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D Schoëvaërt

Publications and source records attributed to D Schoëvaërt.

8 recordsLinked to original sources

Quantitative analysis of cytokeratin network topology in the MCF7 cell line.

BACKGROUND: In the MCF7 human breast cancer cell line, several patterns of cytokeratin networks are observed, depending on the intracellular localization. Our hypothesis is that architectural variations of cytokeratin networks depend on local tensions or forces appearing spontaneously in the cytoplasm. The aim of this work was to discriminate between the different patterns and to quantitate these variations. MATERIALS AND METHODS: Image analysis procedures were developed to extract cytokeratin filament networks visualized by immunofluorescence and confocal microscopy. Two methods were used to segment sets of curvilinear objects. The first, the "mesh-approach," based on classical methods of mathematical morphology, takes into account global network topology. The second, the "filament-approach" (novel), is meant to account for individual element morphology. These methods and their combination allow the computation of several features at two levels of geometry: global (network topology) and local (filament morphology). RESULTS: Variations in cytokeratin networks are characterized by their connectivity, density, mesh structure, and filament shape. The connectivity and the density of a network describe its location in a local "stress-force" zone or in a "relaxed" zone. The mesh structure characterizes the intracellular localization of the network. Moreover, the filament shape reflects the intracellular localization and the occurrence of a "stress-force" zone. CONCLUSIONS: These features permitted the quantitation of differences within the network patterns and within the specific filament shapes according to the intracellular localization. Further experiments on cells submitted to external forces will test the hypothesis that the architectural variations of intermediate filaments reflect intracytoplasmic tensions.

Algorithms↗

TGF beta 1 promotes actin cytoskeleton reorganization and migratory phenotype in epithelial tracheal cells in primary culture.

In the present study we have investigated the effects of transforming growth factor beta (TGF beta 1) on rabbit tracheal epithelial cells in primary culture, with respect to cell proliferation and differentiation. Epithelial tracheal cells derived from an explant plated on an extracellular matrix, formed an outgrowth resulting from cell division and cell migration. TGF beta 1 treatment produced a negative effect on cell proliferation, but in contrast, promoted a marked enhancement of cell migration and increase in outgrowth surface. TGF beta 1 induced marked cell shape changes, including cell spreading and lack of stratification, associated with reduced cell-cell contacts and increased cell-substratum anchorage, as seen by electron microscopic observations. Immunocytological studies demonstrated major TGF beta 1-induced actin cytoskeleton reorganization, corresponding to the development of a basal stress fiber network and decrease of the annular cell border, without affecting the tight junctions. The migratory phenotype was approached by microcinematography which clearly showed that TGF beta 1 triggered a stimulatory effect on migration of epithelial cells, determined using an image analyzing system. Present findings suggest a beneficial role for TGF beta 1 during wound healing in providing the acquisition of a migratory phenotype, with a higher capacity to migrate either on collagen or on different extracellular matrix components including laminin and fibronectin. Conversely, present data are not consistent with a squamous response to TGF beta 1, since metaplastic differentiation did not occur, as characterized by cytokeratin expression and cross-linked envelopes formation.

Actins↗

Pathways of internalization of the hCG/LH receptor: immunoelectron microscopic studies in Leydig cells and transfected L-cells.

Monoclonal anti-receptor antibodies were used to study the cellular traffic of the hCG/LH receptor by immunoelectron microscopy. The LHR38 antibody was shown to bind to the extracellular domain of the receptor but not to interfere with hormone binding, adenylate cyclase activation or with the rate of internalization of the receptor. Pig Leydig cells and a permanent L-cell line expressing the LH receptor were used for the study. Incubation with LHR38-gold complexes showed the LH receptors to be randomly distributed over the cell surface including the clathrin coated pits. The LH receptors were internalized via a route including coated pits, coated vesicles and multivesicular bodies to lysosomes. This route is different from that observed for beta-adrenergic, muscarinic, and yeast mating factor receptors and considered previously as possibly general for G-protein-coupled receptors. The use of [125I]LHR38 allowed precise measurement of the rate of internalization, showing the existence of a constitutive pathway which was increased 11-fold by hormone administration. Double labeling experiments suggested that the hormone (hCG-Au15nm) and the receptor (labeled with LHR38-Au5nm) have similar routes of endocytosis, both of them being degraded in lysosomes. Studies of the reappearance of LHR38-Au5nm on the surface of the cells and the use of monensin indicated that only a very small proportion of the receptor molecules were recycled to the cell surface. The distribution and the intracellular pathways of LH receptors are very similar in Leydig cells and transfected L-cells. This opens the possibility of using the latter to study, by in vitro mutagenesis, the molecular mechanisms involved in the cellular traffic of LH receptors.

Animals↗

Statistical analysis of morphometrically analyzed outlines of cells in culture. Comparison of populations of normal and polyomavirus-transformed FR 3T3 fibroblasts.

The correspondence analysis method was used to statistically characterize the morphologies of populations of normal (nontransformed; N.3T3) and polyomavirus-transformed (Py.3T3) Fisher rat 3T3 fibroblasts in culture, based on morphologic parameters calculated according to a previously described morphometric method. With this statistical method, each cell is considered as a vector in a space defined by an arrangement of the calculated morphologic parameters. The N.3T3 cells and the Py.3T3 have two distinct morphologic aspects in culture: they have either a smooth or a multipolar outline. The normal cell population contained twice as many cells with smooth outlines (46%) as did the transformed one (23%). Moreover, the cells with smooth outlines in the two strains could be classified into three homologous subpopulations that were present in significantly different proportions in the N.3T3 cells versus the Py.3T3 cells. In addition, morphologic differences were observed among the cells with multipolar outlines in these two strains, due to differences in the morphologies, size, number and distribution of the cytoplasmic expansions along the cell outline.

Animals↗

Morphometric analysis of the cell outlines of normal and polyomavirus-transformed FR 3T3 fibroblasts.

A method is described for the analysis of cell shape, using an image analyzer connected to a computer to assess the cell outline. A series of parameters to assess the contribution of large cytoplasmic expansions to cell morphology and to cell spreading on a planar substratum were used to quantify the visual morphologic differences between normal (nontransformed; N.3T3) and polyomavirus-transformed (Py.3T3) Fisher rat 3T3 fibroblasts. The results show that the Py.3T3 fibroblasts are more spherical than are the N.3T3 fibroblasts and that the cytoplasmic expansions of the Py.3T3 fibroblasts are smaller than those of N.3T3, with the spreading of these two cell strains being different. These differences can be explained by the difference in cell-substratum affinity between these two cell strains.

Animals↗

An automatic system for chromosomal analysis applied to prenatal diagnosis.

Computer-assisted metaphase analysis for prenatal diagnosis can be economically performed by a preexisting hardware-software system. The program can be run by technician-level (i.e. nonspecialist) personnel who can opt for the automatic operational mode for good quality metaphases or for the semimanual mode for problem metaphases (numerous superpositions, artifacts, etc.). The karyotype can be obtained in conversational mode. Hardcopy output is available for all modes.

Chromosomes↗