Biomedical Engineering Reference
In-Depth Information
137. Li, Z. S. and Zhang, M. Q. 2005. Chitosan-alginate as scaffolding material for cartilage tissue
engineering. J Biomed Mater Res 75A: 485-493.
138. Shi, D. H., Cai, D. Z., Zhou, C. R., Rong, L. M., Wang, K., and Xu, Y. C. 2005. Development and
potential of a biomimetic chitosan/type II collagen scaffold for cartilage tissue engineering.
Chinese Med J 118: 1436-1443.
139. Thein-Han, W. W., Kitiyanant, Y., and Misra, R. D. K. 2008. Chitosan as scaffold matrix for tissue
engineering. Mater Sci Technol 24: 1062-1075.
140. Xia, W. Y., Liu, W., Cui, L., Liu, Y. C., Zhong, W., Liu, D., Wu, J. J., Chua K., and Cao, Y. L. 2004.
Tissue engineering of cartilage with the use of chitosan-gelatin complex scaffolds. J Biomed
Mater Res B 71B: 373-380.
141. Francis Suh, J. K. and Matthew, H. W. T. 2000. Application of chitosan-based polysaccharide
biomaterials in cartilage tissue engineering: A review. Biomaterials 21: 2589-2598.
142. Yan, J. H., Qi, N. M., and Zhang, Q. Q. 2007. Rabbit articular chondrocytes seeded on collagen-
chitosan-GAG scaffold for cartilage tissue engineering in vivo. Artif Cells Blood Substit Biotechnol
35: 333-344.
143. Yan, J. H., Li, X. M., Liu, L. G., Wang, F. J., Zhu, T. W., and Zhang, Q. Q. 2006. Potential use of
collagen-chitosan-hyaluronan tri-copolymer scaffold for cartilage tissue engineering. Artif Cells
Blood Substit Biotechnol 34: 27-39.
144. Isnard, N., Robert, L., and Renard, G. 2003. Effect of sulfated GAGs on the expression and acti-
vation of MMP-2 and MMP-9 in corneal and dermal explant cultures. Cell Biol Int 27: 779-784.
145. Chen, Y. L., Lee, H. P., Chan, H. Y., Sung, L. Y., Chen, H. C., and Hu, Y. C. 2007. Composite
chondroitin-6-sulfate/dermatan sulfate/chitosan scaffolds for cartilage tissue engineering.
Biomaterials 28: 2294-2305.
146. Marijnissen, W. J. C. M., van Osch, G. J. V. M., Joachim Aigner, J., van der Veen, S. W., Hollander,
A. P., Verwoerd-Verhoef, H. L., and Verhaar, J. A. N. 2002. Alginate as a chondrocyte-delivery
substance in combination with a non-woven scaffold for cartilage tissue engineering. Biomaterials
23: 1511-1517.
147. Tigli, R. S. and Gumusderelioglu, M. 2009. Evaluation of alginate-chitosan semi IPNs as carti-
lage scaffolds. J Mater Sci: Mater Med 20: 699-709.
148. Li, Z. S., Gunn, J., Chen, M. H., Cooper, A., and Zhang, M. 2008. On-site alginate gelation for
enhanced cell proliferation and uniform distribution in porous scaffolds. J Biomed Mater Res
86A: 552-559.
149. Iwasaki, N., Yamane, S. T., Majima, T., Kasahara, Y., Minami, A., Harada, K., Nonaka, S. et al.
2004. Feasibility of polysaccharide hybrid materials for scaffolds in cartilage tissue engineering:
Evaluation of chondrocyte adhesion to polyion complex fibers prepared from alginate and chi-
tosan. Biomacromolecules 5: 828-833.
150. Hsu, S. H., Whu, S. W., Hsieh, S. C., Tsai, C. L., Chen, D. C., and Tan, T. S. 2004. Evaluation of
chitosan-alginate-hyaluronate complexes modified by an RGD-containing protein as tissue-
engineering scaffolds for cartilage regeneration. Artifi Organ 28: 693-703.
151. Kuo, Y. C. and Ku, I. K. 2008. Cartilage regeneration by novel polyethylene oxide/chitin/chito-
san scaffolds. Biomacromolecules 9: 2662-2669.
152. Kuo, Y. C. and Hsu, Y. R. 2009. Tissue-engineered polyethylene oxide/chitosan scaffolds as
potential substitutes for articular cartilage. J Biomed Mater Res 91A: 277-287.
153. Mukai, S., Ito, H., Nakagawa, Y., Akiyama, H., Miyamoto, M., and Nakamura, T. 2005.
Transforming growth factor-β1 mediates the effects of low-intensity pulsed ultrasound in chon-
drocytes. Ultrasound Med Biol 31: 1713-1721.
154. Lee, J. E., Kim, K. E., Kwon, I. C., Ahn, H. J., Lee, S. H., Cho, H., Kim, H. J., Seong, S. C., and
Lee, M. C. 2004. Effects of the controlled-released TGF-beta 1 from chitosan microspheres on
chondrocytes cultured in a collagen/chitosan/glycosaminoglycan scaffold. Biomaterials 25:
4163-4173.
155. Guo, T., Zhao, J. N., Chang, J. B., Ding, Z., Hong, H., Chen, J. N., and Zhang, J. F. 2006. Porous
chitosan-gelatin scaffold containing plasmid DNA encoding transforming growth factor-b1 for
chondrocytes proliferation. Biomaterials 27: 1095-1103.
Search WWH ::




Custom Search