Biomedical Engineering Reference
In-Depth Information
40. Zhu, Y. K., T. Umino, X. D. Liu, H. J. Wang, D. J. Romberger, J. R. Spurzem, and S. I. Rennard.
2001. Contraction of fibroblast-containing collagen gels: Initial collagen concentration regulates the
degree of contraction and cell survival. In Vitro Cell Dev Biol Anim 37:10-16.
41. Turley, E. A., C. A. Erickson, and R. P. Tucker. 1985. The retention and ultrastructural appearances
of various extracellular matrix molecules incorporated into three-dimensional hydrated collagen
lattices. Dev Biol 109:347-369.
42. Auger, F. A., M. Rouabhia, F. Goulet, F. Berthod, V. Moulin, and L. Germain. 1998. Tissue-engineered
human skin substitutes developed from collagen-populated hydrated gels: Clinical and fundamental
applications. Med Biol Eng Comput 36:801-812.
43. Lee, C. H., A. Singla, and Y. Lee. 2001. Biomedical applications of collagen. Int J Pharm 221:1-22.
44. Wallace, D. G., J. M. McPherson, L. Ellingsworth, L. Cooperman, R. Armstrong, and K. A. Piez.
1988. Injectable collagen for tissue augmentation. In Collagen M. E. Nimni, ed. CRC Press, Inc.,
Boca Raton, FL, pp. 117-144.
45. Wallace, D. G. and J. Rosenblatt. 2003. Collagen gel systems for sustained delivery and tissue engi-
neering. Adv Drug Deliv Rev 55:1631-1649.
46. Rosenblatt, J., B. Devereux, and D. G. Wallace. 1992. Effect of electrostatic forces on the dynamic
rheological properties of injectable collagen biomaterials. Biomaterials 13:878-886.
47. Silver, F. H. and G. Pins. 1992. Cell growth on collagen: A review of tissue engineering using scaf-
folds containing extracellular matrix. J Long Term Effects Med Implants 2:67-80.
48. Arora, P. D. and C. A. McCulloch. 1994. Dependence of collagen remodelling on α-smooth muscle
actin expression by fibroblasts. J Cell Physiol 159:161-175.
49. Arora, P. D., N. Narani, and C. A. McCulloch. 1999. The compliance of collagen gels regulates
transforming growth factor-β induction of α-smooth muscle actin in fibroblasts. Am J Pathol
154:871-882.
50. Yang, Y. L. and L. J. Kaufman. 2009. Rheology and confocal reflectance microscopy as probes of
mechanical properties and structure during collagen and collagen/hyaluronan self-assembly.
Biophys J 96:1566-1585.
51. Yang, Y. L., L. M. Leone, and L. J. Kaufman. 2009. Elastic moduli of collagen gels can be predicted
from two-dimensional confocal microscopy. Biophys J 97:2051-2060.
52. Grinnell, F. 2000. Fibroblast-collagen-matrix contraction: Growth-factor signalling and mechani-
cal loading. Trends Cell Biol 10:362-365.
53. Cukierman, E., R. Pankov, and K. M. Yamada. 2002. Cell interactions with three-dimensional matri-
ces. Curr Opin Cell Biol 14:633-639.
54. Young, R. G., D. L. Butler, W. Weber, A. I. Caplan, S. L. Gordon, and D. J. Fink. 1998. Use of mesen-
chymal stem cells in a collagen matrix for Achilles tendon repair. J Orthop Res 16:406-413.
55. Ramachandran, G. and A. Reddi, eds. 1976. Biochemistry of Collagen . Plenum Press, New York.
56. Zoumi, A., A. Yeh, and B. J. Tromberg. 2002. Imaging cells and extracellular matrix in vivo by
using second-harmonic generation and two-photon excited fluorescence. Proc Natl Acad Sci USA
99:11014-11019.
57. Lee, P. F., A. T. Yeh, and K. J. Bayless. 2009. Nonlinear optical microscopy reveals invading endothe-
lial cells anisotropically alter three-dimensional collagen matrices. Exp Cell Res 315:396-410.
58. Thompson, H. G., J. D. Mih, T. B. Krasieva, B. J. Tromberg, and S. C. George. 2006. Epithelial-derived
TGF-β-2 modulates basal and wound-healing subepithelial matrix homeostasis. Am J Physiol Lung
Cell Mol Physiol 291:L1277-1285.
59. Raub, C. B., A. J. Putnam, B. J. Tromberg, and S. C. George. 2010. Predicting bulk mechanical prop-
erties of cellularized collagen gels using multiphoton microscopy. Acta Biomater 6:4657-4665.
60. Abraham, T., J. Carthy, and B. McManus. Collagen matrix remodeling in 3-dimensional cellular
space resolved using second harmonic generation and multiphoton excitation fluorescence. J Struct
Biol 169:36-44.
Search WWH ::




Custom Search