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Scarcity of mutations detected in families with X linked hypohidrotic ectodermal dysplasia: diagnostic implications.

Indirect molecular diagnosis of X linked hypohidrotic ectodermal dysplasia (XLHED), a congenital disorder of hair, teeth, and eccrine sweat glands, has been possible by linkage analysis. Direct mutation detection would enable carrier detection in female relatives of sporadic cases, as well as help distinguish XLHED from the rarer, clinically indistinguishable, autosomal recessive disorder ARHED. Recently, a candidate gene for XLHED has been identified. Genomic DNA from 162 affected males and 21 females, who were either obligate carriers or had manifestations of the disorder, were screened by SSCP analysis. A subset of the patients had been previously screened for large genomic deletions and had limited screening of a single exon by SSCP analysis. The two known exons were amplified using flanking primers. Approximately 7% of patients, all males, had putative mutations identified within exon 1, but no variants were found within exon 2. Ten different putative mutations and four probable polymorphisms were identified. Both of the known exons were sequenced in 10 patients who had no detectable SSCP changes, but no additional mutations were found. No correlation between phenotype and genotype was evident between either affected subjects or subjects with or without detectable mutations. The results of the study indicate that only a small minority of affected males can be diagnosed by direct mutation analysis, and that the remainder of the patients are likely to have mutations in as yet unidentified exons of the EDA gene. Linkage analysis, in informative situations, therefore remains the only practical diagnostic option available.

Cohort Studies↗

Female with hypohidrotic ectodermal dysplasia and de novo (X;9) translocation. Clinical documentation of the AnLy cell line case.

We present here a historical documentation of a female with X-linked hypohidrotic ectodermal dysplasia (XHED) and a de novo X/9 chromosome translocation. The patient was verbally reported by Dr. P.L. J. Cook to the HGM conference in 1973, but was subsequently lost to follow up. We have since traced her and confirmed the diagnosis of XHED with moderately severe mental retardation. According to Dr. P. L. J. Cook's records, fibroblast cell line AnLy GMO 705, was derived from this patient. Another female with a de novo X/12 chromosome translocation and hypohidrotic ectodermal dysplasia was recently reported. In both cases, the X chromosome breakpoint appears to be at Xq13.1.

Cell Line↗

The role of prosthodontists in habilitation and rehabilitation in rare disorders: the ectodermal dysplasia experience.

PURPOSE: The aim of this article is to highlight the strong worldwide trend of enhancing the opportunities for individuals with rare disorders to get adequate information and treatment. Hypohidrotic ectodermal dysplasia is used as an example. MATERIALS AND METHODS: The development in recent years of databases for rare disorders, the establishment of resource centers in dentistry, and the strong movement of user influence by the formation of patient organizations and exchange of information through the Internet are described. Reference is made to the recent Scandinavian consensus conference on ectodermal dysplasia. RESULTS: Motives for the centralization of treatment planning to resource centers for persons with rare disorders, the compilation of treatment outcomes in databases, and the advocation of a multidisciplinary team approach in dentistry are presented. CONCLUSION: The prosthodontic profession has a key position in the habilitation and rehabilitation of many different diagnoses of rare disorders.

Adolescent↗

[Congenital anhidrotic ectodermal dysplasia in a female infant].

Fever of unknown origin, unability to sweat, hypotrichosis, absent eyebrows and thick everted lips were symptoms in a 3 month old female infant and raised the suspicion of anhidrotic ectodermal dysplasia. After several days of high fever and enteritis our patient presented with convulsions which could hardly be interrupted for a couple of days. Two months later brain scanning revealed serious brain damage. Finally the diagnosis of anhidrotic ectodermal dysplasia was confirmed by the unability to sweat by means of the quantitative pilocarpin iontophoresis test. Skin biopsy showed absence of the eccrine glands.

Biopsy↗

Ectodermal dysplasia in females and inversion of chromosome 9.

Absence of sweat glands, hypotrichosis, hypodontia, characteristic facial features, and intolerance to heat, without dystrophia of the nails, are manifestations of sex linked hypohydrotic ectodermal dysplasia. Three males and two females were affected in a family in which the affected females were also carrying a pericentric inversion of chromosome 9. Those phenotypically normal females in this pedigree who were obligate carriers had normal karyotypes. One of the affected females (the proband) had, in addition, primary amenorrhoea, absence of the mammary glands, and rudimentary internal genitalia. The fact that clinical manifestations of ectodermal dysplasia in the carrier females of this family are only observed in those also carrying a pericentric inversion of chromosome 9 in peripheral blood leucocytes perhaps suggests that non-random inactivation of the paternal X chromosome has occurred as a consequence of the inversion.

Adolescent↗

[Anhidrotic ectodermal dysplasia: congenital ozena].

We present a series of cases on Anhidrotic. Ectodermal Dysplasia, illness characterized by an incomplete development of the annexed skin, especially of the hair, nails, and absence of sweat, sebaceous and mucous glands, and their repercussion in the ORL sphere.

Child, Preschool↗

Craniotubular dysplasia with severe postnatal growth retardation, mental retardation, ectodermal dysplasia, and loose skin: Lenz-Majewski-like syndrome.

The heterogeneous group of craniotubular dysplasias is characterized by modeling errors of the craniofacial and tubular bones. Some conditions in this category cause not only skeletal abnormalities but also a variety of mesoectodermal dysplasias, as exemplified in Lenz-Majewski syndrome (MIM 151050), which comprises craniodiaphyseal dysplasia, failure to thrive, mental retardation, proximal symphalangism, enamel hypoplasia, and loose skin. We report on a boy with a hitherto unknown multisystem disorder, including skeletal changes that were regarded as a form of craniotubular dysplasia. The patient had a large head, exophthalmos, a broad nasal root, anteverted nostrils, large auricles, thick lips, micrognathia, severe postnatal growth retardation with emaciation, severe mental retardation, sparse hair growth, enamel hypoplasia, and thin, loose skin with hyperlaxity. Skeletal changes consisted of thickened calvaria, sclerosis of the skull base and facial bones, thick ribs, and metaphyseal undermodeling of the tubular bones. In addition, generalized osteopenia was evident. The present disorder overlaps phenotypically with Lenz-Majewski syndrome; nevertheless, the absence of diaphyseal hyperostosis and proximal symphalangism in the present patient was not consistent with Lenz-Majewski syndrome.

Adult↗

Child with De Novo t(1;6)(p22.1;p22.1) translocation and features of ectodermal dysplasia with hypodontia and developmental delay.

We report on a 6.5-year-old girl with a balanced translocation between the short arms of chromosomes 1 and 6. She was referred for genetics evaluation because of developmental speech delay and congenital absence of several deciduous and permanent teeth. She was very sensitive to noise (hyperacusis), had poor hair and nail growth, decreased sweating, and turned very red with high fever. She had microcephaly (head circumference at the second centile; weight and height were at 25th centile), short palpebral fissures, epicanthal folds, sparse eyelashes, large ears, partial anodontia, short finger and toenails, and dry skin. She had mild developmental delay. Family history was significant for learning problems in two paternal uncles, one paternal aunt, and several paternal cousins. Thyroid studies, calcium, phosphorus, and alkaline phosphatase levels were normal. Her karyotype was 46,XX,t(1;6)(p22.1;p22.2), and parental karyotypes were normal. This apparently balanced translocation may have resulted in either a submicroscopic loss or disruption of a gene or genes involved in ectodermal dysplasia. There are no reported cases of ectodermal dysplasia associated with this chromosome rearrangement.

Anodontia↗

Ectrodactary, ectodermal dysplasia, and cleft lip-palate syndrome.

The EEC syndrome (ectrodactyly, ectodermal dysplasia and cleft lip-palate) is a rare disorder inherited as an autosomal dominant trait or can occur sporadically. We describe a case of this syndrome with chronic ocular surface disorder secondary to abnormalities of ocular adnexia.

Abnormalities, Multiple↗

Brief clinical report: new, autosomal dominant form of ectodermal dysplasia.

We describe a 15-year-old boy with an ectodermal dysplasia syndrome (EDS) associated with unilateral adrenal cyst. The EDS combination of aplasia cutis verticis, hypohidrosis, nipple/breast hypoplasia, onychodysplasia, and delayed dental eruption with minor tooth anomalies has not been previously reported as an autosomal dominant trait. The association with adrenal cyst may alert other units to review their experience to determine if such combination is more than a coincidence.

Adolescent↗

A gene for autosomal dominant hypohidrotic ectodermal dysplasia (EDA3) maps to chromosome 2q11-q13.

Autosomal dominant hypohidrotic ectodermal dysplasia (ADHED) is a disorder characterized by fine, slow-growing scalp and body hair, sparse eyebrows and eyelashes, decreased sweating, hypodontia, and nail anomalies. By genetic linkage analysis of a large ADHED kindred, we have mapped a gene for ADHED (EDA3) to the proximal long arm of chromosome 2 (q11-q13). Obligate recombinations localize EDA3 to an approximately 9-cM interval between D2S1321 and D2S308, with no apparent recombinations with markers D2S1343, D2S436, D2S293, D2S1894, D2S1784, D2S1890, D2S274, and CHLC.GAAT11C03.

Chromosomes, Human, Pair 2↗

Sweating in the 'anhidrotic type' of congenital ectodermal dysplasia.

Whole body sweat rate in two brothers suffering from congenital ectodermal dysplasia (CED) was measured. At a moderate heat load (DBT 30 degrees C and 50% relative humidity) we found no apparent weight loss due to sweating. At a higher heat load (DBT 36 degrees C, 50% relative humidity) sweating was observed, but only at levels approximately two thirds of those observed in normal controls. In the light of these experimental results, we support the suggestion that the nomenclature for CED patients should be changed. Instead of the present classification of anhidrotic CED and hidrotic CED, it is suggested that the terms hypohidrotic and hidrotic be substituted.

Adolescent↗

Treatment of congenital ectodermal dysplasia with zygomatic implants: a case report.

Dental abnormalities associated with ectodermal dysplasia (ED) can result in severe functional and esthetic problems. To correct these problems, dental implants have increasingly become the treatment of choice. This patient study illustrates the use of implants to rehabilitate a 20-year-old ED patient who initially presented with only 2 permanent and 6 primary teeth in the maxilla. Along with conventional endosseous implants, 2 specially designed zygomatic implants were utilized to avoid the need for bone grafting in the patient's severely resorbed maxilla. This expedited achievement of the final satisfactory result.

Adult↗

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↗