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T Kukulansky

Publications and source records attributed to T Kukulansky.

23 records · Page 2Linked to original sources

In vitro differentiation of mouse embryonic yolk sac cells.

The embryonic yolk sac is the first site in the mammalian embryo in which cells are found that can carry out cell-mediated immune functions, yet the relation of cells of this primitive hematopoietic organ to the development of the mature immune system has not been established. We have initiated a series of experiments to determine the potential of cells of the mouse yolk sac to differentiate in vitro, in order to get an insight into the development of immunocompetence in this primary population of hematopoietic stem cells. The present paper describes the conditions promoting stem-cell differentiation and provides an initial characterization of cell surface phenotypes of the cell lineages established in vitro. Yolk sac cells obtained from 10- to 13-day mouse embryos were maintained in culture for more than 18 months, giving rise to a variety of cell types belonging to the hematopoietic lineages and culminating in the establishment of long-term cell lines. Supernatants of secondary mixed leukocyte cultures were found to be an effective source of growth factors promoting the initial differentiation as well as the maintenance of these cells. Flow-cytometric analysis showed that, in contrast to freshly obtained yolk sac cells, which had no detectable Thy 1 antigen, cells expressing significant levels of Thy 1 were obtained after 1 week or more of culture. Ly1 and Lyt 2 antigens were detected only rarely and the L3T4 (GK 1.5) antigen was never expressed.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Regulation of thymocyte proliferative response by macrophage-derived prostaglandin E2 and interleukin 1.

The antagonistic effects of macrophage (M phi)-derived interleukin 1 (IL 1) and prostaglandin E2 (PGE2) on thymocyte proliferation were uncoupled and studied. Elimination of PGE2 from the culture medium of prostaglandin E2-stimulated M phi was achieved by dialysis of the media or by indomethacin treatment of the M phi. IL1 secretion appears to be PGE2 independent. Experiments using exogenous PGE2 revealed a quantitative relationship between the two monokines. PGE2 (1.25 ng/ml) reduced the proliferative effect of IL 1 produced by 1.5 X 10(5) peritoneal M phi to 50%. This PGE2 dose increased significantly the levels of intracellular cAMP. Separation of peritoneal exudate M phi on a bovine serum albumin discontinuous gradient demonstrated that the main part of PGE2 synthesis was in a fraction of lower density, large M phi, whereas IL 1 activity was detected in all tested fractions.

Animals↗

Effects of in vivo indomethacin treatment in aging mice.

The effects of in vivo treatment with indomethacin were assessed in aging (22-36 month old) as compared to young (2-3 month old)F1 (C3H/ebJ x C57BL/6J) mice. Old mice manifested erythropenia, which was not apparent in the young. In leukocyte level there was a more rapid decrease in the old, following an initial increase in both age groups. The response of peripheral blood leukocytes (PBL) of both young and old mouse groups to mitogens decreased after treatment with indomethacin, yet in the old a significant increase (3- to 4-fold) was subsequently noted. Similarly, splenocyte response to PHA decreased initially and then increased in both age groups. This dynamics of changes was not observed in ConA-stimulated splenocytes of the old mice. Levels of IL-1 activity in culture supernatants of adherent splenocytes from indomethacin treated old mice were higher than those of the untreated age-mates. Conversely, in the young, in vivo treatment with indomethacin led to reduced IL-1 levels. The pattern of effects of indomethacin thus seems to be altered in aging.

Aging↗

On the effect of insulin on glucose-6-phosphate dehydrogenase and fatty acid synthetase activity in mouse liver.

Regulation of glucose-6-phosphate dehydrogenase and fatty acid synthetase activity in mouse liver is examined in diabetic and normal mice. Up to a 4-fold increase of both enzymes can be observed in streptozotocin diabetic mice when transferred to a fatless, inducing diet. Administration of insulin does not increase enzyme activity at several doses and under a variety of conditions. This is a strong indication that insulin is not a necessary component of the induction system.

ATP Citrate (pro-S)-Lyase↗