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Stem Cells, ISSN 1066-5099, 10/2013, Volume 31, Issue 10, pp. 2183 - 2192
Journal Article
Biomedicine & Pharmacotherapy, ISSN 0753-3322, 07/2019, Volume 115, pp. 108891 - 108891
Accumulating evidence has indicated the vital roles of long noncoding RNA (lncRNA) in the epithelial ovarian cancer (EOC). However, the function of lncRNA... 
miR-466 | CREB1 | HAS2-AS1 | Epithelial ovarian cancer | RUNX2
Journal Article
by Li, XQ and Lu, JT and Tan, CC and Wang, QS and Feng, YM
CANCER LETTERS, ISSN 0304-3835, 09/2016, Volume 380, Issue 1, pp. 78 - 86
Runt-related transcription factor 2 (RUNX2) is regarded as an important contributor to breast cancer bone metastasis. However, previous studies did not provide... 
SURVIVAL | TRANSCRIPTION FACTOR RUNX2 | MICROMETASTASIS | Integrin alpha 5 | Breast cancer | TUMOR-CELLS | RUNX2 | BETA | Bone metastasis | INVASION | ONCOLOGY | THERAPEUTIC TARGET | DISEASE | GENE-EXPRESSION | MOTILITY
Journal Article
Cells, ISSN 2073-4409, 07/2019, Volume 8, Issue 7, p. 742
Physical exercise is known to promote beneficial effects on overall health, counteracting risks related to degenerative diseases. MicroRNAs (miRNAs), short... 
miRNAs | physical exercise | PPARG2 | RUNX2
Journal Article
Journal of Central South University (Medical Sciences), ISSN 1672-7347, 12/2016, Volume 41, Issue 12, pp. 1285 - 1290
Journal Article
Journal of Functional Foods, ISSN 1756-4646, 02/2019, Volume 53, pp. 259 - 265
Phosvitin and its hydrolysate were reported to show antioxidant, anti-inflammation and antimicrobial activities. Given the critical role of inflammation on... 
Inflammation | Phosvitin | Signaling pathway | Differentiation | RUNX2 | MC3T3-E1
Journal Article
Blood, ISSN 0006-4971, 2015, Volume 125, Issue 23, pp. 3598 - 3608
Journal Article
Chemico-Biological Interactions, ISSN 0009-2797, 09/2019, Volume 310, pp. 108750 - 108750
Osteoporosis is a major health concern occurring to the aging adult population across the globe. Currently, there is an increasing demand for treatment of... 
Heraclenin | Bael | Cytotoxicity | Bone | Osteogenesis | Runx2 | Index Medicus
Journal Article
Chemico-Biological Interactions, ISSN 0009-2797, 09/2019, Volume 310, pp. 108748 - 108748
Fracture healing is a very important process after fracture. Tanshinone IIA (Tan IIA) has been reported to possess beneficial impact on osteoblasts growth. Our... 
Tanshinone IIA | Fracture healing | miR-424 | Osx | JNK | Runx2 | Index Medicus
Journal Article
11/2013
Tissue engineering and ex vivo gene therapy can be used synergically as tool to regenerate bone, which overcome the problems of currently available bone... 
0541 | VEGF | Osterix | Mesenchymal stromal cells | Osteogenic | Ex vivo gene therapy | BMP-2 | HUCPVCs | Runx2
Dissertation
Oncotarget, ISSN 1949-2553, 2017, Volume 8, Issue 53, pp. 91530 - 91541
MicroRNA-218 (miR-218) has been implicated in the development and progression of multiple cancers. We investigated the role of miR-218 in ovarian cancer... 
Proliferation | Invasion | RUNX2 | MiR-218 | Ovarian cancer | TRANSCRIPTION FACTOR RUNX2 | proliferation | ovarian cancer | DOWN-REGULATION | CELL BIOLOGY | REGULATOR | invasion | CISPLATIN | DIFFERENTIATION | TUMOR-GROWTH | EXPRESSION | CARCINOMA | PROGRESSION
Journal Article
Journal of Oral Science, ISSN 1343-4934, 2019, Volume 61, Issue 1, pp. 25 - 29
High-magnitude mechanical strain inhibits bone nodule formation by reducing expression of bone morphogenetic protein-2 (BMP-2), Runt-related transcription... 
PGE2 | mechanical strain | osteoblast | bone-nodule | Runx2
Journal Article
American Journal of Translational Research, ISSN 1943-8141, 2016, Volume 8, Issue 3, pp. 1482 - 1491
MircroRNA-217 (miR-217) has been showed to involve in the initiation and development of human cancers, and is recognize as a tumor suppressor miRNA in several... 
Proliferation | Glioma | MiR-217 | Invasion | Runx2
Journal Article
Journal of Cellular Biochemistry, ISSN 0730-2312, 07/2018, Volume 119, Issue 7, pp. 5175 - 5185
miR‐29b was significantly increased during osteoblastic differentiation of hAVICs. The osteoblastic differentiation of hAVICs was significantly inhibited by... 
valvular calcification | miR‐29b | wnt/β‐catenin signaling | calcific aortic valve disease | Runx2/Smad3/TGF‐β3 signaling | miR-29b | Runx2/Smad3/TGF-β3 signaling | wnt/β-catenin signaling | Transforming Growth Factor beta3 - genetics | Humans | Middle Aged | Male | MicroRNAs - metabolism | Smad3 Protein - metabolism | Transforming Growth Factor beta3 - metabolism | Wnt3 Protein - genetics | Aortic Valve - pathology | Cell Differentiation - genetics | Smad3 Protein - genetics | Aged, 80 and over | Female | Wnt3 Protein - metabolism | Cell Differentiation - physiology | Cell Line | Aortic Valve Stenosis | Signal Transduction - genetics | Aortic Valve - cytology | beta Catenin - metabolism | beta Catenin - genetics | Calcinosis | Signal Transduction - physiology | Aged | MicroRNAs - genetics | Calcification (ectopic) | Wnt protein | Calcium | Differentiation (biology) | Interstitial cells | Smad3 protein | mRNA | Kinases | Osteoblasts | Alizarin | Western blotting | Proteins | Biomedical materials | Mineralization | Aorta | Biocompatibility | Inhibition | Bioinformatics | Catenin | Deposition | Cbfa-1 protein | Markers | MiRNA | Molecular chains | Nodules | Signaling | Valve leaflets | Osteoblastogenesis | Calcification | Immunofluorescence | Aortic valve | Index Medicus | TGF‐β3 signaling | Smad3 | β‐catenin signaling | wnt | Runx2
Journal Article
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