AbstractThe prevailing concept has been that an FGF induces epithelial-to-fiber differentiation in the mammalian lens, whereas chick lens cells are unresponsive to FGF and are instead induced to differentiate by IGF/insulin-type factors. We show here that when treated for periods in excess of those used in previous investigations (>5 h), purified recombinant FGFs stimulate proliferation of primary cultures of embryonic chick lens epithelial cells and (at higher concentrations) expression of the fiber differentiation markers δ-crystallin and CP49. Surprisingly, upregulation of proliferation and δ-crystallin synthesis by FGF does not require activation of ERK kinases. ERK function is, however, essential for stimulation of δ-crystallin express...
AbstractPrevious studies of the developing lens have shown that Notch signaling regulates differenti...
AbstractVertebrate lens development depends on a complex network of signaling molecules to coordinat...
During terminal differentiation, lens fiber cells permanently withdraw from the cell cycle, migrate ...
AbstractThe prevailing concept has been that an FGF induces epithelial-to-fiber differentiation in t...
AbstractLens growth involves the proliferation of epithelial cells, followed by their migration to t...
AbstractThe vertebrate lens provides an excellent model to study the mechanisms that regulate termin...
AbstractLens arises from ectoderm situated next to the optic vesicles. By thickening and invaginatin...
AbstractIt is widely accepted that vitreous humor-derived FGFs are required for the differentiation ...
The nervous system is composed of two separate compartments, the central and the peripheral nervous ...
Normal lens fibre differentiation is fundamental for maintaining the transparency of the lens and it...
AbstractTo determine if fibroblast growth factor signaling mechanisms are required for terminal diff...
AbstractPrevious studies showed that lens epithelial cells proliferate rapidly in the embryo and tha...
ABSTRACT In embryonic and adult lenses, a balance of cell proliferation, cell cycle exit, and differ...
5 p.-3 fig.-1 tab.We, and others, have recently reported that insulin-like growth factor I (IGF-I) m...
Producción CientíficaLens fibre differentiation is a life-long process related with lens transparenc...
AbstractPrevious studies of the developing lens have shown that Notch signaling regulates differenti...
AbstractVertebrate lens development depends on a complex network of signaling molecules to coordinat...
During terminal differentiation, lens fiber cells permanently withdraw from the cell cycle, migrate ...
AbstractThe prevailing concept has been that an FGF induces epithelial-to-fiber differentiation in t...
AbstractLens growth involves the proliferation of epithelial cells, followed by their migration to t...
AbstractThe vertebrate lens provides an excellent model to study the mechanisms that regulate termin...
AbstractLens arises from ectoderm situated next to the optic vesicles. By thickening and invaginatin...
AbstractIt is widely accepted that vitreous humor-derived FGFs are required for the differentiation ...
The nervous system is composed of two separate compartments, the central and the peripheral nervous ...
Normal lens fibre differentiation is fundamental for maintaining the transparency of the lens and it...
AbstractTo determine if fibroblast growth factor signaling mechanisms are required for terminal diff...
AbstractPrevious studies showed that lens epithelial cells proliferate rapidly in the embryo and tha...
ABSTRACT In embryonic and adult lenses, a balance of cell proliferation, cell cycle exit, and differ...
5 p.-3 fig.-1 tab.We, and others, have recently reported that insulin-like growth factor I (IGF-I) m...
Producción CientíficaLens fibre differentiation is a life-long process related with lens transparenc...
AbstractPrevious studies of the developing lens have shown that Notch signaling regulates differenti...
AbstractVertebrate lens development depends on a complex network of signaling molecules to coordinat...
During terminal differentiation, lens fiber cells permanently withdraw from the cell cycle, migrate ...