AbstractHuman neural stem cells (hNSCs) hold great promise for the treatment of neurological diseases. Considerable progress has been made to induce neural differentiation in the cell culture in vitro and upon transplantation in vivo [2] in order to explore restoration of damaged neuronal circuits. However, in vivo conventional strategies are limited to post mortem analysis. Here, we apply our developed first fate mapping platform to monitor neuronal differentiation in vivo by magnetic resonance imaging, bioluminescence imaging, and fluorescence imaging. Ferritin, Luciferase and GFP under neuronal-specific promoters for immature and mature neurons, respectively, were used to generate transgenic hNSCs. Differentiation-linked imaging reporter...
Human embryonic stem cells (hESCs) are a potential source of defined tissue for cell-based therapies...
The capacity for induced pluripotent stem (iPS) cells to be differentiated into a wide range of neur...
Human embryonic stem cells (hESCs) are a potential source of defined tissue for cell-based therapies...
AbstractHuman neural stem cells (hNSCs) hold great promise for the treatment of neurological disease...
<div><p>We generated transgenic human neural stem cells (hNSCs) stably expressing the reporter genes...
Understanding the individual timeline of stem cell differentiation in vivo is critical for evaluatin...
Understanding the individual timeline of stem cell differentiation in vivo is critical for evaluatin...
Human pluripotent stem cells have the capacity for directed differentiation into a wide variety of n...
Human pluripotent stem cells have the capacity for directed differentiation into a wide variety of n...
The capacity for induced pluripotent stem (iPS) cells to be differentiated into a wide range of neur...
Newborn neurons are generated throughout life in two neurogenic regions, the subventricular zone and...
Newborn neurons are generated throughout life in two neurogenic regions, the subventricular zone and...
<div><p>Newborn neurons are generated throughout life in two neurogenic regions, the subventricular ...
Newborn neurons are generated throughout life in two neurogenic regions, the subventricular zone and...
AbstractBackgroundStem cell therapies appear promising for treating certain neurodegenerative disord...
Human embryonic stem cells (hESCs) are a potential source of defined tissue for cell-based therapies...
The capacity for induced pluripotent stem (iPS) cells to be differentiated into a wide range of neur...
Human embryonic stem cells (hESCs) are a potential source of defined tissue for cell-based therapies...
AbstractHuman neural stem cells (hNSCs) hold great promise for the treatment of neurological disease...
<div><p>We generated transgenic human neural stem cells (hNSCs) stably expressing the reporter genes...
Understanding the individual timeline of stem cell differentiation in vivo is critical for evaluatin...
Understanding the individual timeline of stem cell differentiation in vivo is critical for evaluatin...
Human pluripotent stem cells have the capacity for directed differentiation into a wide variety of n...
Human pluripotent stem cells have the capacity for directed differentiation into a wide variety of n...
The capacity for induced pluripotent stem (iPS) cells to be differentiated into a wide range of neur...
Newborn neurons are generated throughout life in two neurogenic regions, the subventricular zone and...
Newborn neurons are generated throughout life in two neurogenic regions, the subventricular zone and...
<div><p>Newborn neurons are generated throughout life in two neurogenic regions, the subventricular ...
Newborn neurons are generated throughout life in two neurogenic regions, the subventricular zone and...
AbstractBackgroundStem cell therapies appear promising for treating certain neurodegenerative disord...
Human embryonic stem cells (hESCs) are a potential source of defined tissue for cell-based therapies...
The capacity for induced pluripotent stem (iPS) cells to be differentiated into a wide range of neur...
Human embryonic stem cells (hESCs) are a potential source of defined tissue for cell-based therapies...