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Antiosteoporotic Effects and Proteomic Characterization of the Target and Mechanism of an Er-Xian Decoction on Osteoblastic UMR-106 and Osteoclasts Induced From RAW264.7.

Authors :
Zheng Zhu
Li-Ming Xue
Ting Han
Lei Jiao
Lu-Ping Qin
Yu-Shan Li
Han-Chen Zheng
Qiao-Yan Zhang
Source :
Molecules. Jul2010, Vol. 15 Issue 7, p4695-4710. 16p. 2 Color Photographs, 1 Chart, 3 Graphs.
Publication Year :
2010

Abstract

Er-Xian Decoction (EXD) has been used for the treatment of osteoporosis disorders, menopausal syndrome, and other aging diseases in the Chinese traditional healthcare system. However, the targets and mechanism of action have not been clarified. This study was designed to investigate the effects and possible target proteins of EXD on osteoblastic UMR-106 cells and osteoclasts induced from RAW264.7 cells using the proteomic analysis technique. We found that EXD at a concentration of 50-200 μg/mL significantly enhanced osteoblastic UMR-106 cell proliferation, alkaline phosphatase (ALP) activity and formation of bone nodules, and decreased tartrate-resistant acid phosphatase (TRAP) activity and the bone resorption action of osteoclasts induced from RAW 264.7 cells. In EXD-treated osteoblasts, there were increases in the expression of heat-shock protein 1, high mobility group protein (Hmgb1), acidic ribosomal phosphoprotein P0, histone 2, carbonyl reductase 1, ATP synthase, aldolase A, and Rho GDP dissociation inhibitor (GDI)-alpha; and reduction in the expression of carbonic anhydrase 3, prohibitin, hemiferrin, far upstream element (FUSE)-binding protein. In EXD-treated osteoclasts, there were increases in the expression of vimentin, protein disulfide isomerase associated 3 and alpha-fetoprotein; and reduction in the expression of calnexin. These results indicated that EXD modulates bone metabolism through regulation of osteoblastic proliferation, apoptosis, and cell activation, and osteoclastic protein folding and aggregation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
15
Issue :
7
Database :
Academic Search Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
67676414
Full Text :
https://doi.org/10.3390/molecules15074695