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Cranial neural crest

Cranial neural crest cells regulate head muscle patterning and differentiation during vertebrate embryogenesis

Cranial neural crest cells regulate head muscle patterning and differentiation during vertebrate embryogenesis

... specific cranial neural crest (CNC)- derived skeletal elements in a highly coordinated ...the cranial musculoskeletal architecture in vertebrate ...

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The retinoic acid metabolising gene, CYP26B1, patterns the cartilaginous cranial neural crest in zebrafish

The retinoic acid metabolising gene, CYP26B1, patterns the cartilaginous cranial neural crest in zebrafish

... migrating neural crest cells populating the visceral arches in zebrafish and mouse (Bulfone et ...in cranial cartilagi- nous defects (Graham, ...of cranial neural crest-derived ...

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p53 coordinates cranial neural crest cell growth and epithelial mesenchymal transition/delamination processes

p53 coordinates cranial neural crest cell growth and epithelial mesenchymal transition/delamination processes

... the neural tube and in migrating CNCs in Nutlin-3-treated ...various neural crest genes in chick ...a neural tube closure ...cnc, cranial neural crest; nt, neural ...

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Molecular mechanisms of cranial neural crest cell migration and patterning in craniofacial development

Molecular mechanisms of cranial neural crest cell migration and patterning in craniofacial development

... of cranial neural crest ...of cranial neural crest cells (NCCs) in a representative vertebrate ...the neural tube, the NCCs and their surrounding mesenchyme correspond to ...

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Contribution of cranial neural crest cells to mouse skull development

Contribution of cranial neural crest cells to mouse skull development

... Engineering cranial neural crest cells is also a tool to treat dis- ...where neural crest cells are encapsulated in gelatin-based photo-cross-linkable hydrogels and cultured for about 3 ...

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Combined deficiencies of Msx1 and Msx2 cause impaired
patterning and survival of the cranial neural crest

Combined deficiencies of Msx1 and Msx2 cause impaired patterning and survival of the cranial neural crest

... the cranial skeleton (Satokata and Maas, ...of neural crest-derived calvarial osteogenic cells (Ishii et ...the cranial neural crest, an analysis of neural crest ...

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In vivo evidence for short  and long range cell communication in cranial neural crest cells

In vivo evidence for short and long range cell communication in cranial neural crest cells

... which neural crest cells interact with each other and the environment during migration to the branchial arches, we investigated intact cranial neural crest cells within living chick ...

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The Dlx5 FGF10 signaling cascade controls cranial neural crest and myoblast interaction during oropharyngeal patterning and development

The Dlx5 FGF10 signaling cascade controls cranial neural crest and myoblast interaction during oropharyngeal patterning and development

... Specifically, cranial neural crest (CNC)-derived cells migrate into the primordium of the soft palate and form a scaffold to guide the migration of myogenic progenitors into the soft palate, where ...

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Sonic hedgehog regulation of Foxf2 promotes cranial neural crest mesenchyme proliferation and is disrupted in cleft lip morphogenesis

Sonic hedgehog regulation of Foxf2 promotes cranial neural crest mesenchyme proliferation and is disrupted in cleft lip morphogenesis

... Cleft lip is one of the most common human birth defects, yet our understanding of the mechanisms that regulate lip morphogenesis is limited. Here, we show in mice that sonic hedgehog (Shh)-induced proliferation of ...

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SMAD4 mediated WNT signaling controls the fate of cranial neural crest cells during tooth morphogenesis

SMAD4 mediated WNT signaling controls the fate of cranial neural crest cells during tooth morphogenesis

... multipotential cranial neural crest (CNC) cells during tooth and jawbone formation as these cells differentiate into odontoblasts and osteoblasts, ...

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Fate of cranial neural crest cells during craniofacial development in endothelin A receptor deficient mice

Fate of cranial neural crest cells during craniofacial development in endothelin A receptor deficient mice

... from cranial neural crest cells (NCCs) arising from the posterior midbrain and ...in cranial NCC development is not ...of cranial NCCs in Ednra-/- embryos using the R26R;Wnt1-Cre ...

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Sox2 and Mitf cross regulatory interactions consolidate progenitor and melanocyte lineages in the cranial neural crest

Sox2 and Mitf cross regulatory interactions consolidate progenitor and melanocyte lineages in the cranial neural crest

... chick neural tube of E2 embryos, doxycyclin was added at ...the neural tube and neural crest and its derivatives, ...the neural tube and the periphery, in border cells, satellite cells ...

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Temporal requirement of Hoxa2 in cranial neural crest skeletal
morphogenesis

Temporal requirement of Hoxa2 in cranial neural crest skeletal morphogenesis

... between neural crest mesenchyme and the surrounding environment, where timing is an essential component (reviewed by Le Douarin et ...influencing cranial NCC patterning ability (reviewed by Helms et ...

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Inca: a novel p21 activated kinase associated protein required for cranial neural crest development

Inca: a novel p21 activated kinase associated protein required for cranial neural crest development

... migrating cranial NC ...in cranial NC at early stages that require Tfap2a ...trigger neural induction, (2) a mixture of Chd and Wnt3a at concentrations that induce NC, or (3) Chd, Wnt3a and a ...

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Formation of Cranial Sensory Ganglia: Role of Neural Crest-Placode Interactions, Slit-Robo, and Cadherins

Formation of Cranial Sensory Ganglia: Role of Neural Crest-Placode Interactions, Slit-Robo, and Cadherins

... the cranial neural crest raised the intriguing possibility that Slit–Robo signaling may be responsible for coordinating cell–cell interactions during trigeminal ganglion ...of neural ...

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Molecular and cellular mechanisms underlying the evolution of form and function in the amniote jaw

Molecular and cellular mechanisms underlying the evolution of form and function in the amniote jaw

... The amniote jaw complex is a remarkable amalgamation of derivatives from distinct embryonic cell lineages. During development, the cells in these lineages experience concerted movements, migrations, and signaling ...

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Modulation of noncanonical TGF β signaling prevents cleft palate in Tgfbr2 mutant mice

Modulation of noncanonical TGF β signaling prevents cleft palate in Tgfbr2 mutant mice

... Patients with mutations in either TGF-β receptor type I (TGFBR1) or TGF-β receptor type II (TGFBR2), such as those with Loeys-Dietz syndrome, have craniofacial defects and signs of elevated TGF-β signaling. Similarly, ...

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Syndromes of the First and Second Branchial Arches, Part 1: Embryology and Characteristic Defects

Syndromes of the First and Second Branchial Arches, Part 1: Embryology and Characteristic Defects

... due to a relatively rapid and orderly composition of mesoder- mal and cranial neural crest cells via a complex signaling net- work. Syndromes of the first and second BAs manifest along a spectrum of ...

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Identification and analysis of a novel cysteine rich protein

Identification and analysis of a novel cysteine rich protein

... specified neural crest cells is the zinc finger transcription factor Slug that is expressed at the neural plate border in presumptive neural crest cells (Nieto, et a l, 1994; Mayor, et ...

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Imaging neural crest cell dynamics during formation of dorsal root ganglia and sympathetic ganglia

Imaging neural crest cell dynamics during formation of dorsal root ganglia and sympathetic ganglia

... of neural crest cells in vitro (Erickson and Perris, 1993) and in vivo (Bronner-Fraser, 1986) have implicated neuregulins, bone morphogenetic proteins (BMPs), semaphorins/collapsins and the Eph/ephrins ...

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