4.5 Review

Graphene and its nanostructure derivatives for use in bone tissue engineering: Recent advances

Journal

JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A
Volume 104, Issue 5, Pages 1250-1275

Publisher

WILEY
DOI: 10.1002/jbm.a.35645

Keywords

graphene; bone tissue engineering; osteogenic growth factors; scaffolds; nanotechnology

Funding

  1. Drug Applied Research Center, Tabriz University of Medical Sciences
  2. Nano Technology Center, Urmia University

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Tissue engineering and regenerative medicine represent areas of increasing interest because of the major progress in cell and organ transplantation, as well as advances in materials science and engineering. Tissue-engineered bone constructs have the potential to alleviate the demand arising from the shortage of suitable autograft and allograft materials for augmenting bone healing. Graphene and its derivatives have attracted much interest for applications in bone tissue engineering. For this purpose, this review focuses on more recent advances in tissue engineering based on graphene-biomaterials from 2013 to May 2015. The purpose of this article was to give a general description of studies of nanostructured graphene derivatives for bone tissue engineering. In this review, we highlight how graphene family nanomaterials are being exploited for bone tissue engineering. Firstly, the main requirements for bone tissue engineering were discussed. Then, the mechanism by which graphene based materials promote new bone formation was explained, following which the current research status of main types of nanostructured scaffolds for bone tissue engineering was reviewed and discussed. In addition, graphene-based bioactive glass, as a potential drug/growth factor carrier, was reviewed which includes the composition-structure-drug delivery relationship and the functional effect on the tissue-stimulation properties. Also, the effect of structural and textural properties of graphene based materials on development of new biomaterials for production of bone implants and bone cements were discussed. Finally, the present review intends to provide the reader an overview of the current state of the graphene based biomaterials in bone tissue engineering, its limitations and hopes as well as the future research trends for this exciting field of science. (c) 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 104A: 1250-1275, 2016.

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