TY - JOUR
T1 - Novel chondrogenic and chondroprotective effects of the natural compound harmine
AU - Hara, Emilio Satoshi
AU - Ono, Mitsuaki
AU - Kubota, Satoshi
AU - Sonoyama, Wataru
AU - Oida, Yasutaka
AU - Hattori, Takako
AU - Nishida, Takashi
AU - Furumatsu, Takayuki
AU - Ozaki, Toshifumi
AU - Takigawa, Masaharu
AU - Kuboki, Takuo
N1 - Funding Information:
This study was supported by the Grants-in-Aid for Scientific Research from Japan Society for the Promotion of Science (# 22249064 and # 19109008 ). The plasmid encoding the COL2α1 promoter utilized in the luciferase assay was received from Yoshihiko Yamada, NIDCR, NIH.
PY - 2013/2
Y1 - 2013/2
N2 - A significant number of natural compounds have been shown to regulate the behavior of the cells, in collaboration with cellular proteins. CCN2/connective tissue growth factor (CTGF) has been reported to have essential roles in cartilage development, chondrocyte proliferation and differentiation as well as regulation of the extracellular matrix metabolism. Previous studies demonstrated the capability of CCN2 to regenerate surgical defects in articular cartilage of rat knee. Also, transgenic mice over-expressing cartilage-specific CCN2 were shown to be more resistant to aging-related cartilage degradation. We hypothesized that small molecules that induce CCN2 in chondrocytes could be novel candidates to increase the resistance to aging-related cartilage degradation, or even to correct cartilage degenerative changes incurred in OA. Therefore, this study screened a compound library and identified the β-carboline alkaloid harmine as a novel inducer of CCN2 in human chondrocytic HCS-2/8 cells and osteoarthritic articular chondrocytes. Harmine increased the expression of the cartilage markers aggrecan and COL2α1, as well as that of the master regulator of chondrogenesis, SOX-9. Moreover, harmine notably induced chondrogenesis of prechondrocytic ATDC5 cells in micromass cultures. The chondroprotective effect of harmine was investigated under inflammatory condition by stimulation with TNFα, and harmine was shown to ameliorate TNFα-induced decrease in expression of CCN2 and cartilage markers. These findings uncover novel chondrogenic effects of harmine and indicate harmine as a potential drug for prevention and/or repair of cartilage degradation.
AB - A significant number of natural compounds have been shown to regulate the behavior of the cells, in collaboration with cellular proteins. CCN2/connective tissue growth factor (CTGF) has been reported to have essential roles in cartilage development, chondrocyte proliferation and differentiation as well as regulation of the extracellular matrix metabolism. Previous studies demonstrated the capability of CCN2 to regenerate surgical defects in articular cartilage of rat knee. Also, transgenic mice over-expressing cartilage-specific CCN2 were shown to be more resistant to aging-related cartilage degradation. We hypothesized that small molecules that induce CCN2 in chondrocytes could be novel candidates to increase the resistance to aging-related cartilage degradation, or even to correct cartilage degenerative changes incurred in OA. Therefore, this study screened a compound library and identified the β-carboline alkaloid harmine as a novel inducer of CCN2 in human chondrocytic HCS-2/8 cells and osteoarthritic articular chondrocytes. Harmine increased the expression of the cartilage markers aggrecan and COL2α1, as well as that of the master regulator of chondrogenesis, SOX-9. Moreover, harmine notably induced chondrogenesis of prechondrocytic ATDC5 cells in micromass cultures. The chondroprotective effect of harmine was investigated under inflammatory condition by stimulation with TNFα, and harmine was shown to ameliorate TNFα-induced decrease in expression of CCN2 and cartilage markers. These findings uncover novel chondrogenic effects of harmine and indicate harmine as a potential drug for prevention and/or repair of cartilage degradation.
KW - CCN2
KW - Cartilage regeneration
KW - Chondrocytes
KW - Harmine
KW - β-Carboline alkaloids
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U2 - 10.1016/j.biochi.2012.10.016
DO - 10.1016/j.biochi.2012.10.016
M3 - Article
C2 - 23116713
AN - SCOPUS:84872824778
SN - 0300-9084
VL - 95
SP - 374
EP - 381
JO - Biochimie
JF - Biochimie
IS - 2
ER -