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Stimulating effect of graphene oxide on myogenesis of C2C12 myoblasts on RGD peptide-decorated PLGA nanofiber matrices

Authors :
Yongcheol Shin
Yu Suk Choi
Jong Chul Park
Suck Won Hong
Bongju Kim
Jung Keun Hyun
Min Jeong Kim
Dong-Wook Han
Jong Ho Lee
Source :
JOURNAL OF BIOLOGICAL ENGINEERING(9), Journal of Biological Engineering
Publisher :
Springer Nature

Abstract

Background: In the field of biomedical engineering, many studies have focused on the possible applications of graphene and related nanomaterials due to their potential for use as scaffolds, coating materials and delivery carriers. On the other hand, electrospun nanofiber matrices composed of diverse biocompatible polymers have attracted tremendous attention for tissue engineering and regenerative medicine. However, their combination is intriguing and still challenging. Results: In the present study, we fabricated nanofiber matrices composed of M13 bacteriophage with RGD peptide displayed on its surface (RGD-M13 phage) and poly(lactic-co-glycolic acid, PLGA) and characterized their physicochemical properties. In addition, the effect of graphene oxide (GO) on the cellular behaviors of C2C12 myoblasts, which were cultured on PLGA decorated with RGD-M13 phage (RGD/PLGA) nanofiber matrices, was investigated. Our results revealed that the RGD/PLGA nanofiber matrices have suitable physicochemical properties as a tissue engineering scaffold and the growth of C2C12 myoblasts were significantly enhanced on the matrices. Moreover, the myogenic differentiation of C2C12 myoblasts was substantially stimulated when they were cultured on the RGD/PLGA matrices in the presence of GO. Conclusion: In conclusion, these findings propose that the combination of RGD/PLGA nanofiber matrices and GO can be used as a promising strategy for skeletal tissue engineering and regeneration.

Details

Language :
English
ISSN :
17541611
Volume :
9
Issue :
1
Database :
OpenAIRE
Journal :
Journal of Biological Engineering
Accession number :
edsair.doi.dedup.....ef379867d0c877724e3353f3f7da7278
Full Text :
https://doi.org/10.1186/s13036-015-0020-1