Apatite Formation on α-Tricalcium Phosphate/Poly(D,L-Lactide-Co-Glycolide) Nanocomposite

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Abstract:

In this study, a biocomposite comprising nanostructured α-tricalcium phosphate (α-TCP) in a poly(D,L-lactic-co-glycolic acid) (PLGA) matrix was fabricated by a modified solution evaporation method. As a potential temporary bone fixation and substitution material, its bioactivity was evaluated by its ability to form bone-like apatite layer in simulated body fluid (SBF). Owing to the increased surface area covered by the osteoconductive bioceramic of α-TCP, rapid apatite formation was observed. After 7 days of immersion, enhanced nucleation of apatite was observed on the nanocomposite. At day 14, dense lamellar-like apatite was formed on the nanocomposite whilst apatite nucleation had only just started to develop on the surface of pure PLGA. At the same time, a preliminary in-vitro cell culture study was conducted using human osteoblast-like (HOB) cells. A significant increase in cell number with culturing time was observed for the nanocomposite. After 9 days incubation, a confluent lamellar-like apatite layer was formed on the composite surface. This apatite layer was also shown beneath the proliferating HOB cells at Day 16.

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Periodical:

Key Engineering Materials (Volumes 361-363)

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459-462

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Online since:

November 2007

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[1] R. Murugan and S. Ramakrishna: Compos. Sci. Technol. Vol. 65 (2005), p.2385.

Google Scholar

[2] M.J. Karp, M.S. Shoichet and J.E. Davies: J. Biomed. Mater. Res. Vol. 64 (2003), p.388.

Google Scholar

[3] W.L. Murphy, D.H. Kohn and D.J. Mooney: J. Biomed. Mater. Res. Vol. 50 (2000), p.50.

Google Scholar

[4] H. Liu, E.B. Slamovich and T.J. Webster: J. Biomed. Mater. Res. Vol. 74A (2005), p.677.

Google Scholar

[5] X. Qu, W. Cui, F. Yang, C. Min, H. Shen, J. Bei and S. Wang: Biomater. Vol. 28 (2007), p.9.

Google Scholar

[6] Z. Yang, E.S. Thian, S.M. Best and R.E. Cameron: Key Eng. Mater. Vol. 330 (2007), p.511.

Google Scholar

[7] T. Kokobu and H Takadama: Biomater. Vol. 27 (2006), p.2907.

Google Scholar

[8] E.S. Thian, J. Huang, S.M. Best Z.H. Barber and W. Bonfield: J. Biomed. Mater. Res. Vol. 76B (2006), p.326.

Google Scholar

[9] T. Kokubo, S. Ito, Z.T. Huang, T. Hayashi, S. Sakka, T. Kitsugi and T. Yamamuro: J. Biomed. Mater. Res. Vol. 24 (1990), p.331.

DOI: 10.1002/jbm.820240306

Google Scholar