Biomedical Engineering Reference
In-Depth Information
74. Jiang, T., Kumbar, S. G., Nair, L. S., and Laurencin, C. T. 2008. Biologically active chitosan
systems for tissue engineering and regenerative medicine. Curr Top Med Chem 8: 354-364.
75. Lee, J. Y., Kim, K. H., Shin, S. Y., Rhyu, I. C., Lee, Y. M., Park, Y. J., Chung, C. P., and Lee, S. J.
2006. Enhanced bone formation by transforming growth factor-β1-releasing collagen/chitosan
microgranules. J Biomed Mater Res 76A: 530-539.
76. Park, Y. J., Lee, Y. M., Lee, J. Y., Seol, Y. J., Chung, C. P., and Lee, S. J. 2000. Controlled release of
platelet-derived growth factor-BB from chondroitin sulfate-chitosan sponge for guided bone
regeneration. J Control Release 67: 385-394.
77. Ho, Y. C., Mi, F. L., Hsing-Wen Sung, H. W., and Kuo, P. L. 2009. Heparin-functionalized
chitosan-alginate scaffolds for controlled release of growth factor. Int J Pharm 376: 69-75.
78. Abarrategi, A., Civantos, A., Ramos, V., Sanz Casado, J. V. S., and Lopez-Lacomba, J. L. 2008.
Chitosan film as rhBMP2 carrier: Delivery properties for bone tissue application. Biomacro-
molecules 9: 711-718.
79. Karakecli, A. G., Satriano, C., Gumusderelioglu, M., and Marletta, G. 2008. Enhancement of
fibroblastic proliferation on chitosan surfaces by immobilized epidermal growth factor. Acta
Biomater 4: 989-996.
80. Park, Y. J., Kim, K. H., Lee, J. Y., Ku, Y., Lee, S. J., Min, B. M., and Chung, C. P. 2006. Immobilization
of bone morphogenetic protein-2 on a nanofibrous chitosan membrane for enhanced guided
bone regeneration. Biotechnol Appl Biochem 43: 17-24.
81. Weinberg, C. B. and Bell, E. 1986. A blood vessel model constructed from collagen and cultured
vascular cells. Science 231: 397-400.
82. Swathi Ravi, S. and Chaiko, E. L. 2010. Biomaterials for vascular tissue engineering. Regen Med
5: 107-120.
83. Lanza, R., Langer, R., and Vacanti, J. P. 2000. Principles of Tissue Engineering , 2nd edn. San Diego:
Academic Press, pp. 427-454.
84. Zhu, C. H., Fan, D. D., Duan, Z. G., Xue, W. J., Shang, L. G., Chen, F. L., and Luo, Y. N. 2009.
Initial investigation of novel human-like collagen/chitosan scaffold for vascular tissue engi-
neering. Biomed Mater Res 89A: 829-840.
85. Zhang, L., Ao, Q., Wang, A. J., Lu, G. Y., Kong, L. J., Gong, Y. D., Zhao, N. M., and Zhang X. F.
2006. A sandwich tubular scaffold derived from chitosan for blood vessel tissue engineering. J
Biomed Mater Res 77A: 277-284.
86. Couet, F., Rajan, N., and Mantovani, D. Macromolecular biomaterials for scaffold-based vascu-
lar tissue engineering. Macromol Biosci 7: 701-718.
87. Chupa, J. M., Foster, A. M., Sumner, S. R., Madihally, S. V., and Matthew, H. W. T. 2000. Vascular
cell responses to polysaccharide materials: In vitro and in vivo evaluations. Biomaterials 21:
2315-2322.
88. Madihally, S. V., Flake, A. W., and Matthew, H. W. 1999. Maintenance of CD34 expression during
proliferation of CD34+ cord blood cells on glycosaminoglycan surfaces. Stem Cells 17: 295-305.
89. Shier, D., Butler, J., and Lewis, R. 1999. In Hole's Human Anatomy and Physiology , 8th edn. Boston,
MA: McGraw Hill, pp. 160-183.
90. Fuchs, E. 2007. Scratching the surface of skin development. Nature 445: 834-842.
91. MacNeil, S. 2008. Biomaterials for tissue engineering of skin. Mater Today 11: 26-35.
92. Horch, R. E., Debus, M., Wagner, G., and Stark, G. B. 2000. Cultured human keratinocytes on
type I collagen membranes to reconstitute the epidermis. Tissue Eng 6: 53-67.
93. Mao, J. S., Wang, X. H., and Yao, K. D. 2003. Studied on a novel human keratinocyte membrane
delivery system in vitro. J Mater Sci 38: 2283-2290.
94. Schaum, D. K. 2008. Should it be coded as a dressing or as a dermal/epidermal (substitute) tis-
sue? Adv Skin Wound Care 21: 317-321.
95. Yang, G. H., Yang, J., Wang, J. M., Cui, L., Liu, W., and Cao, Y. L. 2005. Biological behaviors of kera-
tinocytes cultured on chitosan-gelatin membrane. ASBM6: Adv Biomater VI 288-289: 401-404.
96. Ikemoto, S., Mochizuki, M., Yamada, M., Takeda, A., Uchinuma, E., Yamashina, S., Nomizu, M.,
and Kadoya, Y. 2006. Laminin peptide-conjugated chitosan membrane: Application for kerati-
nocyte delivery in wounded skin. J Biomed Mater Res 79A: 716-722.
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