Biomedical Engineering Reference
In-Depth Information
79. Kedem A, Perets A, Gamlieli-Bonshtein I et al (2005) Vascular endothelial growth factor-
releasing scaffolds enhance vascularization and engraftment of hepatocytes transplanted on
liver lobes. Tissue Eng 11:715-722
80. Perets A, Baruch Y, Weisbuch F et al (2003) Enhancing the vascularization of three-
dimensional porous alginate scaffolds by incorporating controlled release basic fibroblast
growth factor microspheres. J Biomed Mater Res A 65:489-497
81. Re'em T, Tsur-Gang O, Cohen S (2010) The effect of immobilized RGD peptide in
macroporous
alginate
scaffolds
on
TGFbeta1-induced
chondrogenesis
of
human
mesenchymal stem cells. Biomaterials 31:6746-6755
82. Ruvinov E, Leor J, Cohen S (2010) The effects of controlled HGF delivery from an affinity-
binding alginate biomaterial on angiogenesis and blood perfusion in a hindlimb ischemia
model. Biomaterials 31:4573-4582
83. Ruvinov E, Leor J, Cohen S (2011) The promotion of myocardial repair by the sequential
delivery of IGF-1 and HGF from an injectable alginate biomaterial in a model of acute
myocardial infarction. Biomaterials 32:565-578
84. Shachar M, Tsur-Gang O, Dvir T, Leor J, Cohen S (2011) The effect of immobilized RGD
peptide in alginate scaffolds on cardiac tissue engineering. Acta Biomater 7:152-162
85. Stevens MM, Qanadilo HF, Langer R, Prasad Shastri V (2004) A rapid-curing alginate gel
system: utility in periosteum-derived cartilage tissue engineering. Biomaterials 25:887-894
86. Levenberg S, Huang NF, Tsur-Gang O, Ruvinov E, Landa N et al (2009) The effects of
peptide-based modification of alginate on left ventricular remodeling and function after
myocardial infarction. Biomaterials 30:189-195
87. Barash Y, Dvir T, Tandeitnik P et al (2010) Electric field stimulation integrated into
perfusion bioreactor for cardiac tissue engineering. Tissue Eng Part C Methods 16:
1417-1426
88. Dvir T, Levy O, Shachar M, Granot Y, Cohen S (2007) Activation of the ERK1/2 cascade
via pulsatile interstitial fluid flow promotes cardiac tissue assembly. Tissue Eng 13:
2185-2193
89. Wang L, Shelton RM, Cooper PR et al (2003) Evaluation of sodium alginate for bone
marrow cell tissue engineering. Biomaterials 24:3475-3481
90. Ma HL, Hung SC, Lin SY, Chen YL, Lo WH (2003) Chondrogenesis of human
mesenchymal stem cells encapsulated in alginate beads. J Biomed Mater Res A 64:273-281
91. Dean
SK,
Yulyana
Y,
Williams
G,
Sidhu
KS,
Tuch
BE
(2006)
Differentiation
of
encapsulated embryonic stem cells after transplantation. Transplantation 82:1175-1184
92. Lee CH, Singla A, Lee Y (2001) Biomedical applications of collagen. Int J Pharm 221:1-22
93. Schmidt CE, Baier JM (2000) Acellular vascular tissues: natural biomaterials for tissue
repair and tissue engineering. Biomaterials 21:2215-2231
94. Ifkovits JL, Burdick JA (2007) Review: photopolymerizable and degradable biomaterials
for tissue engineering applications. Tissue Eng 13:2369-2385
95. Chastain SR, Kundu AK, Dhar S, Calvert JW, Putnam AJ (2006) Adhesion of mesenchymal
stem
cells to
polymer scaffolds
occurs
via distinct ECM
ligands
and
controls
their
osteogenic differentiation. J Biomed Mater Res A 78:73-85
96. Martin I, Shastri VP, Padera RF et al (2001) Selective differentiation of mammalian bone
marrow stromal cells cultured on three-dimensional polymer foams. J Biomed Mater Res
55:229-235
97. Levenberg S, Huang NF, Lavik E et al (2003) Differentiation of human embryonic stem
cells on three-dimensional polymer scaffolds. Proc Natl Acad Sci USA 100:12741-12746
98. Hwang NS, Kim MS, Sampattavanich S et al (2006) Effects of three-dimensional culture
and growth factors on the chondrogenic differentiation of murine embryonic stem cells.
Stem Cells 24:284-291
99. Kraehenbuehl TP, Zammaretti P, Van der Vlies AJ et al (2008) Three-dimensional
extracellular matrix-directed cardioprogenitor differentiation: systematic modulation of a
synthetic cell-responsive PEG-hydrogel. Biomaterials 29:2757-2766
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