Degradation Modeling Research of Biodegradable Tissue Engineering Scaffold

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Although the degradation modeling of tissue engineering scaffold is in its initial step, it can direct the design, optimization of scaffold and help the application in medical case of illness. This paper analyzes the modeling methods and gives the speciality of every model which is put forward by researchers in China and abroad about the degradation of tissue engineering scaffold. These models are divided into micro scale, macro scale and two scale models based on the modeling scales. The recent research is belonging to single scale modeling. Some researchers abroad probed to two scale modeling. The future model is prospected in multi scale coupling macro, micro, and meta-macro model.

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642-651

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December 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Y. Tabata: Research focus, Vol. 6 (2001) No. 1, pp.483-487.

Google Scholar

[2] R. Langer, J.P. VACANTI: Science, Vol. 260 (1993) No. 14, pp.920-927.

Google Scholar

[3] C. Liu, Z. Xia and J.T. Czernuszka: Chemical Engineering Research and Design, Vol. 85 (2007) No. A7, pp.1051-1064.

Google Scholar

[4] K. Kasuya, K. Takagi and S. Ishiwatari, et al: Polym. Degrd. Stab, Vol. 59 (1998) No. 1-3, pp.327-332.

Google Scholar

[5] G.L. Siparsky, K.J. Voorhees and F. Miao: Journal of Environmental Polymer Degradation, Vol. 6 (1998) No. 1, pp.31-41.

Google Scholar

[6] A.C. Albertsson, O. Ljungquist: J. Macromol. Sci. Chem, Vol. A25 (1988) No. 4, pp.467-498.

Google Scholar

[7] A.C. Albertsson, O. Ljungquist: ActaPolym, Vol. 36 (1988) No. 1-2, pp.95-104.

Google Scholar

[8] A.C. Albertsson, O. Ljungquis: J Macromol. Sci. Chem, Vol. A23 (1986) No. 3, pp.411-422.

Google Scholar

[9] X.H. Zong, Z.G. Wang, B.S. Hsiao, B. Chu, J.J. Zhou and D.D. Jamiolkowski, et al: Macromolecules, Vol. 32 (1999) No. 24, pp.8107-8114.

Google Scholar

[10] H. Tsuji, H. Muramatsu: Blends of aliphatic polyesters: Polymer Degradation and Stability, Vol. 71 (2001), No. 4, pp.03-413.

DOI: 10.1016/s0141-3910(00)00192-0

Google Scholar

[11] H. Tsuji, Y. Ikada: Polymer Degradation and Stability, Vol. 67 (2000) No. 1, pp.179-189.

Google Scholar

[12] I. Grizzi, H. Garreau, S. Li and M. Vert: Biomaterials, Vol. 16 (1995) No. 4, pp.305-311.

Google Scholar

[13] S. N. Rothstein, W.J. Federspiel and S.R. Little: Biomaterials, Vol. 30 (2009) No. 8, p.1657–1664.

Google Scholar

[14] J. Siepmann, K. Elkharraz and F. Siepmann, et al: Biomacromolecules, Vol. 6 (2005) No. 4, p.2312–2319.

Google Scholar

[15] Y. Wang, J.Z. Pan and X.X. Han, et al: Biomaterials, Vol. 29 (2008) No. 23, pp.3393-3401.

Google Scholar

[16] X.X. Han, J.Z. Pan: Biomaterials, Vol. 30 (2009) No. 3, pp.423-430.

Google Scholar

[17] A. Go¨ pferich, R. Langer: J. Controlled Release, Vol. 33 (1995) No. 1, p.55–69.

Google Scholar

[18] J. Siepmann, N. Faisant and J.P. Benoit: Pharm. Res. Vol. 19 (2002) No12, pp.1885-1893.

Google Scholar

[19] J. Siepmann, F. Siepmann and A.T. Florence: International Journal of Pharmaceutics, Vol. 314 (2006) No2, p.101–119.

Google Scholar

[20] K. Zygourakis, P.A. Markenscoff: Biomaterials, Vol. 17 (1996) No. 2, p.125–135.

Google Scholar

[21] N. Bertrand, G. Leclair and P. Hildgen: I.J. Pharmaceutics, Vol. 343 (2007) No. 1-2, pp.196-207.

Google Scholar

[22] Y. Mohammadi, E. Jabbari: Macromal. Theory. Simul., Vol. 15 (2006) No9, p.643–653.

Google Scholar

[23] C. Guo, X.B. Sheng, C.L. Chu, et al: Materials Science and Engineering C, Vol. 29 (2009) No. 6, p.1950–(1958).

Google Scholar

[24] Y.H. Chen, S.W. Zhou, Q. L: Acta Biomaterialia, Vol. 7 (2011) No. 3, pp.1140-1149.

Google Scholar

[25] J.A. Herrera, J.M. Aznar and M. Doblare: Acta Biomaterialia, Vol. 5 (2009) No. 1, pp.219-229.

Google Scholar

[26] X.X. Han, J.Z. Pan: Acta Biomaterialia, Vol. 7 (2011) No. 2, pp.538-547.

Google Scholar

[27] R.X. Yu, H.L. Chen and T.Y. Chen: Journal of System Simulation, Vol. 19 (2007) No. 1, pp.183-186.

Google Scholar

[28] R.X. Yu, T.N. Chen and X.Y. Zhou: Simulation Modelling Practice and Theory, Vol. 16 (2008) No. 1, pp.15-25.

Google Scholar

[29] X.P. Wang, T.N. Chen: Polymer Materials Science and Engineering, Vol. 28 (2012) No. 2, pp.174-178.

Google Scholar

[30] J. Yi: Computer simulation of PLA degradation [D]. MS., University of Zhe Jiang, China (2008).

Google Scholar

[31] C. Guo, X.B. Sheng and C.L. Chu, et al: Materials Science and Engineering: C, Vol. 29 (2009) No. 6, p.1950–(1958).

Google Scholar

[32] J.B. Xu, Y.F. Liu and X.F. Xian: Bulletin of Science and Technology, Vol. 28 (2012) No. 7, pp.51-54.

Google Scholar

[33] T.H. Zhang, J.Z. Pan, R.W. Xin and Y. Zhang: Polymer Materials Science and Engineering, Vol. 27 (2011) No12, pp.167-171.

Google Scholar

[34] T.H. Zhang, L.W. Li, R.W. Xin and B.R. Yang: 2010 International Conference of Information Software Engineering (Hangzhou, China, December 4-6, 2010), Vol. 10, pp.7271-7274.

Google Scholar

[35] T.H. Zhang, Y. Zhang, B. Chen: Journal of Jiangsu University (Natural Science Edtion), Vol. 33 (2012) No. 3, pp.305-309.

Google Scholar