Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “ECTODERM”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 829 records · Page 46Linked to original sources

Rapp-Hodgkin ectodermal dysplasia.

Rapp-Hodgkin ectodermal dysplasia is an autosomal dominant condition characterized by distinctive craniofacies, cleft lip or palate, dental hypoplasia with caries, dystrophic nails, and decreased to absent sweat glands and hair follicles. We report the third family to be described, and distinguish the condition from similar syndromes.

Ectodermal Dysplasia↗

Complete dentures for a child with hypohidrotic ectodermal dysplasia: a clinical report.

Young children with anodontia caused by hypohidrotic ectodermal dysplasia not only have difficulties in eating and speaking but can also sense that their appearance is different than others. Enabling children with HED to look and act more like their peers through the use of well-fitting and functioning dentures with age-appropriate denture teeth will greatly assist in their transitioning into the school years. Although denture fabrication requires multiple patient appointments and good cooperation, it is shown that even young children can cooperate for the denture-making process. The desire to be like others who have teeth can be a motivator for cooperation in even the young child. Children should be given every opportunity to develop to their fullest potential. The dentist can make a significant contribution to the overall development and well being of a child with HED.

Anodontia↗

Prosthodontic management of ectodermal dysplasia: a review of the literature.

Ectodermal dysplasia is commonly a difficult condition to manage with prosthodontics because of the typical oral deficiencies and because the afflicted individuals are quite young when they are evaluated for treatment. It is important that these individuals receive dental treatment at an early age for physiologic and psychosocial reasons. This article reviews the literature that pertains to the prosthodontic treatment of the disorder and the review includes considerations in behavior management and timing of treatment.

Anodontia↗

Prosthodontic rehabilitation of an anhidrotic ectodermal dysplasia patient: a clinical report.

This clinical report describes the characteristics and prosthodontic restoration of a young male patient with anhidrotic ectodermal dysplasia. With proper care and prosthodontic treatment, the patient can enjoy a relatively normal life. It is important that the patient and his parents fully understand the dental problems related to his physiologic and psychologic conditions. The need for continued dental treatment is necessary.

Anodontia↗

Ozena as presenting symptom of a rare and severe genetic disease: hypohidrotic ectodermal dysplasia.

Ozena is quite a common clinical finding in ENT practice in many countries, but even if the pathological picture is clear, its etiology is unknown. We report on two young females in which ozena was the presenting symptom of a rare and severe genetic disorder (hypohidrotic ectodermal dysplasia, HED). Etiopathogenetic theories on ozena and genetic problems of HED are discussed.

Adolescent↗

Ectodermal dysplasia and abnormal thumbs.

Two unrelated children, a girl and a boy, with alopecia, anomalous cutaneous pigmentation, abnormal thumbs, and endocrine disorders, including short stature and delayed bone age in one patient and juvenile onset diabetes mellitus in the other, are described. In one instance, the mother and the maternal grandmother had similar abnormalities, although of a less severe nature. Both children had normal nails and no unusual susceptibility to infections. We believe these two patients represent a previously undescribed syndrome of ectodermal dysplasia that may be inherited as an autosomal-dominant trait.

Alopecia↗

Uncombable hair syndrome: observations on response to biotin and occurrence in siblings with ectodermal dysplasia.

Three children are reported with uncombable hair syndrome, consisting of slow-growing, straw-colored scalp hair that could not be combed flat. The hairs appeared normal on light microscopy but on scanning electron microscopy were triangular in cross section, with canal-like longitudinal depressions. Oral biotin, 0.3 mg three times a day, produced significant improvement after 4 months in one patient, with increased growth rate and with strength and combability of the hair, although the triangular shape remained. The other two patients were unique in having associated ectodermal dysplasia. Their hair slowly improved in appearance and combability over 5 years without biotin therapy.

Biotin↗

Conservation of Pax gene expression in ectodermal placodes of the lamprey.

Ectodermal placodes contribute to the cranial ganglia and sense organs of the head and, together with neural crest cells, represent defining features of the vertebrate embryo. The identity of different placodes appears to be specified in part by the expression of different Pax genes, with Pax-3/7 class genes being expressed in the trigeminal placode of mice, chick, frogs and fish, and Pax-2/5/8 class genes expressed in the otic placode. Here, we present the cloning and expression pattern of lamprey Pax-7 and Pax-2, which mark the trigeminal and otic placodes, respectively, as well as other structures characteristic of vertebrate Pax genes. These results suggest conservation of Pax genes and placodal structures in basal and derived vertebrates.

Amino Acid Sequence↗

Avian neural crest cell fate decisions: a diffusible signal mediates induction of neural crest by the ectoderm.

During neurulation, a region of central ectoderm becomes thickened to form the neural plate which then folds upon itself to generate the neural tube, from which all neurons and glia cells of the central nervous system arise. Neural crest cells form at the border of the neural plate, where it abuts the prospective epidermis. The neural crest is a transient population of cells that undergo an epithelial-mesenchymal transition, become highly migratory and subsequently differentiate into most of the peripheral nervous systems as well as numerous other derivatives. The origin of neural crest cells at the epidermal-neural plate border suggests that an interaction between these two tissues may be involved in neural crest formation. By experimentally juxtaposing prospective epidermis with naive neural plate, we previously showed that an inductive interaction between these tissues can generate neural crest cells. Here, we further characterize the nature of this inductive interaction by co-culturing isolated neural plate and prospective epidermis on opposing sides of polycarbonate filters with differing pore sizes. We find that neural crest cells are generated even when epidermis and neural plate are separated by filters that do not allow cell contact. These results suggest that the epidermal inducer is a diffusible, secreted molecule. We discuss the developmental potential of neural crest precursors and lineage decisions that effect their differentiation into numerous derivatives.

Animals↗

Mapping around the Xq13.1 breakpoints of two X/A translocations in hypohidrotic ectodermal dysplasia (EDA) female patients.

Cellular hybrids were obtained from a t(X;12) identified in a female patient with hypohidrotic ectodermal dysplasia (EDA). This rearrangement had the same Xq13.1 cytogenetic breakpoint as a t(X;9) found in a previously observed EDA patient. A comparative analysis of these two rearrangements with nine probes was performed at the molecular level. These probes could define three subregions: three are proximal, two are distal, and four are between the two breakpoints. These last probes should prove useful for cloning the gene.

Blotting, Southern↗

A mutation in the connexin 30 gene in Chinese Han patients with hidrotic ectodermal dysplasia.

BACKGROUND: hidrotic ectodermal dysplasia (HED) or Clouston syndrome is a rare autosomal dominant disorder affecting the skin and its derivatives. It is characterized by the triad of nail dystrophy, alopecia, and palmoplantar hyperkeratosis. To date, all mutations have been involving in three codons: G11R, A88V and V37E in the connexin 30 (Cx30) gene have been shown to cause this disorder. OBJECTIVE: in order to analyze the mutations of the Cx30 gene in Chinese Han patients with HED. METHODS: we collected a large Chinese HED family consisting of a total of 81 individuals including 28 HED patients (14 males and 14 females). The whole coding region of Cx30 was amplified by polymerase chain reaction and products analyzed by direct sequencing, then further confirmed at the mRNA level by RT-PCR. RESULTS: we detected a transition, 31(G-->A), leading to a missense mutation (G11R) in genomic DNAs of 18 patients, and the point mutation was not found in 16 normal individuals in this HED family and in 188 unrelated, population-match control individuals. The transcription of mutated allele was confirmed by RT-PCR of Cx30 mRNA. CONCLUSION: our data suggests that a G11R missense mutation in the Cx30 gene can cause HED in Chinese Han population and emphasizes the importance of screening for this as well as other Cx30 gene mutations in the HED.

Adult↗

Wnt and FGF pathways cooperatively pattern anteroposterior neural ectoderm in Xenopus.

Previous gain-of-function assays in Xenopus have demonstrated that Xwnt-3a can pattern neural tissue by reducing the expression of anterior neural genes, and elevating the expression of posterior neural genes. To date, no loss-of-function studies have been conducted in Xenopus to show a requirement of endogenous Wnt signaling for patterning of the neural ectoderm along the anteroposterior axis. We report that expression of a dominant negative Wnt in Xenopus embryos causes a reduction in the expression of posterior neural genes, and an elevation in the expression of anterior neural genes, thereby confirming the involvement of endogenous Wnt signaling in patterning the neural axis. We further demonstrate that the ability of Xwnt-3a to decrease expression of anterior neural genes in noggin-treated explants is dependent upon a functional FGF signaling pathway, while the elevation of expression of posterior neural genes does not require FGF signaling. The previously reported ability of FGF to elevate the expression of posterior neural genes in noggin-treated explants was found to be dependent on endogenous Wnt signaling. We conclude that neural induction occurs initially in a Wnt-independent manner, but that generation of complete anteroposterior neural pattern requires the cooperative actions of Wnt and FGF pathways.

Animals↗

Highly restricted expression at the ectoderm-endoderm boundary of PIHbox 9, a sea urchin homeobox gene related to the human HB9 gene.

Characterisation of a sea urchin (P. lividus) homeobox gene PIHbox 9 is reported. The homeodomain of PIHbox9 is 95% identical to the homeodomain of the human HB9 gene, indicating that the two genes are highly related. Temporal expression analysis during sea urchin embryogenesis showed an absence of transcripts at early cleavage stages. At late gastrula stage, transcripts were barely detectable and reached the highest abundance at prism/early pluteus stages. By whole mount in situ hybridisation we observed a highly restricted expression in a few cells of the ectoderm-endoderm boundary of embryos at the prism stage. At pluteus stages, expression of PIHbox 9 was confined around the anus.

Animals↗

Gata2 and Gata3: novel markers for early embryonic polarity and for non-neural ectoderm in the chick embryo.

We have investigated in detail the expression patterns of two Gata genes, cGata2 and cGata3, during early chick development. In addition to confirming previously described expression of these two genes in developing brain, kidney and blood islands, this study reveals several important novel expression domains during very early stages of development. cGata2 is expressed in the area opaca in pre-primitive streak stages, forming a gradient along the A-P axis (strongest anteriorly). Both genes are expressed strongly in the entire non-neural ectoderm from stage 4+, and neither is expressed in prospective neural plate at any stage. Unlike other previously described non-neural markers, neither gene is expressed in the dorsal neural tube. We also describe dynamic expression of cGata2 and cGata3 during eye, ear and gut development.

Animals↗

CHE-14, a protein with a sterol-sensing domain, is required for apical sorting in C. elegans ectodermal epithelial cells.

BACKGROUND: Polarised trafficking of proteins is critical for normal expression of the epithelial phenotype, but its genetic control is not understood. The regulatory gene lin-26 is essential for normal epithelial differentiation in the nematode Caenorhabditis elegans. To identify potential effectors of lin-26, we characterised mutations that result in lin-26-like phenotypes. Here, we report the phenotypic and molecular analysis of one such mutant line, che-14. RESULTS: Mutations in che-14 resulted in several partially penetrant phenotypes affecting the function of most epithelial or epithelial-like cells of the ectoderm, including the hypodermis, excretory canal, vulva, rectum and several support cells. The defects were generally linked to the accumulation of vesicles or amorphous material near the apical surface, suggesting that secretion was defective. The CHE-14 protein showed similarity to proteins containing sterol-sensing domains, including Dispatched, Patched and NPC1. A fusion protein between full-length CHE-14 and the green fluorescent protein became localised to the apical surface of epithelial cells that require che-14 function. Deletions that removed the predicted transmembrane domains or extracellular loops of CHE-14 abolished apical localisation and function of the protein. CONCLUSIONS: We propose that CHE-14 is involved in a novel secretory pathway dedicated to the exocytosis of lipid-modified proteins at the apical surface of certain epithelial cells. Our data raise the possibility that the primordial function of proteins containing a sterol-sensing domain is to control vesicle trafficking: CHE-14 and Dispatched in exocytosis, Patched and NPC1 in endocytosis.

Amino Acid Motifs↗

Prosthodontic treatment with implant fixed prosthesis for a patient with ectodermal dysplasia: a clinical report.

Oral characteristics of ectodermal dysplasia (ED) include hypodontia or anodontia of the primary or permanent teeth, impacted teeth, malformed and widely spaced peg-like teeth, and underdeveloped alveolar ridges. Patients with this disease often need a multidisciplinary approach to treatment planning and dental treatment to regain appropriate function, esthetics, and comfort. The definitive treatment plan may include removable, fixed, or implant-supported prostheses or a combination of these options. Depending on the remaining available alveolar bone and the pattern of missing teeth, the ideal treatment option for an adult ED patient often includes the use of implants. This clinical report describes the multidisciplinary approach to diagnosis and treatment of ED in a 37-year-old woman. The treatment included a mandibular implant-supported fixed denture and a maxillary conventional overdenture fabricated to establish acceptable occlusal vertical dimension, esthetics, and oral function.

Adult↗

Myoblast diversification and ectodermal signaling in Drosophila.

The flight muscles of Drosophila derive from myoblasts found on the third instar disc. We demonstrate that these myoblasts already show distinctive properties and examine how this diversity is generated. In the late larva, Vestigial and low levels of Cut are expressed in myoblasts that will contribute to the indirect flight muscles. Other myoblasts, which express high levels of Cut but no Vestigial, are required for the formation of the direct flight muscles. Vestigial and Cut expression are stabilized by a mutually repressive feedback loop. Vestigial expression begins in the embryo in a subset of adult myoblasts, and Wingless signaling is required later to maintain this expression. Thus, myoblasts are divided into identifiable populations, consistent with their allocation to different muscles, and ectodermal signals act to maintain these differences.

Animals↗