The ability of the adult mammalian brain to compensate for neuronal loss caused by injury or disease is very limited. Transplantation aims to replace lost neurons, but the extent to which new neurons can integrate into existing circuits is unknown. Here, using chronic in vivo two-photon imaging, we show that embryonic neurons transplanted into the visual cortex of adult mice mature into bona fide pyramidal cells with selective pruning of basal dendrites, achieving adult-like densities of dendritic spines and axonal boutons within 4-8 weeks. Monosynaptic tracing experiments reveal that grafted neurons receive area-specific, afferent inputs matching those of pyramidal neurons in the normal visual cortex, including topographically organized ge...
Recent progress in cortical stem cell transplantation has demonstrated its potential to repair the b...
peer reviewedThe transplantation of pluripotent stem-cell-derived neurons constitutes a promising av...
Several neurodegenerative diseases cause loss of cortical neurons, leading to sensory, motor, and co...
The ability of the adult mammalian brain to compensate for neuronal loss caused by injury or disease...
The ability of the adult mammalian brain to compensate for neuronal loss caused by injury or disease...
SummaryPluripotent stem-cell-derived neurons constitute an attractive source for replacement therapi...
Pluripotent stem-cell-derived neurons constitute an attractive source for replacement therapies, but...
The transplantation of pluripotent stem-cell-derived neurons constitutes a promising avenue for the ...
Pluripotent stem-cell-derived neurons constitute an attractive source for replacement therapies, but...
Transplantation of embryonic or stem cell derived neurons has been proposed as a potential therapy f...
Glial precursor transplantation provides a potential therapy for brain disorders. Before its clinica...
International audienceInjury to the human central nervous system can lead to devastating consequence...
In vitro expanded neural stem/progenitor cells can undergo region-specific differentiation after tra...
Recent progress in cortical stem cell transplantation has demonstrated its potential to repair the b...
peer reviewedThe transplantation of pluripotent stem-cell-derived neurons constitutes a promising av...
Several neurodegenerative diseases cause loss of cortical neurons, leading to sensory, motor, and co...
The ability of the adult mammalian brain to compensate for neuronal loss caused by injury or disease...
The ability of the adult mammalian brain to compensate for neuronal loss caused by injury or disease...
SummaryPluripotent stem-cell-derived neurons constitute an attractive source for replacement therapi...
Pluripotent stem-cell-derived neurons constitute an attractive source for replacement therapies, but...
The transplantation of pluripotent stem-cell-derived neurons constitutes a promising avenue for the ...
Pluripotent stem-cell-derived neurons constitute an attractive source for replacement therapies, but...
Transplantation of embryonic or stem cell derived neurons has been proposed as a potential therapy f...
Glial precursor transplantation provides a potential therapy for brain disorders. Before its clinica...
International audienceInjury to the human central nervous system can lead to devastating consequence...
In vitro expanded neural stem/progenitor cells can undergo region-specific differentiation after tra...
Recent progress in cortical stem cell transplantation has demonstrated its potential to repair the b...
peer reviewedThe transplantation of pluripotent stem-cell-derived neurons constitutes a promising av...
Several neurodegenerative diseases cause loss of cortical neurons, leading to sensory, motor, and co...