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Valproate decreases inositol biosynthesis
Galit Shaltiel
, Alon Shamir
,
Joseph Shapiro
, Daobin Ding
, Emma Dalton
, Meir Bialer
, Adrian J. Harwood
,
Robert H. Belmaker
, Miriam L. Greenberg
,
Galila Agam
Psychiatry Division
Basic Sciences Divisions
Research output
:
Contribution to journal
›
Article
›
peer-review
108
Scopus citations
Overview
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Keyphrases
Inositol
100%
Valproate
100%
Phosphatidylinositol Synthase
54%
Lithium
36%
Rat Neurons
27%
INO1
18%
Rate-limiting Step
9%
N-methylation
9%
Bipolar Disorder
9%
Northern Blotting
9%
Gene Coding
9%
Phosphoinositide Signaling
9%
Gas Chromatography
9%
Propylene
9%
Growth Cone
9%
Inositol Monophosphatase
9%
Mouse Frontal Cortex
9%
Valpromide
9%
Carboxamide
9%
Cone Morphology
9%
Mood Stabilization
9%
Human Prefrontal Cortex
9%
Dictyostelium
9%
De-novo Synthesis
9%
Neuroscience
Anabolism
100%
Inositol
100%
Biosynthesis
100%
Myoinositol 1 Phosphate Synthase
54%
In Vivo
9%
Bipolar Disorder
9%
Phosphatidylinositide
9%
Prefrontal Cortex
9%
Frontal Lobe
9%
Psychoactive Drug
9%
Enzymes
9%
Carboxamide
9%
Growth Cone
9%
Gas Chromatography
9%
Pharmacology, Toxicology and Pharmaceutical Science
Inositol
100%
Sodium Valproate
100%
Myoinositol 1 Phosphate Synthase
54%
Rat
27%
Psychotropic Agent
9%
Carboxamide
9%
Phosphatidylinositide
9%
Bipolar Disorder
9%
Enzymes
9%
Dictyostelium
9%
Cyclopropane
9%
Valpromide
9%
Biochemistry, Genetics and Molecular Biology
Anabolism
100%
Inositol
100%
Synthase
37%
Inositol Phosphate
37%
Rat
18%
Enzyme
6%
Phosphoinositide
6%
Northern Blotting
6%
Inositol Monophosphatase
6%
Homogenate
6%
Growth Cone
6%
Cyclopropane
6%
Dictyostelium
6%
Gas Chromatography
6%