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S Junker

Publications and source records attributed to S Junker.

26 records · Page 2Linked to original sources

Lithium inhibits the cytolytic glucocorticoid effect on S49 mouse lymphoma cells.

Cytolysis is the end point of receptor-mediated effects of glucocorticoids on S49 mouse lymphoma cells of wild-type. In the presence of 5 mM LiCl this effect of triamcinolone or dexamethasone was markedly delayed. The cytoprotective effect of Li+ against 10(-7) M triamcinolone acetonide was already manifest after 24 h of steroid incubation, and on the fifth day 50-fold more Li+-treated than control cells were viable. This effect of Li+ was not exerted through changes of the doubling time of the cells, and thus could not be ascribed to an overall reduction of protein- or RNA synthesis. Data on accumulation and effect of cyclic AMP indicated that the cytoprotective effect was independent on cyclic AMP. Furthermore Li+ did not affect the amount or affinity of glucocorticoid receptors in intact cells. By use of aqueous 2-phase partitioning and DNA-Sepharose binding of [3H]triamcinolone acetonide labelled cytosols we demonstrate that Li+ inhibits the in vitro salt-activation of the glucocorticoid-receptor complexes by 60-100%. The nuclear bound fraction of hormone-receptor complexes in intact cells at 37 degrees C was not affected by Li+. The data suggest that Li+ inhibits the cytolytic glucocorticoid effect by interacting with the hormone-receptor complexes.

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A high-resolution staining method for examination of mammalian cell surfaces in the light microscope.

A simple light-microscopic method for the examination of fine details on cell surfaces is described. When cell specimens on platinum-coated glass or plastic surfaces are stained with 3,3'-diaminobenzidine tetrahydrochloride and hydrogen peroxide, fine cytoplasmic processes that cannot be detected using conventional staining techniques for the light microscope are revealed. It is suggested the new technique be applied instead of the scanning electron microscope when the limited resolution of the light microscope is sufficient.

3,3'-Diaminobenzidine↗

Persistence, suppression and re-expression of pigment formation in somatic cell hybrids between mouse melanoma cells and non-melanoma cells.

Pigmented subtetraploid subhexaploid mouse melanoma cells were fused with a range of different cell types. Expression of pigment formation appeared to be dependent on the phenotype of the non-melanoma parent cell, so that hybrids with lymphoid cells or chick embryo erythrocytes produced pigment, but hybrids between fibroblasts or epithelial rat hepatoma cells did not. The results were independent of gene dosage of either parent cell. gamma-irradiation of suppressing partner cells prior to fusion caused progressive increase in pigmentation with increasing dose of radiation. Cybrids between cytoplasts of suppressing fibroblasts and melanoma cells were pigmented.

Animals↗

Ultrastructural characterization of a mouse melanoma cell line, a mouse fibroblastic cell line, and hybrids between them.

This report describes a transmission electron microscopic study on hybrids between subhexaploid mouse melanoma cells and subtetraploid mouse fibroblasts. The melanoma cell line was heterogeneous in terms of pigment production, but all cells contained melanosomes, although in different stages of development. Characteristic features of the fibroblasts included the cytoskeleton, endocytic vesicles, and occurrence of dilated cisternae of granular endoplasmic reticulum. Despite the gene dosage in favour of the melanoma parent cell, the hybrids were devoid of melanosomes, and their phenotype was typically fibroblastic in character.

Animals↗