The concerted action of ion channels and pumps establishing a resting membrane potential has been most thoroughly studied in the context of excitable cells, most notably neurons, but emerging evidences indicate that they are also involved in controlling proliferation and differentiation of nonexcitable somatic stem cells. The importance of understanding stem cell contribution to tissue formation during embryonic development, adult homeostasis, and regeneration in disease has prompted many groups to study and manipulate the membrane potential of stem cells in a variety of systems. In this paper we aimed at summarizing the current knowledge on the role of ion channels and pumps in the context of mammalian corticogenesis with particular emphas...
In the developing nervous system, neural stem cells are polarized and maintain an apical domain faci...
During corticogenesis, ventricular zone progenitors sequentially generate distinct subtypes of neuro...
Bioelectrical signals generated by ion channels play crucial roles in excitation genesis and impulse...
The concerted action of ion channels and pumps establishing a resting membrane potential has been mo...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Background Distinguishing human neural stem/progenitor cell (huNSPC) populations that will predomina...
Elucidation of the machinery of adult neurogenesis is indispensable for the treatment of neurodegene...
Neural stem and progenitor cells (NSPCs) are heterogeneous populations of self-renewing stem cells&n...
BackgroundDistinguishing human neural stem/progenitor cell (huNSPC) populations that will predominan...
Distinguishing human neural stem/progenitor cell (huNSPC) populations that will predominantly genera...
Summary: Understanding the cellular properties controlling neural stem and progenitor cell (NSPC) fa...
A population of mouse embryonic stem (ES)-derived neural stem cells (named NS cells) that exhibits t...
Adult somatic stem cells in various organs maintain homeostatic tissue regeneration and enhance plas...
Abstract Background Neural stem cells (NSCs) are powerful research tools for the design and discover...
grantor: University of TorontoNeural stem cells are self-renewing precursor cells that hav...
In the developing nervous system, neural stem cells are polarized and maintain an apical domain faci...
During corticogenesis, ventricular zone progenitors sequentially generate distinct subtypes of neuro...
Bioelectrical signals generated by ion channels play crucial roles in excitation genesis and impulse...
The concerted action of ion channels and pumps establishing a resting membrane potential has been mo...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Background Distinguishing human neural stem/progenitor cell (huNSPC) populations that will predomina...
Elucidation of the machinery of adult neurogenesis is indispensable for the treatment of neurodegene...
Neural stem and progenitor cells (NSPCs) are heterogeneous populations of self-renewing stem cells&n...
BackgroundDistinguishing human neural stem/progenitor cell (huNSPC) populations that will predominan...
Distinguishing human neural stem/progenitor cell (huNSPC) populations that will predominantly genera...
Summary: Understanding the cellular properties controlling neural stem and progenitor cell (NSPC) fa...
A population of mouse embryonic stem (ES)-derived neural stem cells (named NS cells) that exhibits t...
Adult somatic stem cells in various organs maintain homeostatic tissue regeneration and enhance plas...
Abstract Background Neural stem cells (NSCs) are powerful research tools for the design and discover...
grantor: University of TorontoNeural stem cells are self-renewing precursor cells that hav...
In the developing nervous system, neural stem cells are polarized and maintain an apical domain faci...
During corticogenesis, ventricular zone progenitors sequentially generate distinct subtypes of neuro...
Bioelectrical signals generated by ion channels play crucial roles in excitation genesis and impulse...