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U Landström

Publications and source records attributed to U Landström.

6 recordsLinked to original sources

Fate maps and cell differentiation in the amphibian embryo--an experimental study.

The aim of this paper is to test two different fate maps for the amphibian blastula with respect to their predictions concerning the process of cell differentiation. The first of these fate maps is the one proposed by Vogt, according to which all three germ layers can be projected on to the surface of the embryo. The second is a revision which claims that only endoderm and ectoderm are located in the surface, while the mesoderm is represented by free cells in the interior of the embryo. The testing has been performed by observing the differentiation of small explants of cells taken from various regions of the embryo. It was found that the spontaneous cell differentiation comprises three patterns: undifferentiated cells (free interior cells and circumpolar endodermal cells), fibroblast-like cells (the remaining endodermal cells) and epidermis (ectodermal cells). Further differentiation occurs only through induction, exerted either by the fibroblast-like endodermal cells or by heparan sulphate. When induced, the equatorial ectodermal cells give rise to swollen, hyaline cells (chordocytes), while the remaining ectodermal cells form a sequence of cell differentiation patterns, mesenchyme cells, nerve cells, melanophores and xanthophores. The free interior cells differentiate into striated muscle cells and elongated collagen-producing fibroblasts. Our results thus confirm the revised fate map, and they also give an insight into the mechanisms of the initial cell differentiations in the amphibian embryo.

Ambystoma

Metabolism of cold-stored pancreatic islets.

A previous study showed that the ability of glucose to stimulate insulin release was retained in islets stored at 8 degrees C for one week provided that glucose was present in a high concentration in the storage medium. The metabolic properties of islets stored in the cold have now been further explored in an attempt to clarify the protective effect of glucose. During storage in the cold the islet formation of 3H2O from (5--3H) glucose and oxygen consumption were only a few per cent of that of fresh islets whereas the putake of 86Rb+ was 20--48%. Rewarming the cold-stored islets to 37 degrees C after one week of cold-storage restored the 86Rb+ uptake, the formation of 3H2O and 14CO2 from labelled glucose and oxygen consumption to 75, 80, 60 and 40% respectively of fresh islet levels. The results emphasize the usefulness of cold-storage for preservation of functionally intact isolated islets.

Animals

Lactate--a suppressor of differentiation in embryonic cells.

All kinds of visible differentiation in cultured amphibian embryonic cells are suppressed in the presence of lactate. This effect differs in certain respects from that observed with actinomycin, but like the latter lactate inhibits RNA synthesis. In this communication we present some further observations on the effect of lactate.

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