4.7 Article

Cellular behaviours of bone marrow-derived mesenchymal stem cells towards pristine graphene oxide nanosheets

期刊

CELL PROLIFERATION
卷 50, 期 5, 页码 -

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WILEY
DOI: 10.1111/cpr.12367

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资金

  1. National Natural Science Foundation of China [81472526]
  2. Guangdong Science and Technology Project [2016A020216007]
  3. Natural Science Foundation of Guangdong Province [2014A030313126]

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ObjectivesGraphene oxide (GO), the derivative of graphene with unique properties, has attracted much attention for applications in dental implants. The aim of this study was, by two biomimetic cell culture methods, to investigate the quantitative relationship between the concentration of pristine GO nanosheets and their cellular behaviours towards bone marrow-derived mesenchymal stem cells (BMSCs). Materials and methodsThe cells were firstly characterized according to their morphology, self-renewal capabilities and multipotency. Subsequently, adhesion density, proliferation, alkaline phosphatase activity and mineralization of BMSCs treated with various concentrations of GO were analysed. In addition, osteogenic-related proteins were measured for further verification of the GO-induced osteogenic differentiation. ResultsPristine GO nanosheets inhibited the proliferation of BMSCs at a high concentration of 10g/mL during the first 3days with two seeding methods and facilitated proliferation of BMSCs at a low concentration of 0.1g/mL after 5days with a sequential-seeding method compared to a co-seeding method. Analogously, osteogenic differentiation was promoted when BMSCs were treated with 0.1g/mL of GO. Both the proliferation and differentiation showed concentration-dependent behaviour. Interestingly, Wnt/-catenin signalling pathway appeared to be involved in osteogenic differentiation induced by pristine GO nanosheets. ConclusionsPristine GO nanosheets at a concentration of 0.1g/mL provide benefits to promote BMSCs proliferation and osteogenesis under a sequential-seeding method, contributing to the use of GO for dental implantation.

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