Collagen II and decellularized hyaline cartilage scaffolds derived from bovine trachea differentially promote chondrogenic differentiation of mesenchymal stem cells and decrease secretion of angiogenic factors. [PDF]
Flórez AM +5 more
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FGF2-Regulated Osteogenic Differentiation of Human Bone Marrow Stromal Cells. [PDF]
Yang X, Hatch NE, Ma PX.
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Osteogenic Potential of Osteolforte: Gene and Protein-Level Evaluation in Human Bone Marrow Stromal Cells. [PDF]
Kim DS +4 more
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Exploring the role of mitochondrial dysfunction-related genes in osteoporosis using weighted gene co-expression network analysis and machine learning. [PDF]
Zeng HB +7 more
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Decellularized Disc Hydrogels for hBMSCs tissue-specific differentiation and tissue regeneration
Tissue specificity, a key factor in the decellularized tissue matrix (DTM), has shown bioactive functionalities in tuning cell fate-e.g., the differentiation of mesenchymal stem cells. Notably, cell fate is also determined by the living microenvironment, including material composition and spatial characteristics.
Yizhong Peng, Xiangcheng Qing, Shuo Tian
exaly +4 more sources
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Polydopamine–Ag composite surface guides HBMSCs adhesion and proliferation
Biomedical Materials, 2021Abstract Human bone marrow mesenchymal stem cells (HBMSCs) are regarded as an important resource in the field of maxillofacial bone regeneration because of their favorable properties when compared with other stem cells. Hence, finding suitable materials that could extend the application of HBMSCs has become an emerging medical topic and ...
Yifeng Bian +6 more
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The effect of AKT in extracellular matrix stiffness induced osteogenic differentiation of hBMSCs
Cellular Signalling, 2022Extracellular matrix (ECM) stiffness is an important biophysical factor in human bone marrow mesenchymal stem cells (hBMSCs) differentiation. Although there is evidence that Yes-associated protein (YAP) plays an important role in ECM elasticity induced osteogenesis, but the regulatory mechanism and signaling pathways have not been distinctly uncovered.
Dian Jing, Zhihe Zhao
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Tissue engineered bone via templated hBMSCs mineralization and its application for bone repairing
Biomaterials Advances, 2022To develop bone implants, a novel tissue-engineered bone was constructed via templated human bone mesenchymal stem cells (hBMSCs) mineralization. Firstly, an osteoid-like template (Os-template) with aligned collagen fibers was prepared and followed by seeding hBMSCs to mimic the process of bone formation.
Xueshi Luo, Lihua Li
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Behavior of hBMSC on Nano Hydroxyapatite Surface
Advanced Materials Research, 2010The bioactivity of HA has been tested by its osteoconduction ability in vivo. Nano HA has higher specific surface area and was presumed to have high bioactivity. In this paper, nano needle HA was synthesized by the microemulsion method. The properties of such nano materials were analyzed by the XRD and TEM.
Gang Wu, Ying Jun Wang, Kun Wei
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