Biomedical Engineering Reference
In-Depth Information
39. Teixeira CC, Nemelivsky Y, Karkia C, Legeros RZ (2006) Biphasic calcium phosphate: a
scaffold for growth plate chondrocyte maturation. Tissue Eng 12(8):2283-2289. doi: 10.1089/
ten.2006.12.2283
40. Chung C, Burdick JA (2008) Engineering cartilage tissue: emerging trends in cell-based
therapies. Adv Drug Deliv Rev 60(2):243-262
41. Anselme K, Bigerelle M, Noel B, Dufresne E, Judas D, Iost A, Hardouin P (2000) Qualitative
and quantitative study of human osteoblast adhesion on materials with various surface
roughnesses. J Biomed Mater Res 49(2):155-166
42. LeGeros RZ, Parsons JR, Daculsi G, Driessens F, Lee D, Liu ST, Metsger S, Peterson D,
Walker M (1988) Significance of the porosity and physical chemistry of calcium phosphate
ceramics. Biodegradation-bioresorption. Ann NY Acad Sci 523:268-271
43. Curran JM, Chen R, Hunt JA (2006) The guidance of human mesenchymal stem cell
differentiation
in
vitro
by
controlled
modifications
to
the
cell
substrate.
Biomaterials
27(27):4783-4793. doi: 10.1016/j.biomaterials.2006.05.001
44. Keselowsky BG, Collard DM, García AJ (2005) Integrin binding specificity regulates
biomaterial surface chemistry effects on cell differentiation. Proc Natl Acad Sci USA
102(17):5953-5957. doi: 10.1073/pnas.0407356102
45. Lee MH, Ducheyne P, Lynch L, Boettiger D, Composto RJ (2006) Effect of biomaterial
surface properties on fibronectin-[alpha]5[beta]1 integrin interaction and cellular attachment.
Biomaterials 27(9):1907-1916
46. Toh
WS,
Spector
M,
Lee
EH,
Cao
T
(2011)
Biomaterial-mediated
delivery
of
microenvironmental cues for repair and regeneration of articular cartilage. Mol Pharm
47. Liu SQ, Tian Q, Hedrick JL, Po Hui JH, Rachel Ee PL, Yang YY (2010) Biomimetic
hydrogels for chondrogenic differentiation of human mesenchymal stem cells to neocartilage.
Biomaterials 31(28):7298-7307
48. Engler AJ, Sen S, Sweeney HL, Discher DE (2006) Matrix elasticity directs stem cell lineage
specification. Cell 126(4):677-689
49. Wu JZ, Herzog W (2002) Elastic anisotropy of articular cartilage is associated with the
microstructures of collagen fibers and chondrocytes. J Biomech 35(7):931-942
50. Moroni
L,
Habibovic
B,
Monney
DJ,
van
Blitterswijk
CA
(2010)
Functional
tissue
engineering
through
biofunctional
macromolecules
and
surface
design.
MRS
Bull
35:
584-590
51. Luppa
D
(2000)
Biochemie
und
Pathochemia
des
hyalinen
Gelenkknorpels.
KCS
1(12):29-39
52. Heyland J, Wiegandt K, Goepfert C, Nagel-Heyer S, Ilinich E, Schumacher U, Pörtner R
(2006)
Redifferentiation
of
chondrocytes
and
cartilage
formation
under
intermittent
hydrostatic pressure. Biotechnol Lett 28(20):1641-1648
53. Hoenig E, Winkler T, Mielke G, Paetzold H, Schuettler D, Goepfert C, Machens HG,
Morlock
MM,
Schill
AF
(2011)
High
amplitude
direct
compressive
strain
enhances
mechanical
properties
of
scaffold-free
tissue-engineered
cartilage.
Tissue
Eng
Part
A
17(9-10):1401-1411
54. Wiegandt K, Pörtner R, Müller R (2009) Einfluss hydrostatischer Druckbelastung während
der in vitro Herstellung von dreidimensionalen Knorpelimplantaten. urn:nbn:de:gbv:830-
tubdok-8126
55. Ofek G, Revell CM, Hu JC, Allison DD, Grande-Allen KJ, Athanasiou KA (2008) Matrix
development in self-assembly of articular cartilage. PLoS One 3(7):2795. doi: 10.1371/
journal.pone.0002795
56. Kuettner KE, Aydelotte MB, Thonar EJ (1991) Articular cartilage matrix and structure: a
minireview. J Rheumatol Suppl 27:46-48
57. Clark P, Connolly P, Curtis AS, Dow JA, Wilkinson CD (1990) Topographical control of cell
behaviour: II. Multiple grooved substrata. Development 108(4):635-644
58. Brown A, Burke G, Meenan BJ (2011) Modeling of shear stress experienced by endothelial
cells cultured on microstructured polymer substrates in a parallel plate flow chamber.
Biotechnol Bioeng 108(5):1148-1158
Search WWH ::




Custom Search