Biomedical Engineering Reference
In-Depth Information
57. Marchini G, Pedrotti E, Pedrotti M, Barbaro V, Di Iorio E, Ferrari S, Bertolin M, Ferrari B,
Passilongo M, Fasolo A, Ponzin D (2011) Long-term effectiveness of autologous cultured
limbal stem cell grafts in patients with limbal stem cell deficiency due to chemical burns. Clin
Exp Ophthalmol 40:255-267
58. Rama P, Bonini S, Lambiase A, Golisano O, Paterna P, De Luca M, Pellegrini G (2001)
Autologous fibrin-cultured limbal stem cells permanently restore the corneal surface of
patients with total limbal stem cell deficiency. Transplantation 72(9):1478-1485
59. Han B, Schwab IR, Madsen TK, Isseroff RR (2002) A fibrin-based bioengineered ocular
surface with human corneal epithelial stem cells. Cornea 21(5):505-510
60. Yang J, Yamato M, Nishida K, Hayashida Y, Shimizu T, Kikuchi A, Tano Y, Okano T (2006)
Corneal epithelial stem cell delivery using cell sheet engineering: not lost in transplantation.
J Drug Target 14(7):471-482
61. Nishida K, Yamato M, Hayashida Y, Watanabe K, Maeda N, Watanabe H, Yamamoto K,
Nagai S, Kikuchi A, Tano Y, Okano T (2004) Functional bioengineered corneal epithelial
sheet grafts from corneal stem cells expanded ex vivo on a temperature-responsive cell
culture surface. Transplantation 77(3):379-385
62. Reichl S, Borrelli M, Geerling G (2011) Keratin films for ocular surface reconstruction.
Biomaterials 32(13):3375-3386
63. Lawrence
BD,
Cronin-Golomb
M,
Georgakoudi
I,
Kaplan
DL,
Omenetto
FG
(2008)
Bioactive
silk
protein
biomaterial
systems
for
optical
devices.
Biomacromolecules
9(4):1214-1220
64. Bray LJ, George KA, Ainscough SL, Hutmacher DW, Chirila TV, Harkin DG (2011) Human
corneal
epithelial
equivalents
constructed
on
Bombyx
mori
silk
fibroin
membranes.
Biomaterials 33(16):4110-4117
65. Griffith M, Osborne R, Munger R, Xiong X, Doillon CJ, Laycock NL, Hakim M, Song Y,
Watsky MA (1999) Functional human corneal equivalents constructed from cell lines.
Science 286(5447):2169-2172
66. Dravida S, Gaddipati S, Griffith M, Merrett K (2008) A biomimetic scaffold for culturing
limbal stem cells: a promising alternative for clinical transplantation. J Tissue Eng Regen
Med 2(5):263-271
67. Brown R, Wiseman M, Chuo C, Cheema U, Nazhat S (2005) Ultrarapid engineering of
biomimetic
materials
and
tissues:
Fabrication
of
Nano-and
Microstructures
by
Plastic
Compression. Adv Funct Mater 15(11):1762-1770
68. McIntosh AW, Salahuddin A, So S, Ng S, Ponce MS, Takezawa T, Schein O, Elisseeff J
(2009) Collagen vitrigel membranes for the in vitro reconstruction of separate corneal
epithelial, stromal, and endothelial cell layers. J Biomed Mater Res Part B Appl Biomater
90B(2):818-831
69. Wray L, Orwin E (2009) Recreating the microenvironment of the native cornea for tissue
engineering applications. Tissue Engineering Part A 15(7):1463-1472
Search WWH ::




Custom Search