Donald F Newgreen
Zitiert von
Zitiert von
Guidelines and definitions for research on epithelial–mesenchymal transition
J Yang, P Antin, G Berx, C Blanpain, T Brabletz, M Bronner, K Campbell, ...
Nature reviews Molecular cell biology 21 (6), 341-352, 2020
Carcinoma invasion and metastasis: a role for epithelial-mesenchymal transition?
EW Thompson, DF Newgreen
Cancer research 65 (14), 5991-5995, 2005
Fibronectin in early avian embryos: synthesis and distribution along the migration pathways of neural crest cells
D Newgreen, JP Thiery
Cell and tissue research 211, 269-291, 1980
Vimentin and epithelial-mesenchymal transition in human breast cancer–observations in vitro and in vivo
MI Kokkinos, R Wafai, MK Wong, DF Newgreen, EW Thompson, ...
Cells Tissues Organs 185 (1-3), 191-203, 2007
GDNF is a chemoattractant for enteric neural cells
HM Young, CJ Hearn, PG Farlie, AJ Canty, PQ Thomas, DF Newgreen
Developmental biology 229 (2), 503-516, 2001
Epithelium-mesenchyme transition during neural crest development
JL Duband, F Monier, M Delannet, D Newgreen
Cells Tissues Organs 154 (1), 63-78, 1995
Dynamics of neural crest-derived cell migration in the embryonic mouse gut
HM Young, AJ Bergner, RB Anderson, H Enomoto, J Milbrandt, ...
Developmental biology 270 (2), 455-473, 2004
GDNF and ET-3 Differentially Modulate the Numbers of Avian Enteric Neural Crest Cells and Enteric Neuronsin Vitro
CJ Hearn, M Murphy, D Newgreen
Developmental biology 197 (1), 93-105, 1998
Enteric nervous system: development and developmental disturbances—part 1
D Newgreen, HM Young
Pediatric and Developmental Pathology 5, 224-247, 2002
Origin of interstitial cells of Cajal in the mouse intestine
HM Young, D Ciampoli, BR Southwell, DF Newgreen
Developmental biology 180 (1), 97-107, 1996
A single rostrocaudal colonization of the rodent intestine by enteric neuron precursors is revealed by the expression of Phox2b, Ret, and p75 and by explants grown under the …
HM Young, CJ Hearn, D Ciampoli, BR Southwell, JF Brunet, ...
Developmental biology 202 (1), 67-84, 1998
Ryk-deficient mice exhibit craniofacial defects associated with perturbed Eph receptor crosstalk
MM Halford, J Armes, M Buchert, V Meskenaite, D Grail, ML Hibbs, ...
Nature genetics 25 (4), 414-418, 2000
Cadherins in the human placenta–epithelial–mesenchymal transition (EMT) and placental development
MI Kokkinos, P Murthi, R Wafai, EW Thompson, DF Newgreen
Placenta 31 (9), 747-755, 2010
Ultrastructural and tissue-culture studies on the role of fibronectin, collagen and glycosaminoglycans in the migration of neural crest cells in the fowl embryo
DF Newgreen, IL Gibbins, J Sauter, B Wallenfels, R Wütz
Cell and tissue research 221, 521-549, 1982
Cell proliferation drives neural crest cell invasion of the intestine
MJ Simpson, DC Zhang, M Mariani, KA Landman, DF Newgreen
Developmental biology 302 (2), 553-568, 2007
Enteric nervous system: development and developmental disturbances—part 2
D Newgreen, HM Young
Pediatric and Developmental Pathology 5, 329-349, 2002
Enteric neural crest‐derived cells: origin, identification, migration, and differentiation
HM Young, D Newgreen
The Anatomical Record: An Official Publication of the American Association …, 2001
Neurovascular congruence results from a shared patterning mechanism that utilizes Semaphorin3A and Neuropilin-1
D Bates, GI Taylor, J Minichiello, P Farlie, A Cichowitz, N Watson, ...
Developmental biology 255 (1), 77-98, 2003
The origin and differentiation of enteric neurons of the intestine of the fowl embryo
IJ Allan, DF Newgreen
American Journal of Anatomy 157 (2), 137-154, 1980
Sox10 overexpression induces neural crest‐like cells from all dorsoventral levels of the neural tube but inhibits differentiation
SJ McKeown, VM Lee, M Bronner‐Fraser, DF Newgreen, PG Farlie
Developmental dynamics: an official publication of the American Association …, 2005
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