Publication Cover
Endothelium
Journal of Endothelial Cell Research
Volume 1, 1993 - Issue 3
39
Views
31
CrossRef citations to date
0
Altmetric
Original Article

Time Course and Quantification of Extracellular Matrix Maturation in the Chick Chorioallantoic Membrane and in Cultured Endothelial Cells

, , &
Pages 207-219 | Received 14 Jan 1993, Accepted 06 May 1993, Published online: 13 Jul 2009

References

  • Ausprunk D. H. Distribution of hyaluronic acid and sulfated glycosaminoglycans during blood-vessel development in the chick chorioallantoic membrane. American Journal of Anatomy 1986; 77: 313–331
  • Ausprunk D. H., Knighton D. R., Folkman J. Differentiation of vascular endothelium in the chick chorioallantois: A structural and autoradiographic study. Developmental Biology 1974; 38: 237–248
  • Ausprunk D. H., Dethlefsen S. M., Higgins E. R. Distribution of fibronectin, laminin and type IV collagen during development of blood vessels in the chick chrioallantoic membrane. In The Development of the Vascular System, R. N. Feinberg, G. K. Sherer, R. Auerbach. Karger, Basel 1991; 93–107
  • Banerjee D. K., Ornberg R. L., Youdim M. B. H., Heldman E., Pollard H. B. Endothelial cells from bovine adrenal medulla develop capillary-like growth patterns in culture. Proceedings of the National Academy of Science, USA 1985; 82: 4702–4706
  • Birdwell C. R., Gospodarowicz D., Nicolson G. L. Identification, localization, and role of fibronectin in cultured bovine endothelial cells. Proceedings of the National Academy of Science, USA 1978; 75(7)3273–3277
  • Carley W. W., Milici A. J., Madri J. A. Extracellular matrix specificity for the differentiation of capillary endothelial cells. Experimental Cell Research 1988; 178: 426–434
  • Clark R. A. F., Della Pelle P., Manseau E., Lanigan J. M., Harold B. S., Dvorak H. F., Colvin R. B. Blood vessel fibronectin increases in conjunction with endothelial cell proiferation and capillary ingrowth during wound healing. Journal of Investigative Dermatology 1982; 79: 269–276
  • Coupland R. E. The Natural History of the Chromaffin Cell. Little, Brown and Co., Boston 1965
  • Form D. M., Pratt B. M., Madri J. A. Endothelial cell proliferation during angiogenesis. In vitro modulation by basement membrane components. Laboratory Investigation 1986; 55(5)521–530
  • Grant D. S., Lelkes P. I., Fukuda K., Kleinman H. K. Intracellular mechanisms involved in basement membrane induced blood vessel differentiation in vitro. In Vitro Cell and Developmental Biology 1991; 27A: 327–336
  • Hayman E. G., Ruoslahti E. Contribution of fetal bovine serum fibronectin and endogenous rat cell fibronectin in extracellular matrix. Journal of Cell Biology 1979; 83: 225–259
  • Hedin U., Bottger B. A., Forsberg E., Johansson S., Thyberg J. Diverse effects of fibronectin and laminin on phenotypic properties of cultured arterial smooth muscle cells. Journal of Cell Biology 1988; 107: 307–319
  • Herbst T. J., Mc Carthy J. B., Tsilibary E. C., Furcht L. T. Differential effects of laminin, intact type IV collagen, and specific domains of type IV collagen on endothelial cell adhesion and migration. Journal of Cell Biology 1988; 106: 1365–1371
  • Howard P. S., Myers JC., Gorfien S. F., Macarak E. J. Progressive modulation of endothelial phenotype during in vitro blood vessel formation. Developmental Biology 1991; 146: 325–338
  • Ingber D. Extracellular matrix and cell shape: Potential control points for inhibition of angiogenesis. Journal of Cellular Biochemistry 1991; 47: 236–241
  • Ingber D., Folkman J. Inhibition of angiogenesis through modulation of collagen metabolism. Laboratory Investigation 1988; 59(1)44–51
  • Iruela-Arispe M. L., Hasselaar P., Sage H. Differential expression of extracellular proteins is correlated with angiogenesis in vitro. Laboratory Investigation 1991; 64(2)174–186
  • Jaffe E. A. Biology of Endothelial Celts. Martinus Nijhoff, Boston 1984
  • Jaffe E. A., Mosher D. F. Synthesis of fibronectin by cultured human endothelial cells. Journal of Experimental Medicine 1978; 1779–1791
  • Kleiman H. K., Klebe R. J., Martin G. R. Role of collagenous matrices in the adhesion and growth of cells. Journal of Cell Biology 1981; 88: 473–485
  • Kowalczyk A. P., Tulloh R. H., McKeown-Longo P. J. Polarized fibronectin secretion and localized matrix assembly sites correlate with subendothelial matrix formation. Blood 1990; 75: 2335–2342
  • Kubota Y., Kleinmann H. K., Martin G. R., Lawley T. J. Role of laminin and basement membrane in the morphological differentiation of human endothelial cells into capillary-like structures. Journal of Cell Biology 1988; 107: 1589–1598
  • Lelkes P. I., Unsworth B. R. Role of heterotypic interactions between endothelial cells and parenchymal cells in organospecific differentiation: A possible trigger of vasculogenesis. In Angiogenesis in Health and Disease, M. E. Maragoudakis, P. Gullino, P. I. Lelkes. Plenum Press, New York 1992; 27–43
  • Levine M., Morita K. Ascorbic acid in endocrine systems. In Vitamins and Hormones. Advances in Research and Applications, volume 42, G. D. Aurbach, D. B. McCormick. Academic Press Inc., Orlando 1985; 2–53
  • Macarak E. J., Kirby E., Kirk T., Kefalides N. A. Synthesis of cold-insoluble globulin by cultured calf endothelial cells. Proceedings of the National Academy of Science, USA 1978; 75(6)2621–2625
  • Madri J. A., Pratt B. M. Endothelial cell-matrix interactions: In vitro models of angiogenesis. Journal of Histochemistry and Cytochemistry 1986; 34(1)85–91
  • Madri J. A., Williams S. K., Wyatt T., Mezzio C. Capillary endothelial cell cultures: Phenotypic modulation by matrix components. Journal of Cell Biology 1983; 97: 153–165
  • Madri J. A., Pratt B. M., Yannariello-Brown J. Endothelial cell-extracellular matrix interactions. In Endothelial Cell Biology in Health and Disease, N. Simionescu, M. Simionescu. Plenum Press, New York 1989; 167–186
  • Madri J. A., Bell L., Marx M., Merwin J. R., Basson C., Prinz C. Effects of soluble factors and extracellular matrix components on vascular cell behavior in vitro and in vivo Models of de-endothelialization and repair. Journal of Cellular Biochemistry 1991; 45: 123–130
  • Maragoudakis M. E., Panoutsacopoulou M., Sarmonika M. Rate of basement membrane biosynthesis as an index to angiogenesis. Tissue and Cell 1988a; 20: 531–539
  • Maragoudakis M. E., Sarmonika M., Panoutsacopoulou M. Inhibition of basement membrane biosynthesis prevents angiogenesis. Journal of Pharmacology and Experimental Therapeutics 1988b; 244: 729–733
  • McDonald J. A., Kelley D. G., Broekelmann T. J. Role of fibronectin in collagen deposition: Fab' to the gelatin-binding domain of fibronectin inhibits both fibronectin and collagen organization in fibroblast extracellular matrix. Journal of Cell Biology 1982; 92: 485–492
  • Missirlis E., Karakiulakis G., Maragoudakis M. E. Angiogenesis is associated with collagenous protein synthesis and degradation in the chick chorioallantoic membrane. Tissue and Cell 1990; 22(4)419–426
  • Mizrachi Y., Lelkes P. I., Ornberg R. L., Goping G., Pollard H. B. Specific adhesion between pheochromo-cytoma (PC12) cells and adrenal medullary endothelial cells in co-culture. Cell and Tissue Research 1989; 256: 365–372
  • Murphy M. E., Carlson E. C. An ultrastructural study of developing extracellular matrix in vitelline blood vessels of the early chick embryo. American Journal of Anatomy 1978; 151: 345–376
  • Nicosia R. F., Belser P., Bonanno E., Diven J. Regulation of angiogenesis in vitro by collagen metabolism. In Vitro. Cell and Development Biology 1991; 27A: 961–966
  • Papadimitriou E., Lelkes P. I. Measurement of cell numbers in microtiter culture plates using the fluorescent dye Hoechst 33258. Journal of Immunological Methods 1993; 162: 41–45
  • Papadimitriou L., Unsworth B. R., Maragoudakis M., Lelkes P. I. Quantitative analysis of basement membrane formation during embryonic development of the chick chorioallantoic membrane. 5th International Congress on Cell Biology 1992a, P. 6.1#80, 185 (Abstract)
  • Papadimitriou E., Unsworth B. R., Maragoudakis M. E., Lelkes P. I. Quantitative analysis of extracellular matrix formation in vivo and in vitro. Molecular Biology of the Cell 1992b; 228a, suppl. 3, Abstract
  • Pesciotta Peters D. M., Portz L. M., Fullenwider J., Mosher D. F. Co-assembly of plasma and cellular fibronectins into fibrils in human fibroblast cultures. Journal of Cell Biology 1990; 111: 249–256
  • Risau W., Lemmon V. Changes in the vascular extracellular matrix during embryonic vasculogenesis and angiogenesis. Developmental Biology 1988; 125: 441–450
  • Schor A. M., Schor S. L. Tumor angiogenesis. Journal of Pathology 1983; 141: 385–413, Abstract
  • Schor A. M., Schor S. L., Allen T. D. Effects of culture conditions on the proliferation, morphology and migration of bovine aortic endothelial cells. Journal of Cell Science 1983; 62: 267–285
  • Stockley A T. The chorioallantoic membrane of the embryonic chick as an assay for angiogenic factors. British Journal of Dermatology 1980; 102: 738–742, Abstract
  • Voyta J. C., Via D. P., Butterfield C. E., Zetter B. R. Identification and isolation of endothelial cells based on their increased uptake of acetylated-low density lipoprotein. Journal of Cell Biology 1984; 99: 2034–2040
  • Yamada K. M., Olden K. Fibronectins-adhesive glycoproteins of cell surface and blood. Nature 1978; 275: 179–184
  • Young H. E., Morrison D. C., Sippel J., Putman L. S., Lucas P. A. Enzyme-linked immuno-culture assay. Journal of Tissue Culture Methods 1992; 14: 101–106

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.