Research Progress on Tissue Engineering of Neural Stem Cells

Article Preview

Abstract:

Neural stem cells (NSCs), as therapeutic agents, play the key role in the treatment of central nervous system (CNS) disorders. It is a researching tendency for promote proliferation and differentiation of neural stem cells by using tissue engineering. It is discovered that joint use neural stem cells and NSCs-seeded scaffold may increase the cell survival state and better control cellular microenvironment. We find suitable material include natural biological materials, synthetic materials, compound materials, bio-derived materials and 3D-materials of neural stem cells tissue engineering by analyzing and summing up of the research which combine tissue engineering with NSCs transplant in past several years. It hold out a hope of the possibility of utilizing the treatment of neural stem cells transplantation with tissue engineering, and there has been a great quantity of achievements on the research of it to treat CNS disorders by promote proliferation and differentiate.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 535-537)

Pages:

1104-1107

Citation:

Online since:

June 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] McKay R. Science vol. 276(1997), pp.66-71.

Google Scholar

[2] Dae-Yul Kim, Sung-Hye Park, Si-Uk Lee, et al. Neuroscience Research vol. 58(2007), pp.164-175.

Google Scholar

[3] Teng H,Zhang ZG.Wang L, el a1. J Cereb Blood Flow Metab vol. 28(2008), pp.764-771.

Google Scholar

[4] Heiko Wurdak, Shoutian Zhu, Kyung Hoon Min, et al. PNAS vol. 107(2010), pp.16542-16547.

Google Scholar

[5] Lunyak VV, Rosenfeld MG. Hum Mol Genet vol. 17(2008), pp.28-36.

Google Scholar

[6] Piccini P, et al. Brain vol. 128(2005), p.2977–2986.

Google Scholar

[7] Lepore, A. C.; Neuhuber, B.; Connors, T. M.et al. 287-304.

Google Scholar

[8] Kim, D. E.; Tsuji, K.; Kim, Y. R.et al. Radiology vol. 241(2006), p.822–830.

Google Scholar

[9] Stephanie M. Willerth, Shelly E. Sakiyama-Elbert. Adv Drug Deliv Rev vol. 59(2007), p.325–338.

Google Scholar

[10] Bianco P, Robey PG. Nature vol. 414(2001), pp.118-121.

Google Scholar

[11] del Zoppo G. J. Journal of Internal Medicine vol. 276(2010), pp.156-171.

Google Scholar

[12] Yanhong Cui, Mubin Wang, Jing Chen. Acta anatomica sinica vol. 41(2010), pp.41-47.

Google Scholar

[13] Brown RA. Tissue Engineering vol. 11(2005), pp.1611-1617.

Google Scholar

[14] Tadashi Nakaji-Hirabayashi, Koichi Kato, Hiroo Iwata. Biomacromolecules vol. 9(2008), pp.1411-1416.

Google Scholar

[15] Matyash M, Despang F, Mandal R, et al. 55-66.

Google Scholar

[16] Lee AC, Yu VM, Lowe JB, et a1. Exp Neurol vol. 184(2003), pp.295-303.

Google Scholar

[17] .Langstaff, S. Sayer M, Smith TJ, et al. Biomaterials vol. 20(1999), pp.1727-1741.

Google Scholar

[18] Hutmacher DW. Biomaterials vol. 21(2000), p.2529–2543.

Google Scholar

[19] Sasaki R, Aoki S, Yamato M, et al. Tissue Eng A vol. 14(2008), pp.1141-1147.

Google Scholar

[20] X Li, T Liu, K Song, L Yao, et al. Biotechnol Prog vol 22(2006), pp.1683-1689. In Chinese.

Google Scholar

[21] Gomez N, Schmidt CE. J Biomed Mater Res A vol. 81(2007), pp.135-149.

Google Scholar

[22] Richardson RT, Thompson B, Moulton S, et al. Biomaterials vol.28(2007), p.513–523.

Google Scholar

[23] Kyle J. Lampea, Sarah C. Heilshornb: submitted to Neuroscience Letters (1997).

Google Scholar

[24] Yang Z, Duan H, Mo L, Qiao H, Li X. Biomaterials vol. 31(2010), pp.4846-54. In Chinese.

Google Scholar

[25] Zhou-ping Tang, Xing-yong Chen, Rong-hua Tang. Journal of Clinical Rehabilitative Tissue Engineering Research vol. 12(2008), pp.189-192. In Chinese.

Google Scholar

[26] Edward Jan, Nicholas A. Kotov. Nanotube Composite Nano Letters vol. 7(2007), pp.1123-1128.

Google Scholar

[27] Nadine Wong Shi Kam, Edward Jan and Nicholas A. Kotov. Nano Letters vol. 9(2009), pp.273-278.

Google Scholar

[28] Shi B, Deng L, Shi X, et al. Biotechnol Prog vol. 28(2012), pp.196-205.In Chinese.

Google Scholar

[29] Garg T, Singh O, Arora S, Murthy R. Crit Rev Ther Drug Carrier Syst vol. 29(2012), pp.1-63.

DOI: 10.1615/critrevtherdrugcarriersyst.v29.i1.10

Google Scholar

[30] Chang-ying Xue, Tian-Qing Liu, Dan Ge, et al. journal of Biomedcinal Engineering vol.s1, (2005), pp.85-86.

Google Scholar

[31] Cheng K, Kisaalita WS. Biotechnol Progress vol. 26(2010), pp.838-846.

Google Scholar

[32] Ooi L, Wood IC. Nat Rev Genet vol. 8(2007), pp.544-8554.

Google Scholar

[33] Otto SJ, McCorkle SR, Hover J, et al. J Neurosci vol. 27(2007), pp.6729-6739.

Google Scholar

[34] Singh SK, Kagalwala MN, Parker-Thornburg J, et al. Nature vol. 453(2008), pp.223-227.

Google Scholar