Cell therapy offers great promises in replacing the neurons lost due to neurodegenerative diseases or injuries. However, a key challenge is the cellular source for transplantation which is often limited by donor availability. Direct reprogramming provides an exciting avenue to generate specialized neuron subtypes in vitro, which have the potential to be used for autologous transplantation, as well as generation of patient-specific disease models in the lab for drug discovery and testing gene therapy. Here we present a detailed review on transcription factors that promote direct reprogramming of specific neuronal subtypes with particular focus on glutamatergic, GABAergic, dopaminergic, sensory and retinal neurons. We will discuss the develop...
Cell replacement therapies aim at reestablishment of neuronal circuits after brain injury, stroke or...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
In recent years, the need to derive sources of specialized cell types to be employed for cell replac...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
In the last years, the use of pluripotent stem cells in studies of human biology has grown exponenti...
Cell replacement therapies aim at reestablishment of neuronal circuits after brain injury, stroke or...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
In recent years, the need to derive sources of specialized cell types to be employed for cell replac...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
Cellular reprogramming technology holds great potential for tissue repair and regeneration to replac...
Human pluripotent stem cell (PSC) technology and direct somatic cell reprogramming have opened up a ...
In the last years, the use of pluripotent stem cells in studies of human biology has grown exponenti...
Cell replacement therapies aim at reestablishment of neuronal circuits after brain injury, stroke or...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...