Biomedical Engineering Reference
In-Depth Information
147. Jiang Y, Chen LK, Zhu DC, Zhang GR, Guo C, Qi YY et al (2010) The inductive effect of
bone morphogenetic protein-4 on chondral-lineage differentiation and in situ cartilage
repair. Tissue Eng Part A 16(5):1621-1632
148. Miljkovic ND, Cooper GM, Marra KG (2008) Chondrogenesis, bone morphogenetic
protein-4 and mesenchymal stem cells. Osteoarthr Cartil 16(10):1121-1130
149. Tamai N, Myoui A, Hirao M, Kaito T, Ochi T, Tanaka J et al (2005) A new biotechnology
for articular cartilage repair: subchondral implantation of a composite of interconnected
porous hydroxyapatite, synthetic polymer (PLA-PEG), and bone morphogenetic protein-2
(rhBMP-2). Osteoarthr Cartil 13(5):405-417
150. Majumdar MK, Wang E, Morris EA (2001) BMP-2 and BMP-9 promotes chondrogenic
differentiation of human multipotential mesenchymal cells and overcomes the inhibitory
effect of IL-1. J Cell Physiol 189(3):275-284
151. Sekiya I, Larson BL, Vuoristo JT, Reger RL, Prockop DJ (2005) Comparison of effect of
BMP-2, -4, and -6 on in vitro cartilage formation of human adult stem cells from bone
marrow stroma. Cell Tissue Res 320(2):269-276
152. Fukuda A, Kato K, Hasegawa M, Hirata H, Sudo A, Okazaki K et al (2005) Enhanced repair
of large osteochondral defects using a combination of artificial cartilage and basic fibroblast
growth factor. Biomaterials 26(20):4301-4308
153. Huang X, Yang D, Yan W, Shi Z, Feng J, Gao Y et al (2007) Osteochondral repair using the
combination of fibroblast growth factor and amorphous calcium phosphate/poly( L -lactic
acid) hybrid materials. Biomaterials 28(20):3091-3100
154. Miyakoshi N, Kobayashi M, Nozaka K, Okada K, Shimada Y, Itoi E (2005) Effects of
intraarticular administration of basic fibroblast growth factor with hyaluronic acid on
osteochondral defects of the knee in rabbits. Arch Orthop Trauma Surg 125(10):683-692
155. Nakayama J, Fujioka H, Nagura I, Kokubu T, Makino T, Kuroda R et al (2009) The effect of
fibroblast
growth
factor-2
on
autologous
osteochondral
transplantation.
Int
Orthop
33(1):275-280
156. Siebert CH, Schneider U, Sopka S, Wahner T, Miltner O, Niedhart C (2006) Ingrowth of
osteochondral grafts under the influence of growth factors: 6-month results of an animal
study. Arch Orthop Trauma Surg 126(4):247-252
157. Tanaka H, Mizokami H, Shiigi E, Murata H, Ogasa H, Mine T et al (2004) Effects of basic
fibroblast growth factor on the repair of large osteochondral defects of articular cartilage in
rabbits: dose-response effects and long-term outcomes. Tissue Eng 10(3-4):633-641
158. Weiss S, Hennig T, Bock R, Steck E, Richter W (2010) Impact of growth factors and PTHrP
on early and late chondrogenic differentiation of human mesenchymal stem cells. J Cell
Physiol 223(1):84-93
159. Holland TA, Bodde EW, Cuijpers VM, Baggett LS, Tabata Y, Mikos AG et al (2007)
Degradable hydrogel scaffolds for in vivo delivery of single and dual growth factors in
cartilage repair. Osteoarthr Cartil 15(2):187-197
160. Holland TA, Tabata Y, Mikos AG (2005) Dual growth factor delivery from degradable
oligo(poly(ethylene glycol) fumarate) hydrogel scaffolds for cartilage tissue engineering.
J Control Release 101(1-3):111-125
161. Tabata Y, Nagano A, Ikada Y (1999) Biodegradation of hydrogel carrier incorporating
fibroblast growth factor. Tissue Eng 5(2):127-138
162. Fan H, Zhang C, Li J, Bi L, Qin L, Wu H et al (2008) Gelatin microspheres containing TGF-
beta3 enhance the chondrogenesis of mesenchymal stem cells in modified pellet culture.
Biomacromolecules 9(3):927-934
163. Jo S, Shin H, Shung AK, Fisher JP, Mikos AG (2001) Synthesis and characterization of
oligo(poly(ethylene glycol) fumarate) macromer. Macromolecules 34(9):2839-2844
164. Tabata Y, Hijikata S, Muniruzzaman M, Ikada Y (1999) Neovascularization effect of
biodegradable gelatin microspheres incorporating basic fibroblast growth factor. J Biomater
Sci Polym Ed 10(1):79-94
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