitro studies have indicated the potential toxicity of NPs to various types of neuronal a...
Currently, there is a large interest in the labeling of neural stem cells (NSCs) with iron oxide nan...
Since nanoparticles (NPs) can translocate to the brain and impact the highly vulnerable central nerv...
Thousands of nanoproducts are already available on the market, raising concerns of extensive consume...
The rapid spread of nanotechnology raises serious questions about its impact on the population\u2019...
BackgroundThe blood brain barrier (BBB) is the bottleneck of brain-targeted drug development. Due to...
The wide employment of iron nanoparticles in environmental and occupational settings underlines thei...
Alternative methods and their use in planning and conducting toxicology experiments has become essen...
Metallic nanoparticles (NPs), as iron oxide NPs, accumulate in organs, cross the blood-brain barrier...
Alternative methods and their use in planning and conducting toxicology experiments have become esse...
The blood brain barrier (BBB) is the bottleneck of brain-targeted drug development. Due to their phy...
Human cell-based neural organoids are increasingly being used for investigations of neurotoxicity, a...
Nanoparticles (NPs) have been shown to accumulate in organs, cross the blood–brain barrier and place...
The aim of this study is to investigate neurotoxicity and gliotoxicity of nanoparticles to which hum...
Environmental or biomedical exposure to nanoparticles (NPs) can results in translocation and accumul...
Several in vitro studies have indicated the potential toxicity of NPs to various types of neuronal a...
Currently, there is a large interest in the labeling of neural stem cells (NSCs) with iron oxide nan...
Since nanoparticles (NPs) can translocate to the brain and impact the highly vulnerable central nerv...
Thousands of nanoproducts are already available on the market, raising concerns of extensive consume...
The rapid spread of nanotechnology raises serious questions about its impact on the population\u2019...
BackgroundThe blood brain barrier (BBB) is the bottleneck of brain-targeted drug development. Due to...
The wide employment of iron nanoparticles in environmental and occupational settings underlines thei...
Alternative methods and their use in planning and conducting toxicology experiments has become essen...
Metallic nanoparticles (NPs), as iron oxide NPs, accumulate in organs, cross the blood-brain barrier...
Alternative methods and their use in planning and conducting toxicology experiments have become esse...
The blood brain barrier (BBB) is the bottleneck of brain-targeted drug development. Due to their phy...
Human cell-based neural organoids are increasingly being used for investigations of neurotoxicity, a...
Nanoparticles (NPs) have been shown to accumulate in organs, cross the blood–brain barrier and place...
The aim of this study is to investigate neurotoxicity and gliotoxicity of nanoparticles to which hum...
Environmental or biomedical exposure to nanoparticles (NPs) can results in translocation and accumul...
Several in vitro studies have indicated the potential toxicity of NPs to various types of neuronal a...
Currently, there is a large interest in the labeling of neural stem cells (NSCs) with iron oxide nan...