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S Meier

Publications and source records attributed to S Meier.

At least 91 records · Page 5Linked to original sources

The role of extracellular matrix in the formation of the sclerotome.

The development of the sclerotome is considered as a model for the formation of mesenchyme from an epithelium. In early epithelial somites, transmission and scanning electron microscopy indicate considerable ultrastructural similarity between the future sclerotome and dermamyotomal regions. Subsequently, these two regions diverge in their development. In the forming dermamyotome, junctional complexes become more extensive and the cells become elongated, closely applied to each other, and have angular surface contours. In the forming sclerotome, there is an early reduction in apical junctions. The cells elongate, keeping their original polarity, and acquire numerous filopodia which contain punctate junctions at sites of cell-to-cell contact. Associated with cellular extension is an expansion of the intercellular spaces which do not contain any ultrastructurally recognizable material. Evidence for a role of hyaluronic acid in the expansion of the intercellular spaces is presented. As identified by the susceptibility of cetylpyridinium chloride precipitates to Streptomyces hyaluronidase and chromatographic separation of chondroitinase ABC digestion products, as much as 64--68% of the [3H]glucosamine-labeled glycosaminoglycans synthesized by explanted somites is hyaluronic acid. In addition, hyaluronidase-sensitive label is localized in the intercellular spaces of the sclerotome, as demonstrated by autoradiography. When Streptomyces hyaluronidase is injected in ovo into living embryos, the sclerotomal mesenchyme differentiates morphologically, but intercellular spaces are drastically reduced. It is hypothesized that the sclerotomal cells produce a hyaluronate-enriched extracellular matrix which is inflated by hydration to mediate the expansion of the sclerotomal mass towards the notochord.

Animals↗

The significance of chromosomal findings for the differentiation between lymphoma and lymphoblastoid cell lines.

Cytogenetic studies have been performed from four Burkitt's lymphoma cell lines, one cell line obtained after successful xenotransplantation of a Burkitt's lymphoma cell line into athymic nude mice, and from ten lymphoblastoid cell lines (three derived from umbilical cord blood cells, one from acute myelogenous leukemia and six from Hodgkin's disease specimens). Our findings indicate the non-neoplastic nature of lymphoblastoid cell lines in spite of their high proliferative activity in vitro and their aneuploidy after long-term cultivation. In contrast, cell lines of Burkitt's lymphoma origin apparently are truly malignant lymphoma cells, characterized by aneuploidy and by the presence of a 14q+-marker chromosome even in the EBV-negative cell lines. The 14q+-marker chromosome, observed in Burkitt's lymphoma as well as in other malignant lymphomas, seems to be related to neoplasia, independent on the presence of EBV. The significance of the aneuploidy for the differentiation between lymphoma and lymphoblastoid cell lines is discussed.

Aneuploidy↗

Stimulation of extracellular matrix synthesis in the developing cornea by glycosaminoglycans.

Previously, it was demonstrated that the embryonic corneal epithelium produces the chondroitin sulfate and heparan-sulfate-like compounds and the collagen of the primary corneal stroma. Synthesis of all of these extracellular materials is greatly enhanced in vitro when isolated epithelium is grown on collagenous substrata instead of Millipore filters. We report here that chondroitin sulfate, heparin, and heparan sulfate added to the culture medium at a concentration of 200 mug/ml enhance the synthesis by the epithelium of chondroitin sulfate and heparan-sulfate-like compounds 2-fold, whether or not collagenous substrata are employed. Collagen synthesis is unaffected by adding glycosaminoglycan to the medium. Chondroitin sulfate proteoglycan (chondromucoprotein) has the same stimulatory effect as chondroitin sulfate, but dermatan sulfate and hyaluronate have no measurable effect on glycosaminoglycan production by epithelial cells. Keratan sulfate however, seems to depress glycosaminoglycan synthesis. Thus, in this system, only sulfated polyanions like those produced by the corneal epithelium have a stimulatory effect on glycosaminoglycan synthesis. The results are discussed in terms of how the tissues of the cornea (epithelium, endothelium, keratocytes) may interact by changing the composition of the stromal extracellular matrix.

Animals↗