Lithium, a drug that has long been used to treat bipolar disorder and some other human pathogenesis, has recently been shown to stimulate neural precursor growth. However, the involved mechanism is not clear. Here, we show that lithium induces proliferation but not survival of neural precursor cells. Mechanistic studies suggest that the effect of lithium mainly involved activation of the transcription factor NF-AT and specific induction of a subset of proliferation-related genes. While NF-AT inactivation by specific inhibition of its upstream activator calcineurin antagonized the effect of lithium on the proliferation of neural precursor cells, specific inhibition of the NF-AT inhibitor GSK-3β, similar to lithium treatment, promoted neural ...
SummaryLithium inhibits inositol monophosphatase at therapeutically effective concentrations, and it...
AbstractDifferential display PCR was used to study the effects of lithium on gene expression. Four c...
This study was undertaken to elucidate the molecular mechanisms by which lithium regulates the devel...
Lithium, a drug that has long been used to treat bipolar disorder and some other human pathogenesis,...
There is evidence of increased systemic expression of active GSK3B in Alzheimer`s disease patients, ...
AbstractThe mechanism of lithium's therapeutic action remains obscure, hindering the discovery of sa...
Lithium, a drug used for the treatment of bipolar disorder, has been shown to affect different aspec...
Increasing evidence highlights bipolar disorder as being associated with impaired neurogenesis, cell...
Background: Bipolar disorder has been linked to alterations in the multifunctional enzyme glycogen s...
Lithium is the most potent mood stabilizer, mainly used in the treatment of bipolar disorder (BD) si...
Lithium is the mainstay for the treatment of bipolar disorder (BD) and inhibits glycogen synthase ki...
Lithium is widely used to treat bipolar disorder, but its mechanism of action in this disorder is un...
Lithium is a first-line treatment for bipolar disorder, where it acts as a mood-stabilizing agent. A...
Glycogen synthase kinase-3 (GSK-3) has been proposed as the main kinase able to aberrantly phosphory...
The objective of this study was to clarify the relationship between the effect and associated mechan...
SummaryLithium inhibits inositol monophosphatase at therapeutically effective concentrations, and it...
AbstractDifferential display PCR was used to study the effects of lithium on gene expression. Four c...
This study was undertaken to elucidate the molecular mechanisms by which lithium regulates the devel...
Lithium, a drug that has long been used to treat bipolar disorder and some other human pathogenesis,...
There is evidence of increased systemic expression of active GSK3B in Alzheimer`s disease patients, ...
AbstractThe mechanism of lithium's therapeutic action remains obscure, hindering the discovery of sa...
Lithium, a drug used for the treatment of bipolar disorder, has been shown to affect different aspec...
Increasing evidence highlights bipolar disorder as being associated with impaired neurogenesis, cell...
Background: Bipolar disorder has been linked to alterations in the multifunctional enzyme glycogen s...
Lithium is the most potent mood stabilizer, mainly used in the treatment of bipolar disorder (BD) si...
Lithium is the mainstay for the treatment of bipolar disorder (BD) and inhibits glycogen synthase ki...
Lithium is widely used to treat bipolar disorder, but its mechanism of action in this disorder is un...
Lithium is a first-line treatment for bipolar disorder, where it acts as a mood-stabilizing agent. A...
Glycogen synthase kinase-3 (GSK-3) has been proposed as the main kinase able to aberrantly phosphory...
The objective of this study was to clarify the relationship between the effect and associated mechan...
SummaryLithium inhibits inositol monophosphatase at therapeutically effective concentrations, and it...
AbstractDifferential display PCR was used to study the effects of lithium on gene expression. Four c...
This study was undertaken to elucidate the molecular mechanisms by which lithium regulates the devel...