INO (inhibitor of neurite outgrowth) is a monoclonal antibody that blocks axon outgrowth, presumably by functionally blocking a laminin-heparan sulfate proteoglycan complex (Chiu, A. Y., W. D. Matthew, and P. H. Patterson. 1986. J. Cell Biol. 103: 1382-1398). Here the effect of this antibody on avian neural crest cells was examined by microinjecting INO onto the pathways of cranial neural crest migration. After injection lateral to the mesencephalic neural tube, the antibody had a primarily unilateral distribution. INO binding was observed in the basal laminae surrounding the neural tube, ectoderm, and endoderm, as well as within the cranial mesenchyme on the injected side of the embryo. This staining pattern was indistinguishable from thos...
AbstractDuring early embryonic development, cranial neural crest cells emerge from the developing mi...
The possible role of a 140-kD cell surface complex in neural crest adhesion and migration was examin...
In this study, we describe the distribution of various classes of proteoglycans and their potential ...
INO (inhibitor of neurite outgrowth) is a monoclonal antibody that blocks axon outgrowth, presumably...
The INO (inhibitor of neurite outgrowth) antibody recognizes a laminin-heparan sulfate proteoglycan ...
Previous studies from this laboratory (M. Bronner-Fraser (1985). J. Cell Biol. 101, 610) have demons...
The mechanisms of neural crest cell interaction with laminin were explored using a quantitative cell...
AbstractThe movement of neural crest cells is controlled in part by extracellular matrix. Aggrecan, ...
The HNK-1 antibody recognizes a carbohydrate moiety that is shared by a family of cell adhesion mole...
Neural crest cells migrate along pathways containing laminin and other extracellular matrix molecule...
The cell substratum attachment (CSAT) antibody recognizes a 140-kD cell surface receptor complex inv...
AbstractAlthough numerous in vitro experiments suggest that extracellular matrix molecules like lami...
Although it is well-established that β_1 integrins play a functional role in the migration of crania...
AbstractThe neural crest is a transient cell population that travels long distances through the embr...
We have examined the molecular interactions of avian neural crest cells with fibronectin and laminin...
AbstractDuring early embryonic development, cranial neural crest cells emerge from the developing mi...
The possible role of a 140-kD cell surface complex in neural crest adhesion and migration was examin...
In this study, we describe the distribution of various classes of proteoglycans and their potential ...
INO (inhibitor of neurite outgrowth) is a monoclonal antibody that blocks axon outgrowth, presumably...
The INO (inhibitor of neurite outgrowth) antibody recognizes a laminin-heparan sulfate proteoglycan ...
Previous studies from this laboratory (M. Bronner-Fraser (1985). J. Cell Biol. 101, 610) have demons...
The mechanisms of neural crest cell interaction with laminin were explored using a quantitative cell...
AbstractThe movement of neural crest cells is controlled in part by extracellular matrix. Aggrecan, ...
The HNK-1 antibody recognizes a carbohydrate moiety that is shared by a family of cell adhesion mole...
Neural crest cells migrate along pathways containing laminin and other extracellular matrix molecule...
The cell substratum attachment (CSAT) antibody recognizes a 140-kD cell surface receptor complex inv...
AbstractAlthough numerous in vitro experiments suggest that extracellular matrix molecules like lami...
Although it is well-established that β_1 integrins play a functional role in the migration of crania...
AbstractThe neural crest is a transient cell population that travels long distances through the embr...
We have examined the molecular interactions of avian neural crest cells with fibronectin and laminin...
AbstractDuring early embryonic development, cranial neural crest cells emerge from the developing mi...
The possible role of a 140-kD cell surface complex in neural crest adhesion and migration was examin...
In this study, we describe the distribution of various classes of proteoglycans and their potential ...