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Biomedical subjects

I Blazsek

Publications and source records attributed to I Blazsek.

9 recordsLinked to original sources

Innate chaos: I. The origin and genesis of complex morphologies and homeotic regulation.

The genesis of complex morphologies is an inherent property of all dynamically expanding natural systems. In the inorganic and prebiotic world, chaotic movement of quantitable particles results in formation of ordered streamlined structures or micelles close to phase boundaries. In the course of chemical and colloid crystallization or development of living organisms, complex morphologies emerge, due to unusual chaotic attraction, diffusion limited aggregation (DLA) and multifractal organization suggesting that common mechanisms direct the morphogenesis in a wide range of natural systems. The development of a multicellular organism from a single fertilized oocyte requires intensive clonal proliferation sequential determinations and the organization of terminally differentiated cells in morphologically stable homeostatic functional units. Comparative data on insect and vertebrate embryogenesis revealed that the spatial organization of the developing body is orchestrated by several mechanisms: maternal effect genes or cell position specify the initial polarities and the main axes, while metameric segmentation, intrasegment identity and cell fate are determined by the programmed expression of morphogenetic determinants. They include evolutionarily conserved DNA binding proteins containing homeobox or pair-box sequences, endogenous ligands, activating specific nuclear hormone receptors, and humoral growth factors acting via specific membrane receptors and more ubiquitous transducing pathways. Morphogenetic regulators form intratissual gradients and demark fields required for the correct realization of the developmental programme. It has been recognized that the cell's freedom is limited to stringent developmental choices that in the end results in the formation of coherent cell colonies, many of them displaying chaotic behaviour. The linkage between embryonic regulation and adult tissue differentiation is not completely elucidated, however, data are emerging to show that several morphogenetic regulators may function throughout life in different human tissues. Genetically transmissible deletions or acquired impairments likely contribute to malignant tissue growth. Diffusible morphogenetic regulators may reverse the malignant phenotype in some cases and induce clinical remission. Further work is needed, however, to identify the dominant components of physiological regulatory networks and to understand what hierarchical organization and chaotic behaviour represent in order to elaborate new combined therapeutic protocols.

Cell Transformation, Neoplastic

Combined differentiation therapy in myelodysplastic syndrome with retinoid acid, 1 alpha,25 dihydroxyvitamin D3, and prednisone.

The myelodysplastic syndrome (MDPS) provides an opportunity for identifying host factors (genetic, endocrine, immune) involved in initiation and progression of preleukemia into frank acute myeloid leukemia. The aim of this study was to identify bone marrow (BM) cellular and humoral dysfunctions central to the development of MDPS and useful in therapeutic follow-up studies. Our preclinical studies have shown that (1) the characteristic stromal cell composition of the normal BM microenvironment was impaired in MDPS and in AML in 67 and 86% of the cases, respectively; (2) the 1 alpha,25(OH)2D3 concentration in BM plasma was abnormal in 50% of MDPS and 30% of AML; and (3) an inverse correlation existed in MDPS between the 1 alpha,25(OH)2D3 concentration and the frequency of F-CFU, (r = 0.41, p < 0.02), suggestive of a regulatory interaction between this secosteroid hormone and BM stromal cells. The analysis of clonal extinction of BM blast cells in response to all trans retinoic acid (RA), 1 alpha,25(OH)2D3, and colony stimulating factors (PHA-LCM), either alone or in various combinations, revealed individual patterns of responses in the cases of MDPS or AML. The results indicate the necessity for preclinical studies to select patients for combined differentiation therapy. Our ongoing clinical trials suggest that RA (Roaccutan, 20 mg/day continuously) as induction therapy, followed at weeks 6 to 8 by prednisone (40 mg/day for 15 days) and 1 alpha,25(OH)2D3 (Rocaltrol, 3 x 0.25 micrograms/day for 3 months) may induce a long-lasting hematological remission in MDPS.

Bone Marrow

Binding of benzo(a)pyrene into lung and thymocyte nuclear fractions.

Binding of (3H)benzo(a)pyrene into lung and thymocyte nuclear fractions is studied in short term cultures. DNA, RNA and protein in the subnuclear fractions is separated and tightly bound radioactivity is measured. Among the fractions, proteins of the matrix sediment fraction display the highest specific radioactivity. DNA has a low specific radioactivity as compared to that of RNA and protein in all fractions. In thymocyte matrix extract and chromatin fractions the specific radioactivity of RNA exceeds that of protein. Lung nonhistones display a 30 times higher specific radioactivity as compared to histones. The corresponding ratio of the thymocyte fractions is about 10.

Animals

Steroid transport through the surface of the prothoracic gland cells in Galleria mellonella L.

Steroid transport through the cell surface of the giant polyploid prothoracic gland cells of Galleria mellonella L. was studied by an ultracytochemical method. The alkaloid digitonin, known to form a complex with all sterols having a free-OH radical in position 3, proved to be suitable for studying the interiorisation of moulting hormone precursors and the release of synthesized hormones. The results suggest that cholesterol uptake in the last larval instar occurs by macropinocytosis during the feeding period, while the release of the steroids produced by the gland occurs by reverse micropinocytosis mostly on days 5-7 of the instar. The two processes are not simultaneous. The intracytoplasmic localisation of the reaction product confirms the steroidogenic role of the prothoracic gland.

Animals

Endogenous thymic factors regulating cell proliferation and analysis of their mechanism of action.

Endogenous factors inhibiting the proliferation of T-lymphocytes were investigated which may function as modulators of T-lymphocyte production within the thymus. An extract from calf thymus (T4) enriched in lymphocyte chalone arrests rat thymocytes at the G1 leads to S boundary and in the S phase of the cell cycle in short-term cultures. It also inhibits the proliferative response of human peripheral blood lymphocytes to PHA-P in a time-dependent manner, as well as the spontaneous proliferation of in vitro cultured human chronic leukaemic lymphoblasts. This crude extract contains two active moities which can be isolated by molecular filtration on Sephadex G-75 column. A species non-specific, cell line selectivity inhibitory effect is characteristic of the high molecular weight fraction (mol. wt. greater than 40,000). This activity is resistant to moderate heat treatment and trypsin but is sensitive to mild alkaline hydrolysis and to RNase A digestion. About ten protein components and a toluidine blue positive substance can be detected by analytical polyacrylamide gel electrophoresis. The active inhibitor, a proposed protein-RNA complex, might be identical with the chalone. The low molecular weight, non-dialysable factor (T4-4) inhibits [3H]thymidine incorporation into acid insoluble DNA in a cell non-specific manner. A possible relationship between the two activities is discussed.

Cell Division

In vitro sensitivity of transplantable leukemias to endogenous granuloid (GCE, GI-2) and lymphoid (T4, T4-1) inhibitors of proliferation.

The effect on cell proliferation of crude granulocyte and thymocyte extracts (GCE, T4) and of their target-specific fractions (GI-2, T4-1) was studied in cultures with transplantable subacute myeloid and lymphoid leukemia (ML, LL). In the dose rage studied (1-500 microgram/ml) each factor reduced 3H-TdR incorporation into acid-insoluble DNA of bone marrow, thymus and spleen cells with ML or LL as a function of the dose, approximately linearly. Normal bone marrow proved to be less sensitive to GCE than the ML one: according to parallel line bioassay by a factor of mu = 0.56. The reactivity of LL spleen and thymus is also higher to medium T4-1 concentrations (50-200 microgram/ml) than that of normal lymphoid populations. T4-1 inhibits 3H-TdR incorporation into the DNA of LL spleen cells submaximally in 90': this effect lasts for greater than 7 hours. Because of its more homogeneous cell composition and higher sensitivity, subacute myeloid leukemia is more suitable for screening endogenous granuloid inhibitors than are homologous normal cell cultures.

Bone Marrow Cells

Ultrastructural study of the prothoracic glands of Galleria mellonella L. in the penultimate last larval, and pupal stages.

The prothoracic gland (PGL) of Galleria mellonella is a Y-shaped, paired organ, consisting of 45-50 polyploid giant cells. The PGL cells are supplied by neurosecretory axons; release of neurosecretory granules (1000-1300 A in diameter) directly on the surface of PGL cells was frequently observed. Based on ultrastructure, the last two larval instars can be divided into three phases: 1) restitutive phase immediately after moulting; 2) gradual activation in mid-intermoult as indicated by the logarithmic cell growth, decrease of nucleo-cytoplasmic ratio, increase in the number of cell organelles participating in protein synthesis, and the structural changes of these organelles; 3) "release' period preceding moulting, characterized mainly by the extreme dilatation of peripheral invaginations. From the prepupal stage onward cellular activity is asynchronous. Part of the cells already show the signs of involution, while others histolyse only after the activation phase subsequent to moulting. PGL in G. mellonella is one of the larval tissues. In the course of activation its ultrastructure changes as a function of juvenile hormone (JH) cocentration, in the absence of which it histolyses. Accordingly, it has seemed to us to be a suitable model for the cytological study of JH activity.

Axons

A multifactorial system controlling myeloid cell differentiation and division.

It has been demonstrated that mature granulocytes contain two stimulatory and three inhibitory factors of cell proliferation. Consequently, beyond the negative feedback inhibitor (chalone), myeloid cells are controlled presumably by other negative (inhibitory) and positive (stimulatory) mechanisms, in addition.

Animals

Modulative effect of endogenous granuloid inhibitors on cell proliferation.

The particle-free crude extract of differentiated granulocytes (GCE) and the GI-1, GI-2, GI-3 proliferation inhibitory fractions (M.W. larger than or equal to 70,000 approximately 11,500 and less than or equal to 4000) were studied for the effects they exert on cultured cells. As shown by the curve, in bone marrow suspension cultures, in the dose range of 0.01-10.0 microng/ml, GCE maximally inhibits 3H-TdR incorporation into the DNA for 5.5 hours. In agar-gel cultures, 1.0-5.0 microng/ml of GCE reduces both the number (by 50.6-54.8%) and the size of the colonies formed. The manifestation of the inhibitory effect of GI-1, GI-2 and GI-3 fractions requires 2.5-3.5 hours. The inhibitors designated GI-2 and GI-2 are target-cell specific but they do not reduce 3H-TdR incorporation either in thymocyte suspension or HeLa monolayer cultures. On the other hand GI-1 inhibis the proliferation in HeLa cultures, as well. These endogenous inhibitors exert their optimum effect, even in a partially purified state at 2-4 orders or magnitude lower concentrations than does 1,2/5,6-dianhydrogalactitol (DAD), a cell-aspecific inhibitor used for comparison in the same system.

Alkylating Agents