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Autosomal dominant ectodermal dysplasia.

A three generation family with hypohidrotic ectodermal dysplasia (ED) is presented. Attempts to categorize the disorder in the family as one of the recognized types of ED were unsuccessful. Affected members of the family have mild hypotrichosis, mild hypodontia, and variable degrees of hypohidrosis. Autosomal dominant inheritance is proposed. Scanning electron microscopy on the hair of members of the family is presented. While there is no specific pattern of defects of the hair of affected persons, the cuticular layer is defective and there are longitudinal grooves in the hair shafts.

Child, Preschool↗

[Ectodermal dysplasia: multiple manifestations of a hereditary disease].

Ectodermal dysplasia is a hereditary disease that can manifest itself in many ways. Four cases, including two cases involving heterozygote twins, are presented. The clinical signs of the disease, as observed are compared to the knowledge offered in the classic and modern literature. Special attention is given to the intraoral manifestations of the disease, and to the solutions that a multidisciplinary dental team could consider to improve the masticatory function and the facial esthetics of patients affected by this disease.

Anodontia↗

Hidrotic ectodermal dysplasia: a clinical and ultrastructural observation.

Hidrotic ectodermal dysplasia (HED) was observed in a 49-year-old Japanese man. His clinical signs included alopecia, dystrophic nails and palmoplantar keratoderma, but his teeth, facial appearance and sweating were normal. In his family, 9 members in 5 generations were affected, suggesting that the disorder has an autosomal dominant mode of inheritance. Biopsy specimens of the hyperkeratotic lesions of the palm and sole were studied with an electron microscope. The most prominent feature was the increase of the number of desmosomal discs in the thickened stratum corneum, suggesting that hyperkeratosis observed in HED is due to the delayed desquamation of the stratum corneum.

Ectodermal Dysplasia↗

Psychosocial stress and adaptive functioning in children and adolescents suffering from hypohidrotic ectodermal dysplasia.

In its fully manifest form, hypohidrotic ectodermal dysplasia (HED) leads to a typical dysmorphia of the face, referred to as "old man" facies. Few studies have been conducted on how children and adolescents deal with and adapt to the effects of this illness. The psychosocial stress and adaptive functioning of such patients was investigated by means of a semistructured interview conducted on a sample of 14 children and adolescents with varying degrees of this disease. The results revealed that adaptive functioning is not only dependent on the severity of symptoms. The child's intellectual potential and personality, how the disease is dealt with within the family, and reactions from the child's environment influence adaptive functioning in different ways.

Adaptation, Psychological↗

Refined localization of the gene for Clouston syndrome (hidrotic ectodermal dysplasia) in a large French family.

Hidrotic ectodermal dysplasia (HED) or Clouston syndrome is a rare autosomal dominant disorder characterized by nail dystrophy, alopecia and palmoplantar hyperkeratosis, which maps to chromosome 13q11-q12.1. We confirmed linkage of HED to this region in a large French family. To define the critical region for HED, detailed haplotypes were constructed with new pericentromeric polymorphic markers. A recombination event in the family indicates that the HED locus maps centromeric to D13S1832. Our French family does not share a common haplotype with other pedigrees previously published (particularly French-Canadian), indicating that the mutations in these families are likely to be of different origin.

Chromosomes, Human, Pair 13↗

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↗

Clinical aspects of X-linked hypohidrotic ectodermal dysplasia.

Boys with X-linked hypohidrotic ectodermal dysplasia and their families were studied. Many suffered severe illness in early childhood and nearly 30% died; many had feeding problems, severe fever, atopic disease, and recurrent respiratory infections. Some infants failed to thrive. We found no consistent common endocrine or immunological abnormality, although, most had abnormal immunoglobulin production. This may be related to the abnormal mucosa of the gastrointestinal and respiratory tracts which exacerbates the chronic obstructive airways disease found later in life in those who smoke. Mental handicap was not a feature, although convulsions sometimes occurred during fever. Early diagnosis is important to avoid attacks of severe fever and so that rational management may be planned for other problems that arise. Dental advice should be sought before school age and genetic counselling may also be required. Many female carriers may be recognised at clinical examination: their affected sons can then be diagnosed more readily.

Adolescent↗

Longitudinal study of jaw growth and prosthetic management in a patient with ectodermal dysplasia and anodontia.

A patient with hypohidrotic ectodermal dysplasia and anodontia was studied clinically and cephalometrically from 6 to 18 years of age. This case is exceptional in that the patient was a young girl. Five sets of complete dentures were fitted during this period. Periodic recall examination and adjustment maintained good oral function and aesthetics. Serial cephalometric analysis of craniofacial development revealed that growth of the maxilla was slightly reduced, but there was no detectable effect in the mandible. Three-dimensional analysis of the alveolar ridge form from serial casts showed that increase of the anteroposterior arch dimension was larger than that of the lateral arch dimension in both jaws. There was a lateral expansion in the anterior and premolar regions and a considerable height increase in the posterior tooth region of the upper alveolar ridge. Our findings support those of Sarnart et al. (1953) in showing that lack of teeth did not affect growth of the jaws.

Anodontia↗

Reduced epidermal growth factor receptor expression in hypohidrotic ectodermal dysplasia and Tabby mice.

Patients with hypohidrotic ectodermal dysplasia (HED) and Tabby (Ta) mice lack sweat glands and there is compelling evidence that these phenotypes are caused by mutations in the same highly conserved but unidentified X-linked gene. Previous studies showed that exogenous epidermal growth factor (EGF) reversed the Ta phenotype but the EGF status in HED patients has not been studied at all. Studies reported herein investigated the hypothesis that the EGF signaling pathway is involved in HED/Ta. Fibroblasts from HED patients had a two- to eightfold decrease in binding capacity for (125)I-labeled EGF, a decreased expression of the immunoreactive 170-kD EGF receptor (EGFR) protein, and a corresponding reduction in EGFR mRNA. Reduced expression of the EGFR also was observed in Ta fibroblasts and liver membranes. Other aspects of the EGF signaling pathway, including EGF concentration in urine and plasma, were normal in both HED patients and Ta mice. We propose that a decreased expression of the EGFR plays a causal role in the HED/Ta phenotype.

Animals↗

EDAR mutation in autosomal dominant hypohidrotic ectodermal dysplasia in two Swedish families.

BACKGROUND: Hypohidrotic ectodermal dysplasia (HED) is a genetic disorder characterized by defective development of teeth, hair, nails and eccrine sweat glands. Both autosomal dominant and autosomal recessive forms of HED have previously been linked to mutations in the ectodysplasin 1 anhidrotic receptor (EDAR) protein that plays an important role during embryogenesis. METHODS: The coding DNA sequence of the EDAR gene was analyzed in two large Swedish three-generational families with autosomal dominant HED. RESULTS: A non-sense C to T mutation in exon 12 was identified in both families. This disease-specific mutation changes an arginine amino acid in position 358 of the EDAR protein into a stop codon (p.Arg358X), thereby truncating the protein. In addition to the causative mutation two polymorphisms, not associated with the HED disorder, were also found in the EDAR gene. CONCLUSION: The finding of the p.Arg358X mutation in the Swedish families is the first corroboration of a previously described observation in an American family. Thus, our study strengthens the role of this particular mutation in the aetiology of autosomal dominant HED and confirms the importance of EDAR for the development of HED.

Abnormalities, Multiple↗

Otologic manifestations of ectodermal dysplasia.

OBJECTIVES: To determine the range and prevalence of otologic disorders in patients with ectodermal dysplasia (ED) and provide a general review of its multiple otolaryngological manifestations. DESIGN: Case series. SETTING: Ectodermal dysplasia family conference. PATIENTS: Sixty-nine individuals with ED were evaluated. The average age was 11 years (range, 1-56 years). Most were male patients (44 [64%]), and most had Christ-Siemens-Touraine syndrome/hypohidrotic ED (42 [61%]), with the remaining having Hay-Wells, Clouston, and ectrodactyly ED clefting syndromes and unclassified types of ED. INTERVENTIONS: Questionnaire including a quality-of-life assessment modeled after the Otitis Media 6 instrument, physical examination, screening audiogram, and tympanometry. RESULTS: Of the 69 patients, 15 (22%) had a known history of hearing loss, and over half reported some level of difficulty processing verbal information (30 patients [43%] reported speech problems and 4 patients [6%] required hearing aids). A history of otitis media was common, with 15 patients (21%) presenting with tympanostomy tubes in place. The mean +/- SD quality-of-life rating was 2.0 +/- 1.1 (range 1-7), with lower scores suggesting less of a problem. On physical examination, 18 patients (26%) had pinna anomalies. One case of advanced cholesteatoma and 2 cases of external auditory canal stenosis were identified. Of the 24 patients who received 4-tone screening audiogram, 2 (8%) had a highest pure-tone average threshold of 50 to 65 dB, whereas 5 patients (21%) had a 30- to 45-dB threshold, with the remaining having a 0- to 25-dB threshold. CONCLUSION: In our study, which is, to our knowledge, the largest reported collection of ED patients evaluated for otologic disease, most patients were found to have 1 or more otologic abnormalities, ranging from auricular anomaly to complications of otitis media to profound hearing loss.

Adolescent↗

A single point mutation within the ED1 gene disrupts correct splicing at two different splice sites and leads to anhidrotic ectodermal dysplasia in cattle.

The ectodysplasin 1 gene ( ED1) encodes a signaling molecule of the tumor necrosis factor family that is involved in fetal development of ectodermal appendages. Mutations in the ED1 gene are responsible for X-linked anhidrotic ectodermal dysplasia characterized by impaired development of hair, teeth, and eccrine sweat glands in human, mouse, and cattle. Two isoforms of ectodysplasin 1, termed ED1-A1 and ED1-A2, arise by alternative splicing and bind to different receptors. We identified a novel ED1 splice site mutation in a cattle family with X-linked anhidrotic ectodermal dysplasia. The point mutation is located within a 5' splice site (splice donor) at the beginning of intron 8 that is used exclusively in the alternatively spliced ED1-A1 transcript. Remarkably, cDNA sequencing demonstrated that both physiological transcripts, i.e., the ED1-A1 and the ED1-A2 splice variant, were affected by this point mutation. In an affected animal, the use of cryptic internal splice donor and acceptor sites within exon 8 lead to the production of a single transcript lacking 51 or 45 bp with respect to the normal ED1-A1 or ED1-A2 transcripts, respectively. The translated protein of the mutated transcript contained a large deletion in the functionally important C-terminal tumor necrosis factor-like domain thus causing the observed phenotype of anhidrotic ectodermal dysplasia. Our findings suggest the presence of a splice enhancer in the ED1 gene in the region of the mutation.

Amino Acid Sequence↗

Ectodermal dysplasia showing clinical overlap between AEC, Rapp-Hodgkin and CHAND syndromes.

The ectodermal dysplasias represent a complex collection of congenital abnormalities of skin, hair, teeth, nail, and sweat gland development, many of which have overlapping clinical features. In this report, we describe a 7-year-old girl, born to clinically normal parents, with ankyloblepharon, cleft lip/palate and hair abnormalities, features resembling the autosomal dominant disorder, ankyloblepharon-ectodermal dysplasia-clefting (AEC) syndrome, which results from mutations in the sterile-alpha motif domain of the gene encoding the transcription factor, p63. However, direct sequencing of the p63 gene in this individual did not reveal any pathogenic sequence variants. Moreover, two of her paternal cousins were discovered to have similar congenital ectodermal anomalies, raising the alternative possibility of an autosomal recessive pattern of inheritance. Furthermore, all affected individuals lacked a history of erosive scalp dermatitis that is usually characteristic of AEC syndrome. Instead, the scalp hair was coarse and wiry. In addition, another atypical feature, hypohidrosis, was present. Collectively, the clinical features also resembled Rapp-Hodgkin syndrome, Bowen-Armstrong syndrome and CHAND syndrome, but did not appear to fit neatly with any one particular disorder. This case highlights the difficulties in trying to classify the ectodermal dysplasia syndromes on clinical features alone.

Child↗

Growth analysis of a patient with ectodermal dysplasia treated with endosseous implants: 6-year follow-up.

The purpose of this article is to report the clinical course and 6-year follow-up of a child with ectodermal dysplasia who was treated with implants surgery very early. This article reports placement of mandibular endosseous implants in a 4-year-old patient with hypohidrotic ectodermal dysplasia and oligodontia. This congenital anomaly does not appear to retard healing and the osseointegration remains after 6 years and 3 months of loading. Mandibular and maxillary skeletal growth and development was normal. However, because of lack of alveolar growth, in time, patient's vertical growth pattern changed to low angle. This could be corrected by changing the vertical heights of the abutment and prosthesis. As a result, in ectodermal dysplasias cases with anadontia, early implant placement and fixed prosthesis could be a good multidisciplinary treatment option for poor cooperative child.

Cephalometry↗

Subtotal amelia in a child with autosomal recessive hypohidrotic ectodermal dysplasia.

We report an inbred Tunisian family, in which the proband manifested signs of hypohidrotic ectodermal dysplasia, subtotal amelia, scoliosis and left renal agenesis. Two other family members had the full clinical criteria of hypohidrotic ectodermal dysplasia, characterized by deficient sweat glands, hypodontia, hypoplasia of the mucous glands, and fine hair. Nine family subjects had variable clinical expression of the disorder.

Child↗

Induction of sweat glands by epidermal growth factor in murine X-linked anhidrotic ectodermal dysplasia.

Tabby (Ta), a murine X-linked mutant gene, produces a syndrome of ectodermal dysplasia including anhidrosis (absence of sweat glands). Development of sweat glands is related to that of dermal ridges (dermatoglyphics) and abnormal ridges may be associated with absence of sweat glands in the human syndrome of hypohidrotic ectodermal dysplasia (HED). We have found that dermal ridges occur in normal mice but are lacking in Ta mutants. Previously we showed that epidermal growth factor (EGF) reverses delayed eyelid opening and incisor eruption in Ta mice. We now report that EGF induces development of dermal ridges and functional sweat glands in Ta/Y hemizygotes, indicating a role in mammalian morphogenesis. Ta seems to be genetically homologous to human X-linked HED, as Ta maps close to loci homologous to linkage markers of HED and the two syndromes share many traits, including absence of all or most sweat glands. Absence of these glands causes hyperpyrexia, a clinical emergency in infants with HED; reversal of the trait in the mouse homologue of the disease indicates that an important genetically determined congenital defect in humans may become treatable.

Animals↗

A novel mutation A1270G of the EDA1 gene causing Tyr343Cys substitution in ectodysplasin-A in a family with anhidrotic ectodermal dysplasia.

The structure of the EDA1 gene was investigated in a patient with anhidrotic ectodermal dysplasia. Sequence analysis revealed a novel A1270G transition in exon 9 of the EDA1 gene in the patient and his uncle, whereas the patient's mother and grandmother were heterozygotes. This mutation resulted in Tyr343Cys substitution in the extracellular domain of the EDA1 gene product - ectodysplasin-A. The additional Cys343 was located between Cys332 and Cys346 and formed with Cys352 a cluster of four closely situated residues that could potentially form disulfide bonds. This mutation might affect the tertiary structure of the receptor-binding domain of ectodysplasin-A and precipitate the clinical symptoms of anhidrotic ectodermal dysplasia.

Adenine↗

Autosomal recessive anhidrotic ectodermal dysplasia in a large Moroccan family.

We studied a large Moroccan family in which anhidrotic ectodermal dysplasia is transmitted as an autosomal recessive trait. Fourteen family members, both males and females, were affected and they all had a common ancestor. Linkage analysis by homozygosity mapping in this family will permit the gene localisation of this rare form of anhidrotic ectodermal dysplasia.

Child↗