نتایج جستجو برای: mesenchyme

تعداد نتایج: 3552  

Journal: :Journal of embryology and experimental morphology 1974
K A Lawson

Lung mesenchyme is able to support budding and cytodifferentiation of salivary epithelial rudiments in vitro. No difference in response was found between submandibular and parotid epithelium from mouse or rat. There are several further features of this result, which is contradictory to previous findings. (.1) Lung mesenchyme is quantitatively less effective than submandibular mesenchyme for sup...

Journal: :Development 1998
F Miralles P Czernichow R Scharfmann

In this study, we have investigated the role of the embryonic mesenchyme in the development of the pancreas. We have compared the development in vitro of E12.5 rat pancreatic rudiments grown in the presence or absence of mesenchyme. When the E12.5 pancreatic epithelial rudiment is cultured in the presence of its surrounding mesenchyme, both morphogenesis and cytodifferentiation of the exocrine ...

Journal: :Developmental biology 1999
J P Golding H Tidcombe S Tsoni M Gassmann

During mammalian hindbrain development, sensory axons grow along highly stereotyped routes within the cranial mesenchyme to reach their appropriate entry points into the neuroepithelium. Thus, trigeminal ganglion axons always project to rhombomere (r)2, whilst facial/acoustic ganglia axons always project to r4. Axons are never observed to enter the mesenchyme adjacent to r3, raising the possibi...

2014
L. Henry Goodnough Gregg J. DiNuoscio James W. Ferguson Trevor Williams Richard A. Lang Radhika P. Atit

The cranial bones and dermis differentiate from mesenchyme beneath the surface ectoderm. Fate selection in cranial mesenchyme requires the canonical Wnt effector molecule β-catenin, but the relative contribution of Wnt ligand sources in this process remains unknown. Here we show Wnt ligands are expressed in cranial surface ectoderm and underlying supraorbital mesenchyme during dermal and osteob...

Journal: :Genetics 2008
Stephen J Salipante James M Thompson Marshall S Horwitz

Mutations are an inevitable consequence of cell division. Similarly to how DNA sequence differences allow inferring evolutionary relationships between organisms, we and others have recently demonstrated how somatic mutations may be exploited for phylogenetically reconstructing lineages of individual cells during development in multicellular organisms. However, a problem with such "phylogenetic ...

2012
Anjali A. Sarkar Irene E. Zohn

Hectd1 mutant mouse embryos exhibit the neural tube defect exencephaly associated with abnormal cranial mesenchyme. Cellular rearrangements in cranial mesenchyme are essential during neurulation for elevation of the neural folds. Here we investigate the molecular basis of the abnormal behavior of Hectd1 mutant cranial mesenchyme. We demonstrate that Hectd1 is a functional ubiquitin ligase and t...

Journal: :Mechanisms of Development 2002
M.Todd Valerius Larry T. Patterson David P. Witte S.Steven Potter

Clonal cell lines representing different developmental stages of the metanephric mesenchyme were made from transgenic mice with the Simian Virus 40 T-antigen (SV40 Tag) gene driven by the Hoxa 11 promoter. The resulting mK3 cell line represented early metanephric mesenchyme, prior to induction by the ureteric bud. These cells showed a spindle-shaped, fibroblast morphology. They expressed genes ...

Journal: :Development 2012
Minoti Hiremath Pamela Dann Jennifer Fischer Daniela Butterworth Kata Boras-Granic Julie Hens Joshua Van Houten Wei Shi John Wysolmerski

Parathyroid hormone-related protein (PTHrP) regulates cell fate and specifies the mammary mesenchyme during embryonic development. Loss of PTHrP or its receptor (Pthr1) abolishes the expression of mammary mesenchyme markers and allows mammary bud cells to revert to an epidermal fate. By contrast, overexpression of PTHrP in basal keratinocytes induces inappropriate differentiation of the ventral...

Journal: :Annals of the American Thoracic Society 2015

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