نتایج جستجو برای: neural crest

تعداد نتایج: 307887  

Journal: :Development 2004
Jessica M Teddy Paul M Kulesa

The proper assembly of craniofacial structures and the peripheral nervous system requires neural crest cells to emerge from the neural tube and navigate over long distances to the branchial arches. Cell and molecular studies have shed light on potential intrinsic and extrinsic cues, which, in combination, are thought to ensure the induction and specification of cranial neural crest cells. Howev...

Journal: :Development 2013
Davalyn R Powell Laura Hernandez-Lagunas Kristi LaMonica Kristin Bruk Artinger

The neural crest comprises multipotent precursor cells that are induced at the neural plate border by a series of complex signaling and genetic interactions. Several transcription factors, termed neural crest specifiers, are necessary for early neural crest development; however, the nature of their interactions and regulation is not well understood. Here, we have established that the PR/SET dom...

Journal: :Advances in experimental medicine and biology 2006
Martín L Basch Marianne Bronner-Fraser

The formation of the neural crest has been traditionally considered a classic example of secondary induction, where signals form one tissue elicit a response in a competent responding tissue. Interactions of the neural plate with paraxial mesoderm or nonneural ectoderm can generate neural crest. Several signaling pathways converge at the border between neural and nonneural ectoderm where the ne...

Journal: :The Journal of Cell Biology 1998
G.Y. Huang E.S. Cooper K. Waldo M.L. Kirby N.B. Gilula C.W. Lo

Previous studies showed that conotruncal heart malformations can arise with the increase or decrease in alpha1 connexin function in neural crest cells. To elucidate the possible basis for the quantitative requirement for alpha1 connexin gap junctions in cardiac development, a neural crest outgrowth culture system was used to examine migration of neural crest cells derived from CMV43 transgenic ...

Journal: :PLoS ONE 2009
Julien Grenier Marie-Aimée Teillet Raphaëlle Grifone Robert G. Kelly Delphine Duprez

BACKGROUND In vertebrates, the skeletal elements of the jaw, together with the connective tissues and tendons, originate from neural crest cells, while the associated muscles derive mainly from cranial mesoderm. Previous studies have shown that neural crest cells migrate in close association with cranial mesoderm and then circumscribe but do not penetrate the core of muscle precursor cells of t...

Journal: :Development 1999
M Maconochie R Krishnamurthy S Nonchev P Meier M Manzanares P J Mitchell R Krumlauf

Hoxa2 is expressed in cranial neural crest cells that migrate into the second branchial arch and is essential for proper patterning of neural-crest-derived structures in this region. We have used transgenic analysis to begin to address the regulatory mechanisms which underlie neural-crest-specific expression of Hoxa2. By performing a deletion analysis on an enhancer from the Hoxa2 gene that is ...

2017
James O.S. Hackland Tom J.R. Frith Oliver Thompson Ana Marin Navarro Martin I. Garcia-Castro Christian Unger Peter W. Andrews

Defects in neural crest development have been implicated in many human disorders, but information about human neural crest formation mostly depends on extrapolation from model organisms. Human pluripotent stem cells (hPSCs) can be differentiated into in vitro counterparts of the neural crest, and some of the signals known to induce neural crest formation in vivo are required during this process...

Journal: :Mechanisms of Development 2014
Paola Betancur Marcos Simões-Costa Tatjana Sauka-Spengler Marianne E. Bronner

The transcription factor cMyb has well known functions in vertebrate hematopoiesis, but little was known about its distribution or function at early developmental stages. Here, we show that cMyb transcripts are present at the neural plate during gastrulation in chick embryos. cMyb expression then resolves to the cranial neural folds and is maintained in early migrating cranial neural crest cell...

Journal: :Development 2004
Peter Y Lwigale Gary W Conrad Marianne Bronner-Fraser

Neural crest cells arising from different rostrocaudal axial levels form different sets of derivatives as diverse as ganglia, cartilage and cornea. These variations may be due to intrinsic properties of the cell populations, different environmental factors encountered during migration or some combination thereof. We test the relative roles of intrinsic versus extrinsic factors by challenging th...

Journal: :Developmental biology 2007
E G Coles L A Taneyhill M Bronner-Fraser

Neural crest cells originate in the dorsal neural tube but subsequently undergo an epithelial-to-mesenchymal transition (EMT), delaminate, and migrate to diverse locations in the embryo where they contribute to a variety of derivatives. Cadherins are a family of cell-cell adhesion molecules expressed in a broad range of embryonic tissues, including the neural tube. In particular, cadherin6B (Ca...

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