Nanomaterials design, synthesis, and characterization are ever-expanding approaches toward developing biodevices or neural interfaces to treat neurological diseases. The ability of nanomaterials features to tune neuronal networks' morphology or functionality is still under study. In this work, we unveil how interfacing mammalian brain cultured neurons and iron oxide nanowires' (NWs) orientation affect neuronal and glial densities and network activity. Iron oxide NWs were synthesized by electrodeposition, fixing the diameter to 100 nm and the length to 1 µm. Scanning electron microscopy, Raman, and contact angle measurements were performed to characterize the NWs' morphology, chemical composition, and hydrophilicity. Hippocampal cultures wer...
A new generation of in vitro human brain models is vital to surpass the limitations of current cell ...
Background: A promising approach to improve the performance of neural implants consists of adding na...
Understanding neural physiopathology requires advances in nanotechnology-based interfaces, engineere...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Nanomedicine is one of the most promising areas of nanotechnology, aspiring to use nanoparticles and...
\u3cp\u3eA new generation of in vitro human brain models is vital to surpass the limitations of curr...
Chronic neural interfaces that are able to record or stimulate neurons in the CNS are valuable instr...
Identifying the specific role of physical guidance cues in the growth of neurons is crucial for unde...
Despite the many potential therapeutic applications of iron oxide nanoparticle such as its use as an...
The generation of 3D networks of primary neurons is a big challenge in neuroscience. Here, a novel m...
AbstractWe have established long-term cultures of postnatal retinal cells on arrays of gallium phosp...
A new generation of in vitro human brain models is vital to surpass the limitations of current cell ...
Background: A promising approach to improve the performance of neural implants consists of adding na...
Understanding neural physiopathology requires advances in nanotechnology-based interfaces, engineere...
A new generation of in vitro human brain models is vital to surpass the limitations of current cell ...
A new generation of in vitro human brain models is vital to surpass the limitations of current cell ...
Background: A promising approach to improve the performance of neural implants consists of adding na...
Understanding neural physiopathology requires advances in nanotechnology-based interfaces, engineere...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Nanomedicine is one of the most promising areas of nanotechnology, aspiring to use nanoparticles and...
\u3cp\u3eA new generation of in vitro human brain models is vital to surpass the limitations of curr...
Chronic neural interfaces that are able to record or stimulate neurons in the CNS are valuable instr...
Identifying the specific role of physical guidance cues in the growth of neurons is crucial for unde...
Despite the many potential therapeutic applications of iron oxide nanoparticle such as its use as an...
The generation of 3D networks of primary neurons is a big challenge in neuroscience. Here, a novel m...
AbstractWe have established long-term cultures of postnatal retinal cells on arrays of gallium phosp...
A new generation of in vitro human brain models is vital to surpass the limitations of current cell ...
Background: A promising approach to improve the performance of neural implants consists of adding na...
Understanding neural physiopathology requires advances in nanotechnology-based interfaces, engineere...
A new generation of in vitro human brain models is vital to surpass the limitations of current cell ...
A new generation of in vitro human brain models is vital to surpass the limitations of current cell ...
Background: A promising approach to improve the performance of neural implants consists of adding na...
Understanding neural physiopathology requires advances in nanotechnology-based interfaces, engineere...