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D Hoelzer

Publications and source records attributed to D Hoelzer.

At least 361 records · Page 20Linked to original sources

Re-entry of resting leukaemic blood cells into proliferation in human acute leukaemia during diffusion chamber culture.

From 17 patients with different forms of acute leukaemia, mononuclear blood cells were cultured in diffusion chambers (DC) implanted intraperitoneally into pre-irradiated mice. In 14 patients, growth of blast cells could be observed during the culture period of up to 21 days. To question whether this growth of blast cells was due only to proliferation of the initially proliferating fraction or whether a re-entry of resting leukaemic cells into proliferation was involved, various 3H-thymidine (3H-TdR) labelling studies were carried out. The absolute increase of blast cells in EC showed no correlation with the fraction of leukaemic blast cells in DNA-synthesis in the implanted cell suspension as measured by 3H-TdR labelling in vitro. Furthermore, in 2 patients where the kinetic behaviour of initially labelled leukaemic blast cells was followed during DC culture, the increase in total blast cells could only be attributed to a small extent to proliferation of those cells initially in the cell cycle. Lastly, "in vivo" labelling during the culture period showed that in one case 25% and in another case 60% of the blast cells in DC were proliferating. The conclusion is that, owing to the stimulation of the diffusion chamber milieu and possibly also due to removal of an in vivo inhibition, in most cases of acute leukaemia resting leukaemic blast cells can apparently re-enter the active cell cycle. This has relevance for an understanding of the self-maintenance of the leukaemic cell population and may also be a reason for relapse of leukaemia after the usual cytostatic drug treatment which affects mainly the proliferating leukaemic cells.

Acute Disease↗

Involvement of the central nervous system in rats with acute leukemia L 5222.

Young adult BD-IX rats made leukemic by intravenous infusion of 2 times 10(7) nucleated blood cells from leukemic donors (L 5222), showed lesions in the central nervous system 6 days after transfer when their leukocyte count was between 250,000 and 350,000 cells/mul. The brain was affected in only half of the animals, whereas all showed an infiltration of the meanings. Furthermore, all animals had extensive lesions in the spinal cord. The lesions consisted of nodules of leukemic cells and hemorrhages which were predominant in the lower half of the spinal cord and more abundant in the white than in the gray matter. Paraplegic appeared in some animals shortly before death. Since there is a consistent involvement of the meninges and spinal cord, the L 5222 leukemia seems to be a useful model for the study of leukemic infiltration of the central nervous system and the reaction to chemotherapy.

Acute Disease↗

Experimental analysis of developing hemopoiesis in fetal bone marrow.

1. We have used fetal rats to study the following aspects of the development of hemopoiesis: (a) content of hemopoietic stem cells in fetal bone marrow, liver, and peripheral blood and (b) origin of hemopietic cells in the developing mammalian bone marrow. 2. In the studies we utilized the diffusion chamber technique to study the content of stem cells committed to granulopoiesis. The number of myelopoietic stem cells in liver peripheral blood and in "bone marrow" of 18-day-old rats is nearly identical. Since in "bone marrow" a considerable number of peripheral blood cells are present in the vessels at that time, whereas extravascular cells consist only of mesenchymal cells, one might assume that these peripheral blood cells give rise to granulocytic precursors in the cultures. Morphologically these cells are "blast" cells and lymphocytes. 3. Based on cell labeling indices of radioautograms, derived from continuous infusion of pregnant rats with [3H]thymidine, it could be shown that in the perichondral area mesenchymal cells of the fetus and newborn have a slow rate of DNA turnover whereas "bone marrow" cells are in an active state of profileration. 4. In further support of this it was also shown that injections of hydroxyurea (an agent which destroys cells in DNA synthesis) has vitrually no effect on perichondral mesenchymal cells whereas "bone marrow" cells were completely blocked in their ability to support myelopoietic differentiation in the diffusion chamber implants. 5. The conclusions would therefore be that (a) local perichondral cells, i.e., mesenchymal cells, do not contribute to marrow hemopoiesis, (b) matrix cells of the developing bone marrow cannot reconstitute hemopoiesis, and (c) hemopoietic bone marrow cells develop from migrating peripheral "stem cells", one of the sources being the liver.

Animals↗

Reproducibility of survival time in L 5222 rat leukaemia and its implications for chemotherapeutic tests.

The reproducibility of survival time in the L 5222 leukemia in rats was tested by transfer of varying numbers of untreated and X-irradiated cells. A linear relationship between log cell dose and survival time was established for the range of unirradiated cell doses between 10-8 to "10-0", resulting in survival times from 6 to 16 days, with very little variation between individual animals of each group. This narrow deviation of survival time makes it possible to use mean survival time as a measuring parameter instead of the cell dose required to kill 50 percent of recipient animals. From the longer survival times observed after transfer of a given number of X-irradiated cells, the number of viable cells transferred in the inoculum could be calculated and thus the degree of cell death due to X-radiation. Agains a correlation between log cell dose and survival time was found but host survival was prolonged when small numbers (similar to 10-2) of viable irradiated cells were transferred. It is suggested that this is not due to a change in proliferation kinetics but rather to host factors, such as an immunological reaction. Thus the L 5222 leukaemia seems to be a good model in its reproducibility of survival time, and may have some similarity to human acute leukaemia when low numbers of treated cells are concerned.

Animals↗

Regulation of normal hemopoiesis in the acute leukemia L5222.

Normal hemopoiesis becomes markedly depressed in rats during the development of the rat leukemia L5222. Whether this could be due to the influence of a circulating humoral factor was investigated by comparing the growth of normal bone marrow cells in diffusion chambers implanted into the peritoneal cavity of normal or leukemic hosts. Similar growth in total cell numbers was observed in both groups of hosts, and no significant difference could be detected between them. In an attempt to exclude the possibility that an inhibitor either did not penetrate to the peritoneum or was inactivated by the chamber membrane, normal serum, or serum from a highly leukemic rat was mixed with the bone marrow cell suspension in the chambers. Again, no difference in growth between the 2 groups could be detected. Therefore, the influence of a circulating humoral factor in the depression of normal bone marrow hemopoiesis in this experimental leukemia seems to be ruled out, and the decrease may be attributable to local events in the bone marrow such as short-range factors or cellular interaction between the leukemic and normal hemopoietic cell populations.

Animals↗

Evidence for stem cell function of resting bone marrow lymphocytes identified by the complete 3H-thymidine labelling method.

Resting bone marrow lymphocytes, recongised as small lymphocytes by light microscopy, were labelled by the complete 3H-thymidine labelling technique, enriched by fractionation on a discontinuous albumin gradient and investigated for their stem cell properties by culture in diffusion chambers. Fraction 3, with the highest enrichment of labelled small lymphocytes and slight enrichment of other labelled cells (reticulum and endothelial cells), produced substantial growth, in contrast to fraction 4, with no enrichment of these cells. The number of labelled small lymphocytes per chamber in fraction 3 remained constant or tended to increase. This is assumed to be an indication of some degree of self-replication in the small lymphocyte population. Since, however, their labelling intensity decreased only slowly, it must be further concluded that part of the labelled small lymphocyte population probably remained resting. Some labelled transitional and blast cells appeared before the development of recognisable myelopoietic and erythropoietic precursors and of megakaryocytes, in agreement with the concept that small lymphocytes transfrom to transitional cells during the developmetn of normal haempopiesis.

Animals↗