Instability in cell commitment of vertebrate pigmented epithelial cells and their transdifferentiation into lens cells.
暂无分享,去创建一个
[1] K. Yasuda,et al. The nucleotide sequence of a complete chicken delta‐crystallin cDNA. , 1984, The EMBO journal.
[2] A. Masuda,et al. Phenylthiourea enhances Cu cytotoxicity in cell cultures: its mode of action. , 1984, Cell structure and function.
[3] T. Okada. Recent progress in studies of the transdifferentiation of eye tissue in vitro. , 1983, Cell differentiation.
[4] K. Yasuda,et al. Gene coding for a lens-specific protein, delta-crystallin, is transcribed in nonlens tissues of chicken embryos. , 1983, Developmental biology.
[5] R. Clayton,et al. The pattern of expression of chick delta‐crystallin genes in lens differentiation and in trans‐differentiating cultured tissues. , 1983, The EMBO journal.
[6] H. Masuda,et al. Isolation and characterization of circumferential microfilament bundles from retinal pigmented epithelial cells , 1982, The Journal of cell biology.
[7] R. Kodama,et al. Dissociated limb bud cells of chick embryos can express lens specificity when reaggregated and cultured in vitro. , 1982, Developmental biology.
[8] R. Kodama,et al. Demonstration of contractility of circumferential actin bundles and its morphogenetic significance in pigmented epithelium in vitro and in vivo , 1981, The Journal of cell biology.
[9] H Honda,et al. How much does the cell boundary contract in a monolayered cell sheet? , 1980, Journal of theoretical biology.
[10] T. Okada. Cellular metaplasia or transdifferentiation as a model for retinal cell differentiation. , 1980, Current topics in developmental biology.
[11] K. Yasuda. Transdifferentiation of "lentoid" structures in cultures derived from pigmented epithelium was inhibited by collagen. , 1979, Developmental biology.
[12] R. Clayton. Regulatory Factors for Lens Fibre Formation in Cell Culture. I. Possible Requirement for Pre-Existing Levels of Crystallin mRNA , 1979 .
[13] K. Yasuda,et al. A demonstration of a switch of cell type in human fetal eye tissues in vitro: pigmented cells of the iris or the retina can transdifferentiate into lens. , 1978, Experimental eye research.
[14] Barabanov Vm. [Detection of delta-crystallins in the adenohypophysis of chick embryos]. , 1977 .
[15] S. Abe,et al. AN ANALYSIS OF DIFFERENTIATIVE CAPACITY OF PIGMENTED EPITHELIAL CELLS OF ADULT NEWT IRIS IN CLONAL CELL CULTURE , 1977 .
[16] R. Reyer. The Amphibian Eye: Development and Regeneration , 1977 .
[17] Y. Itoh,et al. Enhancement of differentiation of lens and pigment cells by ascorbic acid in cultures of neural retinal cells of chick embryos. , 1976, Developmental biology.
[18] K. Watanabe,et al. Differentiation of lens in cultures of neural retinal cells of chick embryos. , 1975, Developmental biology.
[19] S. Abe,et al. Differentiation of lens-like structures from newt iris epithelial cells in vitro. , 1974, Proceedings of the National Academy of Sciences of the United States of America.
[20] T. Okada,et al. Differentiation of lens tissue from the progeny of chick retinal pigment cells cultured in vitro: a demonstration of a switch of cell types in clonal cell culture. , 1973, Proceedings of the National Academy of Sciences of the United States of America.
[21] Tadao Sato. ÜBER DIE LINSENREGENERATION BEI DEN COBITIDEN FISCHEN , 1961 .
[22] Tadao Sato. ÜBER DIE LINSENBILDENDE FÄHIGKEIT DES PIGMENTEPITHELS BEI DIEMYCTYLUS PYRRHOGASTER. , 1951 .