Biomedical Engineering Reference
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3. Adams, R., Alitalo, K.: Molecular regulation of angiogenesis and lymphangiogenesis. Nat.
Rev. Mol. Cell Biol. 8, 464-478 (2007)
4. Page-McCaw, A., Ewalk, A., Werb, Z.: Matrix metalloproteinases and the regulation of
tissue remodeling. Nat. Rev. Mol. Cell. Biol. 8, 221-233 (2007)
5. Ghajar,
C.,
George,
S.,
Putnam,
A.:
Matrix
metalloproteinase
control
of
capillary
morphogenesis. Crit. Rev. Eukaryot. Gene. Expr. 18(3), 251-278 (2008)
6. Ausprunk, D., Folkman, J.: Migration and proliferation of endothelial cells in preformed and
newly formed blood vessels during tumor angiogenesis. Microvasc. Res. 14, 53-65 (1977)
7. Davis, G., Senger, D.: Endothelial extracellular matrix: biosynthesis, remodeling, and
functions
during
vascular
morphogenesis
and
neovessel
stabilization.
Circ.
Res.
97,
1093-1107 (2005)
8. Roovers, K., Assoian, R.: Integrating the MAP kinase signal into the G1 phase cell cycle
machinery. Bioessays 22, 818-826 (2000)
9. Seger, R., Krebs, E.: The MAPK signaling cascade. FASEB J. 9, 726-735 (1995)
10. Vinals, F., Pouyssegur, J.: Confluence of vascular endothelial cells induces cell cycle exit by
inhibiting
p42/p44
mitogen-activated
protein
kinase
activity.
Mol.
Cell.
Biol.
19,
2763-2772 (1999)
11. Assoian, R., Schwartz, M.: Coordinate signaling by integrins and receptor tyrosine kinases
in the regulation of G1 phase cell-cycle progression. Curr. Opin. Genet. Dev. 11, 48-53
(2001)
12. Akiyama, S., Yamada, S., Chen, W., Yamada, K.: Analysis of fibronectin receptor function
with monoclonal antibodies: roles in cell adhesion, migration, matrix assembly, and
cytoskeletal organization. J. Cell Biol. 109, 863-875 (1989)
13. Meredith, J., Schwartz, M.: Integrins, adhesion and apoptosis. Trends Cell Biol. 7, 146-150
(1997)
14. Giancotti, F., Ruoslahti, R.: Integrin signaling. Science 285, 1028-1032 (1999)
15. Wary, K., Mainiero, F., Isakoff, S., Marcantonion, E., Giancotti, F.: The adaptor protein Shc
couples a class of integrins to the control of cell cycle progression. Cell 87, 733-743 (1996)
16. Liu,
Y.,
Senger,
D.:
Matrix-specific
activation
of
Src
and
Rho
initiates
capillary
morphogenesis of endothelial cells. FASEB J. 18, 457-468 (2004)
17. Davis, G., Bayless, K., Mavila, A.: Molecular basis of endothelial cell morphogenesis in
three-dimensional extracellular matrices. Anat. Rec. 268, 252-275 (2002)
18. Vernon, R., Sage, H.: A novel, quantitative model for study of endothelial cell migration
and sprout formation within three-dimensional collagen matrices. Microvasc. Res. 57(2),
118-133 (1999)
19. Ingber,
D.,
Folkman,
J.:
Inhibition
of
angiogenesis
through
modulation
of
collagen
metabolism. Lab Invest. 59, 44-51 (1988)
20. Whelan, M., Senger, D.: Collagen I initiates endothelial cell morphogenesis by inducing
actin polymerization through suppression of cyclic AMP and protein kinase A. J. Biol.
Chem. 278, 327-334 (2003)
21. Montesano, R., Orci, L., Vassalli, P.: In vitro rapid organization of endothelial cells into
capillary-like networks is promotoed by collagen matrices. J. Cell Biol. 97, 1648-1652
(1983)
22. Senger, D., Perruzzi, C., Streit, M., Koteliansky, V., Fougerolles, A.d., Detmar, M.: The
alpha1beta1 and alpha2beta1 integrins provide critical support for vascular endothelial
growth factor signaling, endothelial cell migration, and tumor angiogenesis. Am. J. Pathhol.
160, 195-204 (2002)
23. Davis, G., Camarillo, C.: An alpha2beta1 integrin-dependent pinocytic mechanism
involving intracellular vacuole formation and coalescence regulates capillary lumen and
tube formation in three-dimensional collagen matrix. Exp. Cell Res. 224, 39-51 (1996)
24. Senger, D., Claffey, K., Benes, J., Perruzzi, C., Sergiou, A., Detmar, M.: Angiogenesis
promoted
by vascular
endothelial
growth factor:
regulation
through alpha1beta1
and
alpha2beta1 integrins. Proc. Natl. Acad. Sci. USA 94, 13612-13617 (1997)
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