Biomedical Engineering Reference
In-Depth Information
37. A. Kondyurin, N. J. Nosworthy and M. M. M. Bilek, Attachment
of horseradish peroxidase to polytetrafluorethylene (teflon) after
plasma immersion ion implantation, Acta Biomater., 2008, 4(5),
1218-1225.
38. M. M. M. Bilek, et al., Free radical functionalization of surfaces to
prevent adverse responses to biomedical devices, Proc. Natl. Acad. Sci.
U. S. A., 2011, 108(35), 14405-14410.
39. J. Zhu, et al., Design and synthesis of biomimetic hydrogel scaffolds
with controlled organization of cyclic RGD peptides, Bioconjugate
Chem., 2009, 20(2), 333-339.
40. S. X. Hsiong, et al., Cyclic arginine-glycine-aspartate peptides enhance
three-dimensional stem cell osteogenic differentiation, Tissue Eng., Part
A, 2009, 15(2), 263-272.
41. G. B. Schneider, R. Zaharias and C. Stanford, Osteoblast integrin ad-
hesion and signaling regulate mineralization, J. Dent. Res., 2001, 80(6),
1540-1544.
42. S. J. Bogdanowich-Knipp, et al., Solution stability of linear vs. cyclic
RGD peptides, J. Pept. Res., 1999, 53(5), 530-541.
43. M. A. Dechantsreiter, et al., N-Methylated cyclic RGD peptides as highly
active and selective alpha(V)beta(3) integrin antagonists, J. Med. Chem.,
1999, 42(16), 3033-3040.
44. A. Howe, et al., Integrin signaling and cell growth control, Curr. Opin.
Cell Biol., 1998, 10(2), 220-231.
45. K. Soballe, et al., Hydroxyapatite coating enhances fixation of porous
coated implants. A comparison in dogs between press fit and non-
interference fit, Acta Orthop. Scand., 1990, 61(4), 299-306.
46. G. C. O'Toole, et al., Bone sialoprotein-coated femoral implants are
osteoinductive but mechanically compromised, J. Orthop. Res., 2004,
22(3), 641-646.
47. M. J. Dalby, et al., The control of human mesenchymal cell differen-
tiation using nanoscale symmetry and disorder, Nat. Mater., 2007,
6(12), 997-1003.
48. A. J. Engler, et al., Matrix elasticity directs stem cell lineage specifi-
cation, Cell, 2006, 126(4), 677-689.
49. A. K. Gaharwar, et al., Bioactive silicate nanoplatelets for osteogenic
differentiation of human mesenchymal stem cells, Adv. Mater., 2013,
25(24), 3329-3336.
50. A. Higuchi, et al., Physical cues of biomaterials guide stem cell differ-
entiation fate, Chem. Rev., 2013, 113(5), 3297-3328.
51. K. A. Kilian and M. Mrksich, Directing stem cell fate by controlling the
anity and density of ligand-receptor interactions at the biomaterials
interface, Angew. Chem., Int. Ed., 2012, 51(20), 4891-4895.
52. M. Lanniel, et al., Substrate induced differentiation of human
mesenchymal stem cells on hydrogels with modified surface chemistry
and controlled modulus, Soft Matter, 2011, 7(14), 6501.
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