The extracellular matrix and the control of proliferation of corneal endothelial and lens epithelial cells.
暂无分享,去创建一个
[1] D. Gospodarowicz,et al. Permissive effect of the extracellular matrix on cell proliferation in vitro. , 1980, Proceedings of the National Academy of Sciences of the United States of America.
[2] D. Gospodarowicz,et al. Extracellular matrix and control of proliferation of vascular endothelial cells. , 1980, The Journal of clinical investigation.
[3] J. Foidart,et al. Conditioned medium from endothelial cell cultures can restore the normal phenotypic expression of vascular endothelium maintained in vitro in the absence of fibroblast growth factor , 1980, Journal of cellular physiology.
[4] J. Yager,et al. Primary induction of vitellogenin synthesis in monolayer cultures of amphibian hepatocytes , 1980, The Journal of cell biology.
[5] D. Gospodarowicz,et al. The identification and localization of fibronectin in cultured corneal endothelial cells: cell surface polarity and physiological implications. , 1979, Experimental eye research.
[6] D. Gospodarowicz,et al. Vascular endothelial cells maintained in the absence of fibroblast growth factor undergo structural and functional alterations that are incompatible with their in vivo differentiated properties , 1979, The Journal of cell biology.
[7] L. Liotta,et al. Basement membrane collagen requirements for attachment and growth of mammary epithelium. , 1979, Experimental cell research.
[8] M. Fisher,et al. The influence of the substratum on mesenchyme spreading in vitro. , 1979, Experimental cell research.
[9] S. Schor,et al. Different mechanisms in the attachment of cells to native and denatured collagen. , 1979, Journal of cell science.
[10] S. Hamamoto,et al. Sustained growth and three-dimensional organization of primary mammary tumor epithelial cells embedded in collagen gels. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[11] J. Orly,et al. Fibronectin mediates cytokinesis and growth of rat follicular cells in serum-free medium , 1979, Cell.
[12] D. Gospodarowicz,et al. The coating of bovine and rabbit corneas denuded of their endothelium with bovine corneal endothelial cells. , 1979, Experimental eye research.
[13] H. Kleinman,et al. Epidermal cells adhere preferentially to type IV (basement membrane) collagen , 1979, The Journal of cell biology.
[14] R. Ross,et al. Physiological quiescence in plasma‐derived serum: Influence of platelet‐derived growth factor on cell growth in culture , 1978, Journal of cellular physiology.
[15] D. Gospodarowicz,et al. Determination of cellular shape by the extracellular matrix and its correlation with the control of cellular growth. , 1978, Cancer research.
[16] S. C. Liu,et al. Isolation and growth of adult human epidermal keratinocytes in cell culture. , 1978, The Journal of investigative dermatology.
[17] J. Folkman,et al. Role of cell shape in growth control , 1978, Nature.
[18] D. Gospodarowicz,et al. Purification of the fibroblast growth factor activity from bovine brain. , 1978, The Journal of biological chemistry.
[19] A. Mescher,et al. Control of cellular proliferation by the fibroblast and epidermal growth factors. , 1978, National Cancer Institute monograph.
[20] L. Liotta,et al. Collagen required for proliferation of cultured connective tissue cells but not their transformed counterparts , 1978, Nature.
[21] A. Vaheri,et al. Distribution of a major connective tissue protein, fibronectin, in normal human tissues , 1978, The Journal of experimental medicine.
[22] A. Mescher,et al. The role of fibroblast growth factor and epidermal growth factorin the proliferative response of the corneal and lens epithelium. , 1977, Experimental eye research.
[23] A. Mescher,et al. Stimulation of corneal endothelial cell proliferations in vitro by fibroblast and epidermal growth factors. , 1977, Experimental eye research.
[24] D. Gospodarowicz,et al. Control of proliferation of bovine vascular endothelial cells , 1977, Journal of cellular physiology.
[25] R. Hynes,et al. Restoration of normal morphology, adhesion and cytoskeleton in transformed cells by addition of a transformation-sensitive surface protein , 1977, Cell.
[26] E. Hay,et al. Stimulation of corneal differentiation by interaction between cell surface and extracellular matrix. II. Further studies on the nature and site of transfilter "induction". , 1976, Developmental biology.
[27] I. Pastan,et al. Cell surface protein partially restores morphology, adhesiveness, and contact inhibition of movement to transformed fibroblasts. , 1976, Proceedings of the National Academy of Sciences of the United States of America.
[28] J. Baum,et al. Synthesis of a collagenous basal membrane by rabbit corneal endothelial cells in vitro. , 1974, Archives of ophthalmology.
[29] R. Ross,et al. A platelet-dependent serum factor that stimulates the proliferation of arterial smooth muscle cells in vitro. , 1974, Proceedings of the National Academy of Sciences of the United States of America.
[30] F. Bang,et al. Long-term growth of chicken fibroblasts on a collagen substrate. , 1974, Experimental cell research.
[31] C Grobstein,et al. Mechanisms of organogenetic tissue interaction. , 1967, National Cancer Institute monograph.
[32] S. Cohen,et al. The stimulation of epidermal proliferation by a specific protein (EGF). , 1965, Developmental biology.
[33] N. K. Wessells. SUBSTRATE AND NUTRIENT EFFECTS UPON EPIDERMAL BASAL CELL ORIENTATION AND PROLIFERATION. , 1964, Proceedings of the National Academy of Sciences of the United States of America.
[34] J. W. Dodson. On the nature of tissue interactions in embryonic skin , 1963 .
[35] R. L. Ehrmann,et al. The growth of cells on a transparent gel of reconstituted rat-tail collagen. , 1956, Journal of the National Cancer Institute.
[36] C. Grobstein,et al. Morphogenetic Interaction between Embryonic Mouse Tissues separated by a Membrane Filter , 1953, Nature.
[37] D. Gospodarowicz,et al. Studies on atherogenesis and corneal transplantation using cultured vascular and corneal endothelia. , 1979, Recent progress in hormone research.
[38] Hay Ed. Interaction between the cell surface and extracellular matrix in corneal development. , 1977 .
[39] C. Grobstein. 2 – DEVELOPMENTAL ROLE OF INTERCELLULAR MATRIX: RETROSPECTIVE AND PROSPECTIVE* , 1975 .