Damage in the Peripheral Nervous System (PNS) is related to numerous neurodegenerative diseases and has consequently drawn the attention of Tissue Engineering (TE), which is considered a promising alternative to already established methods such as surgery and autografts. TE focuses on the design, optimization, and use of scaffolds in vitro and in vivo. In this work, the authors used a novel scaffold geometry fabricated via Multiphoton Lithography (MPL), a commonly used fabrication method, for the mono- and co-cultures of glial Schwann (SW10) and neuronal Neuro-2a (N2a) cells. Both cell types have already been used for the study of various neurodegenerative diseases. However, their focus has been on only one of the cell types at a time, with...
Differentiated human neural stem cells were cultured in an inert three-dimensional (3D) scaffold and...
Traumatic injury to the nervous system induces functional deficits as a result of axonal destruction...
Biochemical and physical guidance cues are both pivotal for axonal guidance and nerve regeneration. ...
An advanced cell culture system has been developed that can be used to examine interactions between ...
Over the past 5 decades, there has been a drive to apply technology to enhance\ud neural regeneratio...
Cellular models of brain disease involve genetic modulation, geometric patterning, neurophysiologic ...
Conventional applications of transplant technology, applied to severe traumatic injuries of the nerv...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Adult central nervous system tissue does not retain the ability to regenerate and restore functional...
Unlike other tissue types, the nervous tissue extends to a wide and complex environment that provide...
The overall aim is to develop robust culture models that recreate the 3D environment of the CNS, the...
Understanding and controlling the interactions that occur between cells and engineered materials (i....
Understanding how neurodegenerative disorders develop is not only a key challenge for researchers bu...
Neuronal signal transduction and communication in vivo is based on highly complex and dynamic networ...
The complexity of the nervous system means it is difficult to explore the role of individual cell ty...
Differentiated human neural stem cells were cultured in an inert three-dimensional (3D) scaffold and...
Traumatic injury to the nervous system induces functional deficits as a result of axonal destruction...
Biochemical and physical guidance cues are both pivotal for axonal guidance and nerve regeneration. ...
An advanced cell culture system has been developed that can be used to examine interactions between ...
Over the past 5 decades, there has been a drive to apply technology to enhance\ud neural regeneratio...
Cellular models of brain disease involve genetic modulation, geometric patterning, neurophysiologic ...
Conventional applications of transplant technology, applied to severe traumatic injuries of the nerv...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Adult central nervous system tissue does not retain the ability to regenerate and restore functional...
Unlike other tissue types, the nervous tissue extends to a wide and complex environment that provide...
The overall aim is to develop robust culture models that recreate the 3D environment of the CNS, the...
Understanding and controlling the interactions that occur between cells and engineered materials (i....
Understanding how neurodegenerative disorders develop is not only a key challenge for researchers bu...
Neuronal signal transduction and communication in vivo is based on highly complex and dynamic networ...
The complexity of the nervous system means it is difficult to explore the role of individual cell ty...
Differentiated human neural stem cells were cultured in an inert three-dimensional (3D) scaffold and...
Traumatic injury to the nervous system induces functional deficits as a result of axonal destruction...
Biochemical and physical guidance cues are both pivotal for axonal guidance and nerve regeneration. ...