Graphene for Controlled and Accelerated Osteogenic Differentiation of Human Mesenchymal Stem Cells

Tapas R. Nayak(National University of Singapore), H.L. Andersen(National University of Singapore), Venkata S. Makam(National University of Singapore), Clement Khaw, Sukang Bae(Sungkyunkwan University), Xiangfan Xu(National University of Singapore), Pui Lai Rachel Ee(National University of Singapore), Jong‐Hyun Ahn, Byung Hee Hong(Sungkyunkwan University), Giorgia Pastorin(National University of Singapore), Barbaros Özyilmaz(National University of Singapore)
ACS Nano
April 29, 2011
Cited by 914Open Access
Full Text

Abstract

Current tissue engineering approaches combine different scaffold materials with living cells to provide biological substitutes that can repair and eventually improve tissue functions. Both natural and synthetic materials have been fabricated for transplantation of stem cells and their specific differentiation into muscles, bones, and cartilages. One of the key objectives for bone regeneration therapy to be successful is to direct stem cells' proliferation and to accelerate their differentiation in a controlled manner through the use of growth factors and osteogenic inducers. Here we show that graphene provides a promising biocompatible scaffold that does not hamper the proliferation of human mesenchymal stem cells (hMSCs) and accelerates their specific differentiation into bone cells. The differentiation rate is comparable to the one achieved with common growth factors, demonstrating graphene's potential for stem cell research.


Related Papers

No related papers found

Powered by citation graph analysis