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SAGE Publications, Journal of Biomaterials Applications, 1(31), p. 102-111, 2016

DOI: 10.1177/0885328216632444

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Poly ( -glutamic acid)/beta-TCP nanocomposites via in situ copolymerization: Preparation and characterization

Journal article published in 2016 by Xiu-Lin Shu, Qing-Shan Shi, Jin Feng, Yun-Hua Yang, Gang Zhou, Wen-Ru Li
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

A series biodegradable poly (γ-glutamic acid)/beta-tricalcium phosphate (γ-PGA/TCP) nanocomposites were prepared which were composed of poly-γ-glutamic acid polymerized in situ with β-tricalcium phosphate and physiochemically characterized as bone graft substitutes. The particle size via dynamic light scattering, the direct morphological characterization via transmission electron microscopy and field emission scanning electron microscope, which showed that γ-PGA and β-TCP were combined compactly at 80℃, and the γ-PGA/TCP nanocomposites had homogenous and nano-sized grains with narrow particle size distributions. The water uptake and retention abilities, in vitro degradation properties, cytotoxicity in the simulated medium, and protein release of these novel γ-PGA/TCP composites were investigated. Cell proliferation in composites was nearly twice than β-TCP when checked in vitro using MC3T3 cell line. We also envision the potential use of γ-PGA/TCP systems in bone growth factor or orthopedic drug delivery applications in future bone tissue engineering applications. These observations suggest that the γ-PGA/TCP are novel nanocomposites with great potential for application in the field of bone tissue engineering.