Substrates for neuron culture and implantation are required to be both biocompatible and display surface compositions that support cell attachment, growth, differentiation, and neural activity. Laminin, a naturally occurring extracellular matrix protein is the most widely used substrate for neuron culture and fulfills some of these requirements, however, it is expensive, unstable (compared to synthetic materials), and prone to batch-to-batch variation. This study uses a high-throughput polymer screening approach to identify synthetic polymers that supports the in vitro culture of primary mouse cerebellar neurons. This allows the identification of materials that enable primary
Objectives: The selection of a good quality scaffold is an essential strategy for tissue engineering...
This thesis focuses on creating an alternative substrate to replace current exogenous material, whic...
<div><p></p><p>Neural stem cells (NSCs) are capable of self-renewal and can differentiate into neuro...
Substrates for neuron culture and implantation are required to be both biocompatible and display sur...
abstract: Due to the limitation of current pharmacological therapeutic strategies, stem cell therapi...
AbstractDue to the limitation of current pharmacological therapeutic strategies, stem cell therapies...
Producing therapeutic neural cell populations in vitro to treat neurodegenerative diseases is a key ...
International audienceCentral nervous system (CNS) lesions are a leading cause of death and disabili...
Long-term stable cell culture is a critical tool to better understand cell function. Most adherent c...
Biomimetic materials are designed to stimulate specific cellular responses at the molecular level. T...
The potential of stem cells to differentiate into a variety of subgroups of neural cells makes stem ...
3D cell culture formats more closely resemble tissue architecture complexity than 2D systems, which ...
Biomimetic materials are designed to stimulate specific cellular responses at the molecular level. T...
AbstractStem cells have a host of applications in regenerative medicine and basic research. However,...
Neurodegenerative diseases, characterized by traumatic or progressive loss of neurons in the brain a...
Objectives: The selection of a good quality scaffold is an essential strategy for tissue engineering...
This thesis focuses on creating an alternative substrate to replace current exogenous material, whic...
<div><p></p><p>Neural stem cells (NSCs) are capable of self-renewal and can differentiate into neuro...
Substrates for neuron culture and implantation are required to be both biocompatible and display sur...
abstract: Due to the limitation of current pharmacological therapeutic strategies, stem cell therapi...
AbstractDue to the limitation of current pharmacological therapeutic strategies, stem cell therapies...
Producing therapeutic neural cell populations in vitro to treat neurodegenerative diseases is a key ...
International audienceCentral nervous system (CNS) lesions are a leading cause of death and disabili...
Long-term stable cell culture is a critical tool to better understand cell function. Most adherent c...
Biomimetic materials are designed to stimulate specific cellular responses at the molecular level. T...
The potential of stem cells to differentiate into a variety of subgroups of neural cells makes stem ...
3D cell culture formats more closely resemble tissue architecture complexity than 2D systems, which ...
Biomimetic materials are designed to stimulate specific cellular responses at the molecular level. T...
AbstractStem cells have a host of applications in regenerative medicine and basic research. However,...
Neurodegenerative diseases, characterized by traumatic or progressive loss of neurons in the brain a...
Objectives: The selection of a good quality scaffold is an essential strategy for tissue engineering...
This thesis focuses on creating an alternative substrate to replace current exogenous material, whic...
<div><p></p><p>Neural stem cells (NSCs) are capable of self-renewal and can differentiate into neuro...