Icariin promotes self-renewal of neural stem cells: an involvement of extracellular regulated kinase signaling pathway.
- Author:
Jian-hua HUANG
1
;
Wai-jiao CAI
;
Xin-min ZHANG
;
Zi-yin SHEN
Author Information
- Publication Type:Journal Article
- MeSH: Animals; Cell Aggregation; drug effects; genetics; Cell Differentiation; drug effects; genetics; Cell Proliferation; drug effects; Cell Survival; drug effects; genetics; Deoxyuridine; analogs & derivatives; metabolism; Extracellular Signal-Regulated MAP Kinases; metabolism; Female; Flavonoids; pharmacology; Gene Expression Regulation; drug effects; MAP Kinase Signaling System; drug effects; genetics; Mice; Neural Stem Cells; cytology; drug effects; enzymology
- From: Chinese journal of integrative medicine 2014;20(2):107-115
- CountryChina
- Language:English
-
Abstract:
OBJECTIVETo investigate the effects and underlying molecular mechanisms of icariin (ICA) on self-renewal and differentiation of neural stem cells (NSCs).
METHODSNSCs were derived from forebrains of mice embryos by mechanical dissociation into single cell suspension. The self-renewal of NSCs was measured by neurosphere formation assay. The proliferation of NSCs was detected by water-soluble tetrazolium (WST) and 5-ethynyl-2'-deoxyuridine (EdU) incorporation assay. Protein expression of neuron-specific marker tubulin-βIII(TuJ1) and astrocyte-specific marker glial fibrillary acidic protein (GFAP) were measured by immunofluorescence and Western blotting. Using microarray, the differentially expressed genes (DEGs) were screened between NSCs with or without ICA treatment. The signaling pathways enriched by these DEGs and their role in mediating effects of ICA were analyzed.
RESULTSICA significantly promoted neurosphere formation of NSCs cultured in growth protocol in a dose-dependent manner and achieved the maximum effects at 100 nmol/L. ICA also increased optical absorbance value and EdU incorporation into nuclei of NSCs. ICA had no significant effects on the percentage of TuJ1 or GFAP-positive cells, and TuJ1 or GFAP protein expression in NSCs cultured in differentiation protocol. A total of 478 genes were found to be differentially regulated. Among signaling pathways significantly enriched by DEGs, mitogen activated protein kinase (MAPK) pathway was of interest. Blockade of extracellular signal-regulated kinase (ERK)/MAPK, other than p38/MAPK subfamily pathway partially abolished effects of ICA on neurosphere formation and EdU incorporation of NSCs.
CONCLUSIONICA can promote the selfrenewal of NSCs at least partially through ERK/MAPK signaling pathway.