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Biomedical subjects

E V Simanina

Publications and source records attributed to E V Simanina.

At least 19 recordsLinked to original sources

Effect of granulocyte colony-stimulating factor on kinetics of hemopoietic precursors in regenerating bone marrow.

We studied processes of proliferation and differentiation of hemopoietic precursor cells in mice treated with granulocyte CSF under conditions of cytostatic myelodepression. It was found that the hemostimulating effect of original granulocyte CSF preparation consists in accelerated maturation of hemopoietic precursors and increased content of DNA-synthesizing CFU-GM in the bone marrow.

Animals↗

Function of hemopoietic stem cells under conditions of cytostatic myelosuppression and treatment with hemostimilators.

We compared the function of hemopoietic stem cells under conditions of cytostatic myelosuppression (cyclophosphamide treatment) and during treatment with granulocytopoiesis stimulators. It was found that unipotent hemopoietic precursor cells are most sensitive to cyclophosphamide. Different effects of hemostimulators on stem cells are determined by different proportions between proliferation and differentiation processes.

Animals↗

Role of humoral factors in the regulation of hemopoiesis during cytostatic-induced myelosuppression.

The content of hemopoietic precursors in the bone marrow, its morphological composition, production of hemopoietic growth factors by cells of the hemopoietic microenvironment, erythropoietic activity, and plasma content of endogenous erythropoietin were studied in CBA/CaLac mice with hypoplasia of hemopoiesis induced by adriamycin in a maximum permissible dose. Cytostatic treatment affected production of substances determining erythropoietic activity by adherent and nonadherent cells of the bone marrow. Erythropoietic activity of peripheral blood plasma considerably increased. Recovery of erythroid hemopoiesis was determined by the effects of endogenous erythropoietin and other substances secreted by cells of the hemopoietic microenvironment and present in the peripheral blood.

Animals↗

[Mechanisms of the stimulating effect of d-glucuronic acid on the processes of bone marrow granulomonocytopoiesis in cytostatic myelodepression].

The mechanisms of regulating influence of D-glucuronic acid on granulomonocytopoiesis++ have been studied by using the model of cyclophosphamide-induced myelodepression. Increase of colony-stimulating and interleukin-1 activities production by hemopoiesis inducing microenvironment cells, the stimulation of hemopoietic islets and the different granulomonocytopoiesis precursor cells forming have been shown to be the base of activating action of D-glucuronic acid on bone marrow granulomonocytopoiesis recovery.

Animals↗

[Influence of mast cells on the regulatory mechanisms of hemopoietic bone marrow in inflammation].

Acute infectious peritonitis simulated in mice was used to show that previous osmotic deterioration of the abdominal mast cell population significantly influenced the function of hemopoiesis-inducing microenvironment (HIM). The earlier production of the colony-stimulating and erythropoietic activities by the non-adhesive myelokaryocytes and the decreased production of these activities by the adhesive cells have been established. The results obtained evidence that mast cells modulate HIM mediating their influence on hemopoiesis under natural conditions of inflammation.

Animals↗

[Role of mast cells in reactions of the blood system in inflammation].

On the model of the acute infectious peritonitis in mice it is shown that the previously osmotic disruption of the peritoneal mast cell population remarkably affects the inflammatory focus, blood and bone-marrow leukocytic reactions. The initial neutrophil accumulation increase and the earlier and more intensive leukocytosis and activation of granulo-monocytopoiesis are established. At the same time the kinetics of monocytes in inflammatory focus is expressed weaker and testifies to the prolongation of the inflammatory response. Thus, in the natural inflammatory conditions mast cells of the inflammatory focus directly or indirectly modulate leukocytes and hematopoiesis.

Acute Disease↗

[Blood system responses in inflammation and mechanisms of their development].

A model of acute infectious peritonitis in mice demonstrated that the inflammation is attended by marked biphasic activation of bone-marrow granulomonocytopoiesis and that the activation is due in many respects to increased functional activity of elements forming the hemopoiesis-inducing microenvironment. This was suggested by increased colony-stimulating activity of the marrow mononuclear cells and the content of hemopoietic islets in the marrow. The colony-stimulating activity of peripheral blood also increased. It was established that inflammation is also characterized by activation of bone-marrow erythropoiesis, which is linked with increased erythropoietic activity of the hemopoiesis-inducing microenvironment and blood. There was a relation between the hemopoietic changes and the kinetics of leukocytes in the focus of inflammation.

Animals↗

[Modulating effect of enkephalins on hemopoieis under stress].

The influence of enkephalins on the medullary hemopoiesis has been studied during stress reaction in noninbred mice. It was shown that leu-enkephalin administration suppressed, while met-enkephalin injection stimulated granulocyto- and erythropoiesis during immobilization stress.

Animals↗

[Role of the thymus in regulating bone marrow hematopoiesis in the stress reaction].

The role of thymus in the regulation of erythropoiesis during stress has been studied in experiments on immobilized mice. The development of pronounced leukopenia due to stimulation of erythro- and granulocytopoiesis was demonstrated. Thymectomy, performed a month before immobilization, abolished the phenomenon of erythropoietic cellularity, indicating an important role of thymus in the regulation of myelopoiesis during stress.

Animals↗

[The blood-simulating properties of a recombinant colony-stimulating factor and glycyram during cytostatic myelosuppression].

The hemostimulating activity of the drug glycyrram and the recombinant granulocytic-macrophagic colony-stimulating factor (CSF) was compared on models of myelosuppression induced by injection of an alkylating agent cyclophospane (CF) or the antimetabolite 5-fluorouracil (5-FU). It was found that glycerram stimulated hematopoiesis more effectively after 5-FU injection but to a lesser extent (in relation to CSF) in CF injection.

Animals↗

[Experimental study of hemostimulating properties of the tablet form of recombinant human erythropoetin].

Specific biological activity of the domestic preparation of recombinant human erythropoietin (RHEPO) in an original pill form was experimentally studied in vitro and in vivo. Administration of the RHEPO parent substance at a concentration of 0.5 10 U/ml significantly accelerated the growth of erythroid colony-forming cells (CFU-E) in the culture of intact nonadherent myelokaryocytes. The erythropoiesis-stimulating properties of the new RHEPO preparation are comparable with those of the well-known injection preparations. The drug action is related to increasing the erythroid cell content in the bone marrow and the reticulocyte and erythrocyte counts in the peripheral blood.

Administration, Oral↗

[Hemostimulant effect of pantohematogen in myelosuppression induced by cytostatics].

Pantohematogen stimulates hemopoiesis in mice with cyclophosphane induced bone marrow hypoplasia. The hemopoiesis recovery activated by pantohematogen is manifested by the granulocyte lineage hyperplasia in the bone marrow, rapid restoration of the polymorphonuclear leukocyte and monocyte counts in the peripheral blood, and the development of neutrophilia and monocytosis. The activation effect of pantohematogen on the bone marrow hemopoiesis is related to stimulating the precursor cell proliferation and differentiation and to increasing the functional activity of the hemopoietic microenvironment.

Allergens↗

[Myelotoxicity of a plant cytostatic preparation etoposide].

The myelotoxicity and the hemopoiesis recovery effect of etoposide, an antitumor preparation of the podophyllotoxin group, were experimentally studied on mice. It was found that the main role in the hemopoiesis recovery after etoposide administration is related to accelerated proliferation and increased differentiation of the hemopoietic precursor cells.

Animals↗