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A Wevers

Publications and source records attributed to A Wevers.

32 records · Page 2Linked to original sources

Expression of nicotinic acetylcholine receptors in the rat superior cervical ganglion on mRNA and protein level.

The expression of nicotinic acetylcholine receptors (nAChR) in the rat superior cervical ganglion was investigated by Western blotting, immunohistochemistry and non-radioactive in situ hybridization applying probes for the alpha 4-1 and beta 2 subunit mRNA. Immunoblot analysis of homogenized ganglia using the anti-nAChRs antibody WF6 revealed a labeled protein band of apparent molecular weight of 40 kDa which is typical for the alpha subunit of nAChRs. Applying double-labeling immunofluorescence with antibodies against tyrosine hydroxylase, nAChR-like molecules were identified in most postganglionic neurons and in a subpopulation of small intensely fluorescent (SIF) cells. alpha 4-1 and beta 2 subunit mRNAs were detected in all perikarya of postganglionic sympathetic neurons but not in SIF cells. These results suggest that antibodies raised against purified Torpedo AChR bind to nAChR in sympathetic ganglia and indicate that alpha 4-1 and beta 2 subunits are constituents of nAChRs in sympathetic postganglionic neurons but not of SIF cells.

Animals↗

Cellular distribution of nicotinic acetylcholine receptor subunit mRNAs in the human cerebral cortex as revealed by non-isotopic in situ hybridization.

The pharmacology of telencephalic nicotinic acetylcholine receptors (nAChRs) has become an important issue in recent years. While in the human brain a direct pharmacological assessment is difficult to achieve the visualization of nAChRs has been enabled by histochemical techniques providing an ever increasing and improving resolution. Receptor autoradiography was used to visualize binding sites on the level of cortical layers whereas immunohistochemistry has allowed for the cell type-specific and ultrastructural localization of receptor protein. Further investigations have to elucidate the cellular sites of NAChR biosynthesis by visualizing subunit-specific transcripts. Using autopsy samples of the human precentral cortex (Area 4) as a paradigm we have applied digoxigenin-labeled cRNA probes to localize transcripts for the alpha 3- and alpha 4-1-subunits of the nAChR. In accordance with findings in the monkey cortex, the alpha 3-subunit seems to be expressed mainly in pyramidal neurons of layers III-VI of the human cerebral cortex. Transcripts for the alpha 4-1-subunit, by contrast, appear to be present in a large number of neurons throughout all layers of the cerebral cortex, consonant with its ubiquitous distribution in the rodent brain. The present findings show that also in human autopsy brains the cell type-specific detection of nAChR transcripts is possible. For the future, this technique will enable to investigate the expression of receptor transcripts in diseased human brains as compared to controls.

Adult↗

Anthralin: how does it act and are there more favourable derivatives?

Anthralin is still the most effective and safest therapeutic agent for treatment of psoriasis. Our data may assist toward an understanding of its mode of action and introduce new derivatives, more antiproliferative and less toxic than anthralin in vitro. Anthralin exerts a direct effect on keratinocytes and leukocytes. In time-lapse studies it significantly prolonged the prophase of mitotic keratinocytes in subtoxic doses and suppressed the expression of keratin 6 mRNA in the immediately suprabasal layer of psoriatic epidermis in vivo. Anthralin inhibits the transformation of lymphocytes and the release of reactive oxygen species from activated leukocytes, in vitro. We provide evidence that these effects of anthralin are mediated by protein kinase C. Twelve new hydrophilic derivatives of anthralin, including a 1,8-dimethoxy compound, as well as C-2 and C-10 substituted anthrones were tested on human keratinocytes. The antiproliferative effect of those derivatives bearing lacton rings at a C-10, consisting of 4, 5, or 6 C atoms, exceeded that of anthralin and were equally or less cytotoxic than the parent drug. These compounds had no pro-drug character in vitro, since they did not metabolize via anthralin, as shown by HPLC. These data indicate that there may be anthralin derivatives with more favourable properties for topical therapy than anthralin itself.

Anthralin↗

Keratin pattern of acanthosis nigricans in syndromelike association with polythelia, polycystic kidneys, and syndactyly.

BACKGROUND: Acanthosis nigricans (AN) comprises a broad spectrum of etiologic subtypes. The underlying pathomechanisms have not yet been completely clarified. We present a patient affected with a syndromelike AN subtype including disturbed epidermopoiesis as evidenced by immunohistologic findings and in situ hybridization. OBSERVATIONS: A 54-year-old white man contracted AN during childhood. There were connate malformations consisting of webbed toes II/III on the right side and a supernumerary left mammilla. As an adult he developed psoriasis vulgaris, obesity, and latent diabetes mellitus, polycystic kidney and liver disease. With regard to keratin 6 mRNA, and the protein expression of keratin 6/16, KI-67, and proliferating cell nuclear antigen, the AN lesion showed moderate hyperproliferation. A much higher degree of hyperproliferation was evident in psoriatic areas of the patient's skin. In contrast to psoriatic tissue, basal keratinocytes of the AN showed an unusually high expression of keratin 18 and 19 protein. CONCLUSIONS: The observation thus deals with a unique, syndromelike constellation of AN characterized by a particular epidermal pattern of moderate hyperproliferation. A further dysregulation of protein expression in the epidermis is indicated by the demonstration of the rare keratins 18 and 19 in basal keratinocytes of the AN lesion.

Abnormalities, Multiple↗

Changes of epidermal cell morphology and keratin expression induced by inhibitors of protein kinase C.

Several lines of evidence show protein kinase C as being involved in various regulatory processes in keratinocyte biology, e.g. proliferation and differentiation. In the present study, we investigated the effects of three different inhibitors of protein kinase C, staurosporine, CP 46'665-1, and tiflucarbine, on cell morphology and keratin expression in a non-tumorigenic human keratinocyte cell line (HaCaT cells). Staurosporine, being the most potent inhibitor of protein kinase C activity in vitro, and CP 46'665-1 induced morphological transformation to a fibroblast-like cell shape. In contrast, no changes in cell morphology were observed after exposure to tiflucarbine. The investigation of keratin expression in HaCaT cells grown in the presence of the different compounds revealed the following changes: After 72 h of cultivation, keratins 8 and 18 were still expressed in treated cells, whereas expression of keratin 13 was decreased as compared to control cells. Immunoblotting to detect vimentin demonstrated its absence in treated and control cells. Since tiflucarbine is known as a dual protein kinase C/calmodulin inhibitor whereas staurosporine and CP 46'665-1 do not antagonize calmodulin function, it might be possible that not only protein kinase C but also calmodulin is involved in the process leading to the morphological changes.

Alkaloids↗

Palmoplantar keratoderma with tonotubular keratin.

A 61-year-old man with palmoplantar keratoderma with an unusual tonotubular keratin is reported. The histologic findings, genetic transmission, and clinical course were similar to epidermolytic palmoplantar keratoderma (Voerner type), but keratinocytes ultrastructurally displayed a tonotubular cytoskeleton, which has not been previously described, instead of a tonofilamentous one. Electrophoretically, we found no difference in the keratin pattern of normal plantar skin, skin in palmoplantar keratoderma of Voerner, and that of our patient's skin. Therefore the tubular keratin most likely formed as a result of a posttranslational change of keratin polymerization.

Humans↗

Antiproliferative potential of zidovudine in human keratinocyte cultures.

Because the beneficial effects of zidovudine in human immunodeficiency virus infection-associated psoriasis have recently been observed, this study focused on the drug's action on the rapidly proliferating human HaCaT keratinocyte line as an in vitro model for epidermal hyperproliferation. Cultures in log growth phase were exposed to zidovudine for 2 days. Zidovudine slowed proliferation in a dose-dependent fashion as evidenced by 50% inhibition concentrations of 33 mumol/L (cell number), 30 mumol/L (protein content), 0.9 mumol/L (protein synthesis), and 0.7 mumol/L (DNA synthesis). Significant (p less than 0.01) reduction of cell viability to 94.6% and 87.2%, as well as morphologic manifestations of cytotoxicity, were first evident after 2 days' exposure to maximal drug concentrations of 10 and 100 mumol/L, respectively. Control viability, assayed by trypan blue exclusion, was 98.0%. Direct cytotoxic plasma membrane injury could be ruled out by the absence of any increase in cytoplasmic lactate dehydrogenase release into supernatants at least during the 1 day of maximal dosage exposure. The drug-induced inhibition of proliferation was reversible within 7 days after a 2-day exposure to 100 mumol/L zidovudine. Two days of treatment with a 10 mumol/L dose did not alter the pattern and synthesis of keratins in vitro. Thus the known antipsoriatic efficacy of zidovudine might be explained, at least partly, by the drug's cytostatic potency.

Amino Acids↗

Localization of calmodulin in epidermis and skin glands: a comparative immunohistological investigation in different vertebrate species.

The study deals with the immunolocalization of calmodulin-reactive epithelial cells in different vertebrates (Tinca tinca, Ambystoma mexicanum, Xenopus laevis, Rana ridibunda, Columba domestica, Sus scrofa domestica, Homo sapiens sapiens). The immunoperoxidase technique was performed on acetone fixed frozen sections using monoclonal (BF8) and polyclonal (ACAM) anti-calmodulin antibodies. We were able to differentiate 2 major types of staining patterns: 1. A more superficial epidermal staining in species adapted to an aqueous environment and 2. a staining along the epidermal-dermal junction in species adapted to a terrestrial environment. It seems most likely that epithelial cells immunoreactive for calmodulin are involved in skin permeability control.

Ambystoma↗

[Increased expression of proliferation keratins K 6 and K 16 in unaffected skin in exacerbated psoriasis].

The in vivo expression of the proliferation keratins K 6 and K 16 is characteristic for hyperproliferative diseases and positive in psoriatic lesions. Our study was performed in order to investigate the in vitro expression of proliferation keratins and to settle the question whether they are also inducible in organ cultures of uninvolved psoriatic skin, possibly differing from normal skin.

Adult↗

[Cytokinetics and keratins of keratinocytes from skin of the elderly].

Regarding the keratin pattern of non-exposed skin, we found no significant qualitative or quantitative differences between 6 old persons (mean age 85 years) and 4 young adults (mean age 20 years). There was, however, a slight increase of proliferation keratins (K6, K16) in aged skin. In non-exposed skin taken from 6 old (mean age 70 years) and 5 young persons (mean age 37 years), longterm primary submersion cultures of keratinocytes did not show any significant differences as far as the classical parameters of growth behavior were concerned (i.e. plating efficiency, cell count, and labeled thymidine incorporation). In accordance with these findings, daily measurements of the thymidine kinase activity in the supernatants revealed discrete but not significant differences between keratinocytes in aged people and those in young persons.

Adolescent↗

Colorimetric growth assay for epidermal cell cultures by their crystal violet binding capacity.

The application of a simple, rapid, and inexpensive colorimetric growth assay was tested for human epidermal cells subcultured in uncoated plastic dishes. Cell layers were incubated with a crystal violet (CV) solution (0.2% with ethanol 2% in 0.5 M Tris-Cl buffer, pH 7.8) for 10 min at room temperature. After rinsing with 0.5 M Tris-Cl (pH 7.8) the cell layer was dried and decolorized with a sodium-dodecylsulfate solution (0.5% with ethanol 50% in 0.5 M Tris-Cl, pH 7.8) for 60 min at 37 degrees C. The extinction of the supernatant was read at the absorption maximum of 586 nm. The protein content of attached cells as classical parameter for quantifying cell growth was strongly related to CV extinction with a correlation coefficient of r = 0.98. Furthermore, the subcellular protein binding qualities of CV were analyzed. The water-soluble protein fraction of cultured epidermal cells was separated by sodium-dodecylsulfate polyacrylamide gel electrophoresis and stained with CV. We found a staining pattern which was qualitatively very similar to that of Coomassie blue, however less intense. Keratin electrophoresis revealed an affinity of CV to the 48, 50, and 56 kD cytokeratins. In conclusion, this CV assay is a reliable and simple method for the monitoring of epidermal cell growth in cultures.

Cell Division↗

Immunostaining of keratin and vimentin in epidermis: comparison of different post-embedding immunogold techniques for electron microscopy.

The present study compares different post-embedding staining methods, including conventional and low-temperature embedding techniques, for demonstration of the keratin and vimentin cytoskeleton of epidermal cells, applying commercially available polyclonal and monoclonal antibodies. Immunogold staining (5-nm particles) was performed on the following material: (a) osmium-fixed and Durcupan-embedded material, etched with various solutions; (b) aldehyde-fixed material embedded in Lowicryl K4M at 4 degrees C and -35 degrees C; (c) aldehyde-fixed material embedded in Lowicryl K11M at -60 degrees C with and without cryoprotection with glycerol. In conventionally embedded material we failed to demonstrate intermediate filaments, whereas they were stained after low-temperature embedding with Lowicryl, i.e., K4M 4 degrees C, K4M -35 degrees C, and K11M -60 degrees C. The keratin and vimentin cytoskeleton reacted exclusively with polyclonal antibodies. The best results for antigenicity as well as structural preservation were achieved by post-embedding staining of K4M -35 degrees C-embedded material. Antibodies to keratin stained the cytoskeleton in keratinocytes of all epidermal layers. Filaments were decorated in a linear alignment. Antibodies to vimentin stained the cytoskeleton of Langerhans cells and melanocytes. In these cells a linear distribution pattern of the reaction product along the filaments and an extrafilamentous cluster formation were observed, indicating staining of vimentin and a vimentin-associated protein.

Antibodies, Monoclonal↗

Expression of alpha 4-1 and alpha 5 nicotinic cholinoceptor mRNA in the aging rat cerebral cortex.

Although important in neurodegeneration, systematic studies of nicotinic acetylcholine receptor expression in normal aging human brains are difficult to perform. We have studied the expression of nicotinic receptor alpha 4-1 and alpha 5 mRNA in the frontal and parietal isocortex of 3- (young adult), 24- (late middle aged), and 33-month-old (old) rats by nonisotopic in situ hybridization. In all groups transcripts were mainly present in layer II/III and V pyramidal neurons. The numerical densities of alpha 4-1 mRNA-containing neurons with respect to those of cresyl violet-stained neurons decreased with aging in the rat frontal and parietal cortex, while those of alpha 5 mRNA-containing neurons were not affected. These findings point to an age-related decrease of the percentages of numerical densities of alpha 4-1 mRNA-containing neurons, which has to be taken into account as a possible substrate for the well-known decrease of nicotine binding sites in the aging cerebral cortex.

Aging↗