Biomedical Engineering Reference
In-Depth Information
117. Ma, L., Shi, Y. C., Chen, Y. X., Haiguang Zhao, H. G., Gao, C. Y., and Han, C. M. 2007. In vitro
and in vivo biological performance of collagen-chitosan/silicone membrane bilayer dermal
equivalent. J Mater Sci: Mater Med 18: 2185-2191.
118. Neamnark, A., Sanchavanakit, N., Pavasant, P., Ratana Rujiravanit, R., and Supaphol, P. 2008.
In vitro biocompatibility of electrospun hexanoyl chitosan fibrous scaffolds towards human
keratinocytes and fibroblasts. Eur Polym J 44: 2060-2067.
119. Mao, J. S., Zhao, L. G., Yao, K. D., Shang, Q. X., Yang, G. H., and Cao, Y. L. 2003. Study of novel
chitosan-gelatin artificial skin in vitro. J Biomed Mater Res 64A: 301-308.
120. Black, N. F., Bouez, C., Perrier, E., Schlotmann, K., Chapuis, F., and Damour, O. 2005. Optimization
and characterization of an engineered human skin equivalent. Tissue Eng 11: 723-733.
121. Su, C. H., Sun, C. S., Wei Juan, S. W., Hu, C. H., Ket, W. T., and Sheut, M. T. 1997. Fungal mycelia
as the source of chitin and polysaccharides and their applications as skin substitutes. Biomaterials
16: 1169-1174.
122. Mobasheri, A., Carter, S. D., Martin-Vasallo, P., and Shakibaei, M. 2002. Integrins and stretch
activated ion channels; putative components of functional cell surface mechanoreceptors in
articular chondrocytes. Cell Biol Int 26: 1-18.
123. Insall, J. 1974. The Pridie debridement operation for osteoarthritis of the knee. Clin Orthop Relat
R e s 101: 61-67.
124. Muzzarelli, R. A. A. 2009. Chitins and chitosans for the repair of wounded skin, nerve, cartilage
and bone. Carbohydr Polym 76: 167-182.
125. Lahiji, A., Sohrabi, A., Hungerford, D. S., and Frondoza, C. G. 2000. Chitosan supports the
expression of extracellular matrix proteins in human osteoblasts and chondrocytes. J Biomed
Mater Res 51: 586-595.
126. Subramanian, A., Vu, D., Larsen, G. F., and Lin, H. Y. 2005. Preparation and evaluation of
the electrospun chitosan/PEO fibers for potential applications in cartilage tissue engineering.
J Biomater Sci Polym Edn 16: 861-873.
127. Lu, J. X., Prudhommeaux, F., Meunier, A., Sedel, L., and Guillemin, G. 1999. Effects of chitosan
on rat knee cartilages. Biomaterials 20: 1937-1944.
128. Park, K. M., Lee, S. Y., Joung, Y. K., Na, J. S., Lee, M. C., and Park, K. D. 2009. Thermosensitive
chitosan-Pluronic hydrogel as an injectable cell delivery carrier for cartilage regeneration. Acta
Biomater 5: 1956-1965.
129. Jin, R., Moreira, L. S., Dijkstra, P. J., Karperien, M., van Blitterswijk, C. A., Zhong, Z. Y., and
Feijen, J. 2009. Injectable chitosan-based hydrogels for cartilage tissue engineering. Biomaterials
30: 2544-2551.
130. Au, A., Ha, J., Polotsky, A., Krzyminski, K., Anna Gutowska, A., Hungerford, D. S., and
Frondoza, C. G. 2003. Thermally reversible polymer gel for chondrocyte culture. J Biomed Mater
Res 67A: 1310-1319.
131. Huaping Tan, H. P., Chu, C. R., Payne, K. A., and Marra, K. G. 2009. Injectable in situ forming
biodegradable chitosan-hyaluronic acid based hydrogels for cartilage tissue engineering.
Biomaterials 30: 2499-2506.
132. Montembault, A., Tahiri, K., Korwin-Zmijowska, C., Chevalier, X., Corvol, M. T., and Domard
A. 2006. A material decoy of biological media based on chitosan physical hydrogels: Application
to cartilage tissue engineering. Biochimie 88: 551-564.
133. GriVon, D. J., Sedighi, M. R., SchaeVer, D. V., Eurell, J. A., and Johnson, A. L. 2006. Chitosan
scaffolds: Interconnective pore size and cartilage engineering. Acta Biomater 2: 313-320.
134. Senkoylu, A., Simsek, A., Sahin, F. I., Menevse, S., Ozogul, C., Denkbas, E. B., and Piskin, E.
Interaction of cultured chondrocytes with chitosan scaffold. J Bioact Compat Polym 16:
136-144.
135. Concaro, S., Nicklasson, E., Ellowsson, L., Lindahl, A., Brittberg, M., and Gatenholm, P. 2008.
Effect of cell seeding concentration on the quality of tissue engineered constructs loaded with
adult human articular chondrocytes. J Tissue Eng Regen Med 2: 14-21.
136. Nettles, D. L., Elder, S. H., and Gilbert, J. A. 2002. Potential use of chitosan as a cell scaffold
material for cartilage tissue engineering. Tissue Eng 8: 1009-1016.
Search WWH ::




Custom Search