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Heat loss in anhidrotic ectodermal dysplasia.

The dynamics of heat loss by 2 patients with classic anhidrotic ectodermal dysplasia were studied. Both were active in high school athletics and avoided heat injuries by various forms of behavior modification. Elevated core and skin temperature measurements were found at rest in comfortable environments. In a warm environment 35-45% of the heat generated was lost by radiation, 44-52% by conduction and convection, and only 4-6% by evaporation. Heat loss in control subjects was 9% by radiation, 17% by conduction/convection, and 67% by evaporation. The dry routes of heat dissipation used by the anhidrotic patients were inadequate to prevent a rise in core temperature.

Adolescent

Ectodermal dysplasia, mental retardation, cleft lip/palate and other anomalies in three sibs.

Three females in a sibship of 10 have a syndrome of mental retardation, ectodermal dysplasia, and cleft lip and/or cleft palate. Inconstant features are congenital skin defects, areas of hyperpigmentation, congenital adhesions between the eyelids, cicatricial atrophy of the scalp, abnormal E.E.G., partial anodontia, genital hypoplasia, syndactyly, and delayed skeletal growth and maturation. The mode of inheritance could be either dominant with incomplete penetrance, or autosomal recessive. The disorder has overlapping features with several previously delineated syndromes but in view of certain novel features its relationship to these is uncertain.

Abnormalities, Multiple

X-mapping in man: evidence against measurable linkage between anhidrotic ectodermal dysplasia and G6PD deficiency.

A Sardinian kindred segregating for X-linked anhidrotic ectodermal dysplasia (AED), glucose-6-phosphate dehydrogenase (G6PD) deficiency of Mediterranean type, and Xga blood antigen provides evidence against a measurable linkage between the loci for AED and G6PD. Moreover, from the segregation of the combined phenotypes in four scorable sons from two triple heterozygotes with phase known, it seems highly probable that the AED locus is nearer to the centromere than is the G6PD locus.

Blood Group Antigens

The transmission of impulses in the ectodermal slow conduction system of the sea anemone Calliactis parasitica (Couch).

1. The SS 1 fatigues in response to repetitive electrical stimulation. This fatigue is manifested by an increased conduction delay and a decreased SS 1 pulse amplitude. 2. Continued repetitive stimulation leads to the failure of the system. Recovery may take many seconds. Narrow strips of column fail more rapidly than wide strips. 3. The increased conduction delay is explained in terms of a decrease in the population of spiking cells. 4. A computer model is described and analysed. It suggests that conduction between electrically coupled ectoderm cells could be the basis for the SS1. The SS 1 may have properties not so far experimentally demonstrated; for example, under certain conditions it could behave as a local system.

Animals

[EEC syndrome: ectrodactyly, ectodermal dysplasia and cleft lip-palate (author's transl)].

Authors present a new and complete from of EEC syndrome (ectrodactyly, ectodermal dysplasia and cleft lip-palate), analysing its' clinical, genetic and therapeutic aspects. Syndrome malformations involving mainly mesenchymal tissue and with diverse clinical expression suggest a heterogenetic heredity. Participation of environmental and unknown factors is not excluded.

Cleft Palate

Impairment of cell-mediated immunity in ectodermal dysplasia with aplastic anemia.

A case of ectodermal dysplasia and aplastic anemia is presented in which a cell-mediated immunodeficiency led to a fatal Pneumocystis carinii infection. Elevated levels of IgG, IgA and IgD were present with normal specific antibody titres. A deficient cell-mediated immunity was documented by low T cell numbers, poor in vitro mitogenic responses, negative skin tests and by the histologic finding at autopsy of thymic dysplasia.

Anemia, Aplastic

[Contribution to familial ectodermal dysplasia].

The frequent occurrence of the clinical picture of ectodermal dysplasia in the family P. is described. The differences between subjects in symptomatology are discussed in detail. The author's experience speaks well for a great variability of the hereditary mode of this disease. Furthermore, advice is given on the detection and regular ambulatory supervision by the stomatologist.

Anodontia

Properties of extra-embryonic ectoderm isolated from postimplantation mouse embryos.

Extra-embryonic ectoderm isolated from the mouse embryo as late as 81/2 days post coitum can form cells with the morphological characteristics of trophoblast giant cells both in ectopic sites and in vitro. This similarity to the properties of ectoplacental cone tissue provides further support for the postulated common origin of both tissues from the trophectoderm of the blastocyst.

Animals

Cellular immunodeficiency in anhidrotic ectodermal dysplasia.

By using in vitro methods of patients with anhidrotic ectodermal dysplasia (AED) was shown to have depressed lymphocyte function when compared with a control group. IgE levels of the AED group were elevated above those of a control group at the p=0.01 level of significance. In vivo methods utilizing the application of DNCB demonstrated, in addition, decreased delayed hypersensitivity reactions in the anhidrotic patients. Thus there appears to be some degree of cellular immune hypofunction in patients with AED, all of whom have demonstrated at some time a lichenified dermatitis clinically indistinguishable from atopic dermatitis.

Antibody Formation

[Clouston's ectodermal dysplasia. A case report with biochemical study of keratin].

One familial case of ectodermal dysplasia of the Clouston's type is reported. The clinical picture consisted of hypotrichosis and dysonychia with normal sweating. The disease follows dominant autosomal transmission. Histologically, keratin was slightly abnormal. The biochemical study of keratin of hair and nails showed diminished cysteine.

Child

Mesodermalization of amphibian gastrula ectoderm in transfilter experiments.

Transfilter experiments were carried out with competent gastrula ectoderm of Triturus vulgaris and Ambystoma mexicanum as the reacting materials and blastoporal lip, alcohol-treated bone marrow and archenteron roof as the inducing materials, It was shown that a mesodermal inducing substance is able to penetrate Nuclepore filters of different pore sizes (3.0, 1.0, 0.4, 0.2 micrometer). The degree of mesodermal differentiations depends on the reacting materials, the inductors and the filters which were used in the transfilter experiments.

Ambystoma

On the differentiation of prospective ectoderm to a ciliated cell pattern in embryos of Ambystoma mexicanum.

The differentiation of the ectoderm in Ambystoma mexicanum (Harrison stage 26--27) was examined under in vivo and in vitro conditions by scanning electron microscopy under different experimental conditions. About one out of three flank epidermal cells was found to be ciliated in the undistrubed or control embryos. The shape of ciliated cells in the explants from the animal region was only slightly affected. In no case was it possible to find two adjacent ciliated cells, implying that these cells prevent the appearance of cilia in the cells in direct contact. Transformation to ciliated cells is suppressed by hypertonicity but favoured in a hypotonic medium. The differentiation of epidermis is also dependent upon the synthesis of RNA and some kind of sulphated glucosaminoglycan, corroborated by the inhibitory effect of actinomycin and selenate. The differences between the test series and the controls are discussed with regard to factors controlling embryonic epidermal differentiation.

Ambystoma

[Cross-reacting epithelial antigen of ectodermal origin in mouse tumors].

Cross-reacting antigen (CR-antigen) previously found by indirect immunofluorescence in cell elements of murine multilayer epithelial cells (except corneal epithelium) to play the role of antigenic label of cover epithelia of ectodermal origin was found in mice tumor cells, related histogenetically with multilayer epithelium (transplantable proventricular cancer, two strains of squamous-cell cervical cancer in mice). CR-antigen was observed in transplantable breast adenocarcinoma and in transplantable mice teratocarcinoma.

Adenocarcinoma

[Organization and differentiation of the somite mesoderm cultured in the presence of adjacent tissues (notocord, spinal cord, ectoderm, endoderm) in anurans].

The explantation of pieces of somitic mesoderm alone or in association with neighbouring tissues (notochord, spinal cord, ectoderm, endoderm) shows slearly the power of self-differentiation of the somitic tissue. Only, the spinal cord does not stimulate the differentiation of the somitic mesoderm into muscular tissue. Only the notochord does not stimulate the formation of typical myotomes. It seems that ii does not possess biochemical activity, its effect if reduced to a mechanical role.

Age Factors

Mammalian DNA methyltransferases in DNA methylation and imprinted gene expression in extraembryonic ectoderm of post-implantation embryos.

DNA methylation in mammals is mainly catalyzed by three DNA methyltransferases (DNMTs). Conventionally, DNMT1 is considered the primary DNMT protein for maintenance DNA methylation, whereas DNMT3A and DNMT3B function in de novo DNA methylation. In two previous studies, we demonstrated that DNMT3A and DNMT3B maintain genome-wide DNA methylation in embryonic stem (ES) cells and in the epiblast of post-implantation embryos. Interestingly, DNMT3A and DNMT3B also sustain genome-wide DNA methylation in the extraembryonic ectoderm (EXE) of post-implantation embryos, including repeats, genic and intergenic regions. Although DNMT1 plays a major role in maintaining DNA methylation at the imprinting control regions (ICRs) in the imprinted regions, DNMT3A and DNMT3B are required for preserving DNA methylation at the ICRs of a subset of imprinted regions in EXE, similar to the observations in ES cells and epiblast. Surprisingly, de novo DNA methylation mediated by DNMT3A and DNMT3B leads to increased DNA methylation at a large subset of imprinted regions. These results are consistent with what we previously elucidated in the epiblast of post-implantation embryos. Importantly, loss of DNA methylation at the ICR of an imprinted region, resulting from the absence of DNMT1 or two DNMT3 proteins, causes allelic expression switch of the corresponding imprinted genes in that imprinted region. This study provides further evidence that DNMT3A and DNMT3B exert both maintenance and de novo DNA methylation functions across the genome in post-implantation embryos. It also validates some previous findings for DNA methylation-dependent allelic expression switch of imprinted genes.

DNA methylation

Hidrotic ectodermal dysplasia: study of a large Chinese pedigree.

Hidrotic ectodermaldysplasia was found, to our knowledge, for the first time in a Chinese family in Malaysia, and it affected 15 members in five generations. The disease, which is transmitted as a non-sex-linked autosomal dominant trait, presumably originated from southern China. All 15 members had the typical nail, hair, and skin lesions, and we observed three different types of nail defects. Scalp alopeica was more extensive in the female members while keratoderma of the palms and soles was more notable in the male members. The nail and skin lesions also became severer with age. Except for the infectious eczematoid dermatitis present in the propositus, none had other skin or systemic disorders. All were relatively healthy and had normal life expectancies;

Adult