AbstractTo study the molecular mechanism that controls the laminar organization of the retina, we utilized reaggregation cultures of dissociated retinal cells prepared from chicken embryos. These cells cannot generate laminated structures by themselves and, instead, form rosettes within the reaggregates. However, the dissociated cells can organize into a correctly laminated structure when cultured in the presence of a putative laminar inducing factor coming from particular tissue or cells, but its molecular identity of this factor has long remained elusive. In this study, we found that the anterior rim of the retina sends a signal to rearrange the rosette-forming cells into a neuroepithelial structure characteristic of the undifferentiated ...
SummaryA common feature of the brain is the arrangement of synapses in layers. To examine the signif...
The eye has served as a classical model to study cell specification and tissue induction for over a ...
Summary: The extracellular matrix plays a key role in stem cell maintenance, expansion, and differen...
AbstractTo study the molecular mechanism that controls the laminar organization of the retina, we ut...
AbstractAn experimental paradigm was devised to remove the retinal basal lamina for defined periods ...
We investigated the functional role of glia cells during retinogenesis using the rotation culture sy...
AbstractTo study the biology of basal laminae in the developing nervous system the protein compositi...
Müller cells, that belong to the family of radial glia cells, have central functions during retinoge...
AbstractThe vertebrate eye forms via a complex set of morphogenetic events. The optic vesicle evagin...
The vitreous surface of the embryonic avian retinal neuroepithelium was isolated by mechanical disru...
Cell differentiation and pattern formation are fundamental processes in animal development that are ...
AbstractBrain development goes through phases of proliferative growth and differentiation to ensure ...
Dissociated embryonic chicken retinal cells regenerate in rotary culture into cellular spheres that ...
SummaryIn this study we dissected retinal organoid morphogenesis in human embryonic stem cell (hESC)...
AbstractA major determinant of specific connectivity in the central nervous system is that synapses ...
SummaryA common feature of the brain is the arrangement of synapses in layers. To examine the signif...
The eye has served as a classical model to study cell specification and tissue induction for over a ...
Summary: The extracellular matrix plays a key role in stem cell maintenance, expansion, and differen...
AbstractTo study the molecular mechanism that controls the laminar organization of the retina, we ut...
AbstractAn experimental paradigm was devised to remove the retinal basal lamina for defined periods ...
We investigated the functional role of glia cells during retinogenesis using the rotation culture sy...
AbstractTo study the biology of basal laminae in the developing nervous system the protein compositi...
Müller cells, that belong to the family of radial glia cells, have central functions during retinoge...
AbstractThe vertebrate eye forms via a complex set of morphogenetic events. The optic vesicle evagin...
The vitreous surface of the embryonic avian retinal neuroepithelium was isolated by mechanical disru...
Cell differentiation and pattern formation are fundamental processes in animal development that are ...
AbstractBrain development goes through phases of proliferative growth and differentiation to ensure ...
Dissociated embryonic chicken retinal cells regenerate in rotary culture into cellular spheres that ...
SummaryIn this study we dissected retinal organoid morphogenesis in human embryonic stem cell (hESC)...
AbstractA major determinant of specific connectivity in the central nervous system is that synapses ...
SummaryA common feature of the brain is the arrangement of synapses in layers. To examine the signif...
The eye has served as a classical model to study cell specification and tissue induction for over a ...
Summary: The extracellular matrix plays a key role in stem cell maintenance, expansion, and differen...