189
© Springer Nature Switzerland AG 2018
S. Gerecht (ed.), Biophysical Regulation of Vascular Differentiation and
Assembly, Biological and Medical Physics, Biomedical Engineering,
https://doi.org/10.1007/978-3-319-99319-5
A
Abaci, H.E., 106
Adipose-derived stem cell (ADSC), 130
Aires, H., 51–66
Albina, J.E., 78
Angioblasts, 37
AngioChips, 157
Angiogenesis
ANG-1, 83
blood vessels, 75
brain
spatio-temporal dynamic, 178, 179
tissue engineering approach,
180–182, 184
ECM, 102
endogenous
in VEGF, 179
growth and differentiation, 94
matrix mechanics, 94
networking of endothelial
capillaries, 77
and neurogenesis, 177
situations, 74
stages of, 90
therapeutic, 91
vasculogenesis, 79, 82, 85, 97, 104
VEGFR2, 94
B
Basement membrane matrix assembly, 23, 24,
26, 28, 29
Basic fibroblast growth factor (bFGF), 150
Baudis, S., 132
Bifurcation model
CT images, 127
vascular tissue, 123, 124
Bioinks
cell density, 135
cell-free, 133
extrusion-based bioprinting, 128
GelMA, 129
HP Deskjet 600 thermal printer, 125
HUVEC, 129
inkjet-based bioprinting, 125
laser-based bioprinting, 131
layer-by-layer deposition, 127
LGDW printing, 132
scaffold-Free, 134
Biomaterials, 38, 44, 178, 180
and emerging technology, 85
and microfluidics, 105
natural, 89
synthetic, 89, 90, 93
Biophysical cues
alignment, 162
biochemical cues, 159, 160
electrical and mechanical stimulation, 163
electrical stimulation, 163, 164
electrical vs. mechanical
stimulation, 165
mechanical stimulation, 164, 165
substrate stiffness, guidance and alignment
cues, 161, 162
Blaeser, A., 126
Blatchley, M.R., 106
Blood outgrowth endothelial cells (BOECs),
149, 150, 152
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