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Human mesenchymal stem cells hMSC

S. Neuss, et al.. Long-term survival and bipotent terminal differentiation of human mesenchymal stem cells (hMSC) in combination with a commercially available three-dimensional collagen scaffold. Cell Transplant. 17 (2008) 977-986. [Pg.240]

C.B. Kwok, F.C. Ho, C.W. Li, A.H.W. Ngan, D. Chan, B.P. Chan, Compression-induced alignment and elongation of human mesenchymal stem cell (hMSC) in 3D collagen constructs is collagen concentration dependent, J. Biomed. Mater. Res. lOlA (6) (2013) 1716-1725. [Pg.294]

Spherical particles were examined for their cellular uptake characteristics by FITC-based flow cytometry and in vitro MRI. In vivo MRI was recorded in a nude mouse model where Gd-Dye MSN-IabeIed human mesenchymal stem cells (HMSCs) were implanted into the basal ganglia of the mice and observed over a 14 day period by 1.5 T MRI Tj-weighted imaging. The cells remained visible as bright dots for that period with no evidence of cell migration. Furthermore, in related... [Pg.205]

Research studies have reported several shape-, size-, and contractility-dependent differentiation patterns influencing stem cell fate. For instance, in the presence of differentiating conditimis, the adhesion of an individual human mesenchymal stem cell (hMSC) to a larger geometrical... [Pg.1280]

Yamada, Y, Fujimoto, A., Ito, A., Yoshuni, R., Ueda, M., 2006a. Cluster analysis and gene expression profiles a cDNA microarray system-based comparison between human dental pulp stem cells (hDPSCs) and human mesenchymal stem cells (hMSCs) for tissue engineering ceU therapy. Biomaterials 27, 3766-3781. [Pg.82]

Kim JH, Park JS, Yang HN et al (2011) The use of biodegradable PLGA nanoparticles to mediate SOX9 gene delivery in human mesenchymal stem cells (hMSCs) and induce chondrogenesis. Biomaterials 32 268-278... [Pg.81]

Human mesenchymal stem cell (hMSC) attachment onto pSi patterns formed by localized irradiation Punzon-Quijoma etal. (2012)... [Pg.514]

Biodegradable CS/Gel/HAp composites were prepared by Zhao et al. [262], They obtained similar compositions to that of normal human bone as 3D biomimetic scaffolds by phase separation. By changing the solid content and the compositional variables, the authors controlled the porosities and densities of the scaffolds. Histological and immunohistochemical staining and SEM observations indicated that the osteoblasts attached to and proliferated on the scaffolds. The presence of HAp in the CS/Gel composite promoted initial adhesion of human mesenchymal stem cells (hMSC) and supported long-term growth in 3D porous CS/Gel/HAp scaffolds [263]. [Pg.171]

Lv et al. (2009, 2013) fabricated and optimized nHA/PLGA composite scaffolds for bone regeneration. The incorporation of nHA contributed to the bioactivity of the scaffolds for osteointegration. Under in vitro culture condition, human mesenchymal stem cells (hMSCs) expressed elevated expression of phenotypic markers such as alkaline phosphatase as well as mineral deposition on the composite scaffolds as compared to PLGA scaffolds. [Pg.7]


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