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M Pospísil

Publications and source records attributed to M Pospísil.

At least 55 records · Page 3Linked to original sources

Radioprotection of mouse hemopoiesis by dipyridamole and adenosine monophosphate in fractionated treatment.

The purpose of the studies reported here was to investigate the ability of the combined administration of dipyridamole and adenosine monophosphate, drugs known to elevate extracellular adenosine, to protect mice undergoing treatment with fractionated irradiation (five doses of 2 or 3 Gy each) given at 24-h intervals. Based on observations of hemopoietic recovery (endogenous hemopoietic spleen colony formation, marrow granulocyte-macrophage colony-forming cells, peripheral blood cells) after the completion of fractionated irradiation and on survival studies, it was demonstrated that the repeated administration of the drugs 60 min before each of the radiation fractions mitigates the hemopoietic injury and enhances the survival of mice irradiated with an additional "top-up" dose. It could be deduced that the single protective actions of the drugs retain their efficacy in repeated treatment and enhance the sparing effect of dose fractionation on hemopoiesis. Interestingly, the toxic side effects of the drugs tend to decrease when they are administered repeatedly, probably due to the development of tolerance to their cardiovascular action. This reduction in toxicity offers benefit with respect to the potential use of these hemopoiesis-protecting drugs in clinical radiotherapy.

Adenosine Monophosphate↗

Haemopoiesis-enhancing effects of repeatedly administered carboxymethylglucan in mice exposed to fractionated irradiation.

Carboxymethylglucan (CMG), a water-soluble glucan derivative, enhanced the number of granulocytes in the peripheral blood as well as other indices of haemopoietic recovery (total cellularity and the number of granulocyte-macrophage progenitor cells in femoral marrow, spleen weight) investigated after fractionated gamma-irradiation in mice (five doses of 2 Gy each, or three, four and five doses of 3 Gy each given at 24-h intervals). An increased liver weight and a more pronounced anaemia found in the CMG-treated mice suggested, however, that also inflammatory side effects were evoked by the repeated administration of CMG. On the other hand, the development of tolerance, i.e., a decreased effectiveness of the treatment with CMG upon its repeated administration, did not seem to play any major role under the experimental conditions studied, because the protective effects of CMG increased with the increasing number of CMG injections.

Adjuvants, Immunologic↗

Radioprotective efficacy of dipyridamole and AMP combination in fractionated radiation regimen, and its dependence on the time of administration of the drugs prior to irradiation.

We have recently demonstrated that the combined administration of dipyridamole and adenosine monophospate to mice induces radioprotective effects in terms of postirradiation haemopoietic recovery in animals irradiated with a single dose. The aim of the present experiments was to investigate the radioprotective ability of the drug combination under conditions of fractionated radiation treatment. It has been shown that administration of drugs either 15 or 60 min before each of the five daily 3-Gy doses of gamma-radiation enhances haemopoietic recovery and survival of mice exposed to an additional "top-up" dose of 3.5 Gy. Furthermore, it has been ascertained that the regimen using administration of the drugs 60 min prior to irradiation is more effective than administration of the drugs 15 min prior to irradiation. Due to the evidence that administration of the drugs 15 min prior to irradiation protects the organism mainly via mechanisms of systemic hypoxia while the pretreatment 60 min before irradiation avoids the role of hypoxia and mainly induces cell proliferation effects, our results suggest a more effective protective role of mechanisms stimulating haemopoiesis under conditions of fractionated radiation. The data may provide a basis for more rational use of radioprotection in fractionated radiation regimens.

Adenosine Monophosphate↗

Genetic studies in a North-Slovakia isolate: Chmelnica. 3. Dermatoglyphic traits.

Dermatoglyphic traits in an endogamous community of the village Chmelnica (North-Eastern part of Slovakia) are reported and their frequency is compared with an average Slovak population. The results of this study demonstrate the regional variability and the particular dermatoglyphic specificity of the investigated population. The most conspicuous are the increased intergender differences in the course of the main lines on the palms, their consequently higher quantitative expression by indices, and the higher quantitative values of total line numbers on fingers that was observed for females of our sample.

Adult↗

Oligosaccharide ligands for NKR-P1 protein activate NK cells and cytotoxicity.

A diversity of high-affinity oligosaccharide ligands are identified for NKR-P1, a membrane protein on natural killer (NK) cells which contains an extracellular Ca(2+)-dependent lectin domain. Interactions of such oligosaccharides on the target cell surface with NKR-P1 on the killer cell surface are crucial both for target cell recognition and for delivery of stimulatory or inhibitory signals linked to the NK cytolytic machinery. NK-resistant tumour cells are rendered susceptible by preincubation with liposomes expressing NKR-P1 ligands, suggesting that purging of tumour or virally infected cells in vivo may be a therapeutic possibility.

Animals↗

Rat natural killer cell antigen, NKR-P1, related to C-type animal lectins is a carbohydrate-binding protein.

Natural killer receptor protein 1 (NKR-P1, a family of proteins), which is a dimeric transmembrane protein predominantly on rat and murine natural killer cells, contains an extracellular motif related to calcium-dependent animal lectins. The domain architecture of this protein and the finding that its cross-linking with antibody results in activation of natural killer cells make it a promising candidate for a receptor function. We have expressed a full-length NKR-P1 protein of the rat in COS cells and prepared soluble extracellular fragments by controlled proteolysis or by expression of truncated cDNA in bacteria. Dimerization of soluble NKR-P1 is predominantly dependent on the presence of an intact juxta-membrane stalk region and independent of N-glycosylation. Binding and inhibition studies using monosaccharides and neoglycoconjugates indicate that NKR-P1 is a lectin with a preference order of GalNAc > GlcNAc >> Fuc >> Gal > Man. At neutral pH, Ca2+ is tightly associated with the protein such that only a proportion can be removed by 10 mM EGTA. However, NKR-P1 can be decalcified completely at pH 10 with a total loss of carbohydrate binding. After recalcification at pH 8, carbohydrate binding is completely restored. Thus, NKR-P1 differs from other calcium-dependent animal lectins investigated so far in its pattern of monosaccharide recognition and in the tightness of Ca2+ binding.

Animals↗

Microcytic anemia and changes in ferrokinetics as late after-effects of glucan administration in murine hepatitis virus-infected C57BL/10ScSnPh mice.

Mild microcytic anemia (without changes in mean corpuscular hemoglobin concentration, MCHC) was discovered 6-14 weeks after a single s.c. administration of 4 mg of particulate glucan to C57BL/10ScSnPh mice serologically positive for murine hepatitis (MHV). The anemia was associated with granulocytosis, decreased body weight and spleen hypertrophy. The overall intensity of erythropoiesis was measured by 59Fe-incorporation into the heme of erythropoietic organs. The localization of erythropoiesis became markedly redistributed--heme production was suppressed in the bone marrow while a several-fold increase was recorded for the spleen. A new steady state was also discovered in ferrokinetics: an iron pool localized away from the blood, erythropoietic organs and the liver was significantly elevated, and hypoferremia was detected. Anemia and wasting of mice were not observed in the same mouse strain free of MHV. A single administration of particulate glucan resulted in late impairment of red blood cell formation in the C57BL/10ScSnPh mouse strain infected with the mouse hepatitis virus. The anemia shares a number of features with those observed for the anemia of chronic diseases.

Adjuvants, Immunologic↗

Effects of drugs inhibiting prostaglandin or leukotriene biosynthesis on postirradiation haematopoiesis in mouse.

Two non-steroidal anti-inflammatory drugs, i.e. indomethacin (INDO), an inhibitor of prostaglandin production, and esculetin (ESCUL), an inhibitor of leukotriene production, were tested for their ability to modify haematopoiesis in three experimental systems: (a) in vitro clonal proliferation of marrow GM-CFC from the irradiated mouse was found to be augmented by addition of INDO at a low concentration, and inhibited by ESCUL in a dose-dependent manner; (b) in the lethally irradiated and bone marrow-transplanted mice treated with the drugs in the postirradiation period, stimulatory effects of INDO on CFU-S and GM-CFC populations and an inhibitory effect of ESCUL on GM-CFC were observed; and (c) when the drugs were administered i.p. to mice 1 h before 5-Gy irradiation, INDO enhanced the postirradiation recovery of haematopoietic indices such the numbers of CFU-S, GM-CFC, peripheral blood granulocytes, and nucleated bone marrow cells, while ESCUL had no effect or even inhibited the recovery of these indices. Survival curves for CFU-S and GM-CFC showed that altered haematopoietic recovery in the INDO- and ESCUL-pretreated mice was not due to changes of intrinsic radiosensitivity of pluripotent (CFU-S) or committed (GM-CFC) stem cell populations. These results confirm earlier findings suggesting an inhibitory role of prostaglandins on haematopoiesis, and provide evidence that endogenous leukotrienes might play a positive role in the regulation of haematopoietic functions in an irradiated organism.

Animals↗

[Treatment of trochanteric fractures of the femoral bone].

The authors present the evaluation of some most often methods of treatment of trochanteric fractures of femur. They analyze the group of 235 patients in the years 1987 - 1991 treated for fractures by the McLaughlin technique and by Ender nailing. The first method was performed on 121 people and the technique of Ender nailing on 97 people. The results and complications of these methods of osteosynthesis are presented in the paper. The experiences of the authors confirm the advantage of Ender nailing in treating fractures of the oldest injured patients. The Ender nailing method of osteosynthesis is the more advantageous, because the operation takes less time and is easier for patients. After Ender nailing, the possibility of functional rehabilitation and walking on crutches is greater. McLaughlin osteosynthesis of these fractures proved the more advantageous in younger injured patients.

Aged↗

Characterization of the high-affinity oligosaccharide-binding site of the 205-kDa porcine large granular lymphocyte lectin, a member of the leukocyte common antigen family.

Membrane lectins of mammalian large granular lymphocytes are thought to be important receptors in their non-major-histocompatibility complex-restricted activation. A triantennary desialylated oligosaccharide has been reported as the most effective triggering structure [Pospísil M., Kubrycht J., Bezouska K., Táborský O., Novák M. & Kocourek J. (1986) Immunol. Lett. 12, 83-90] while its cell surface receptor has recently been identified in pig natural killer cells as a 205-kDa membrane lectin resembling the proteins of the leukocyte common antigen family (LCA). In this study we have prepared 4-azidophenyl (photoactivatable) and 4-hydroxyphenyl (radio-iodinatable) derivatives of triantennary oligosaccharides by a new procedure which allows the natural conformation of the N-glycosidic linkage between the oligosaccharide and the respective labeling group to be retained. We used these high-affinity ligands to investigate the oligosaccharide-combining site of the 205-kDa lectin. Photoaffinity labeling of the whole cells and solubilized proteins confirmed that a 205-kDa polypeptide constitutes the major cell-surface calcium-independent receptor for triantennary oligosaccharides in pig lymphocytes. Isolation and manual sequencing of two ligand-labeled and eleven other peptides proved that the 205-kDa lectin represents a member of the LCA family expressing exons 4 and 6 during alternative splicing and that the high-affinity binding site is localized in the N-terminal 70-kDa extracellular domain. Binding studies with radiolabeled oligosaccharides and the above carbohydrate-recognition domain subjected to various chemical and enzymatic treatments indicated that the binding of oligosaccharides might be significantly modulated by sialylated O-glycosidically linked lineage-specific carbohydrate epitopes localized within this domain. Affinity chromatography of LCA isolated by conventional methods on immobilized oligosaccharides revealed that only a fraction of these cell-surface glycoproteins expressed high-affinity binding sites for the oligosaccharide ligands. Thus, N-linked oligosaccharide moieties of cell-surface glycoproteins seem to represent possible ligands of LCA that may be important in intercellular adhesion and oligosaccharide-mediated activation of lymphocytes.

Amino Acid Sequence↗

Hematopoietic recovery in repeatedly irradiated mice can be enhanced by a repeatedly administered combination of diclofenac and glucan.

A combination of diclofenac and glucan administered repeatedly in a protective regimen in the course of repeated gamma irradiation of mice (6 x 2 Gy during 3 weeks) enhanced granulopoiesis and other indices of hematopoietic recovery investigated from 3 to 7 days after the last radiation exposure. Repeated administration of diclofenac or glucan alone or treatment of the mice with the diclofenac-glucan combination given once before the first or the last radiation exposure did not induce such effects. The protective effect of the repeatedly administered combination of the drugs was realized despite the fact that the response of the serum colony-stimulating activity to the repeated combined drug administration was decreased at the end of the treatment regimen compared to that of mice given this drug combination only once. The combined treatment is supposed to act via increased proliferation of the hematopoietic stem or progenitor cells. Additivity or even synergism of the hematostimulatory action of glucan and of the strengthening of positive control of cell proliferation achieved by removing negatively acting prostaglandins (diclofenac action) may account for the radioprotective effects observed.

Animals↗

Peripheral membrane molecules of leukocytes and NK cytotoxicity.

Some leukocyte effector cell-surface molecules movement toward the adjoining target cells takes place during the reaction of NK cytotoxicity (NK R). The majority of the moving molecules are usually anchored via a divalent-ion-dependent interaction (PMM-M2+). The released PMM-M2+ can interact also with the secreted tumor necrosis factor alfa (TNF-alpha). In agreement with PMM-M2+ movement, the number of TNF-alpha binding sites on the target cell surface increases during NK R. In addition, antibodies against PMM-M2+, as well as D-mannose- or N-acetyl-D-glucosamine-terminated oligosaccharides of PMM-M2+ inhibit NK R. A more detailed analysis of PMM-M2+ with monoclonal antibodies used flow cytometry and cell-surface biotinylation. Only 3 of 31 tested CD antigens (CD2, LAK-1 and CD45) were passed through this first strongly restricted experimental screening. The EDTA-released LAK-1 antigen, but not CD2 and CD45, interact with TNF-alpha and cell surface via a mannose-inhibitable interaction dependent on the presence of Ca2+ ions. The mechanism of possible participation of PMM-M2+ in cytotoxic events is discussed in relation to Ca2+ influx and subsequent cytolysin secretion.

Antibody-Dependent Cell Cytotoxicity↗

Postirradiation administration of adenosine monophosphate combined with dipyridamole reduces early cellular damage in mice.

The administration of dipyridamole and adenosine 5'-monophosphate (AMP) to mice 5 to 25 min after 1 Gy of total-body gamma irradiation was found to decrease cellular damage, as indicated by the thymidine level in plasma and the amount of saline soluble polynucleotides in the thymus. The drug combination used did not influence similar cytotoxic effects of hydrocortisone. Furthermore, it was shown that the addition of dipyridamole and AMP to in vitro irradiated suspensions of thymocytes enhanced the rejoining processes of DNA strand breaks. Receptor-mediated action of extracellular adenosine may be responsible for the therapeutic effects observed.

Adenosine Monophosphate↗

[Problems in craniocerebral injuries].

Considering the number of patients hospitalized for craniocerebral injuries, the authors found, that it is the second highest of all wound injuries, and that in the age group to 44 years, these injuries, mostly treated in the surgical departments of hospitals, are also the most frequent cause of death. Both the correct diagnosis and timely cure are essential for lowering the mortality rate and alleviating the post-injury impairment. Even thought inebriety in a larger number of patients makes the diagnosis and treatment difficult, it seems possible that in many other cases shorter hospitalization as well as a treatment on the out-patient basis, mostly by a neurologist, should be considered. This contribution focuses on isolated craniocerebral injuries. In the years 1981-90, this group of patients hospitalized in our department, reached the number 1, 135. Of which 208 (18.3%) suffered the structural damage of the brain tissue diagnosed as cerebral contusion or intracranial bleeding, 927 (81.7%) brain concussion, and 68 (6.0%) simultaneously had polytrauma.

Adolescent↗

Noradrenaline reduces cardiovascular effects of the combined dipyridamole and AMP administration but preserves radioprotective effects of these drugs on hematopoiesis in mice.

Recent results of the authors have demonstrated that the elevation of extracellular adenosine induced by the combined administration of dipyridamole, a drug inhibiting the cellular uptake of adenosine, and adenosine monophosphate (AMP), a soluble adenosine prodrug, mediates radioprotective effects in mice. Furthermore, it has been shown that this action is induced by at least two mechanisms: (1) protection by hypoxia as a result of the effects of treatment on the cardiovascular system (bradycardia, vasodilation), and (2) an enhanced regeneration of the radiation-perturbed hematopoiesis. Here, it was ascertained that the joint use of an optimal dose of noradrenaline given with dipyridamole and AMP combination eliminates the hypothermic and hypoxic effects of the treatment, but preserves the radioprotective action of dipyridamole and AMP combination in terms of hematopoietic recovery and partially also survival enhancing effects of the drugs in gamma-irradiated mice. These findings might be of importance for attempts to obtain available and tolerable radioprotective pharmacological prescriptions for clinical use.

Adenosine Monophosphate↗

Hyporesponsiveness of murine myeloid progenitor cells to glucan following its repeated administration.

A moderate marrow granulocytic hyperplasia developed after 4 injections of glucan (soluble derivative carboxymethylglucan) administered to mice at 3-4-day intervals. However, when evaluating the response of the marrow granulocyte-macrophage colony-forming cells (GM-CFC) to the fifth glucan injection given in the repetitive treatment schedule, the development of hyporesponsiveness of these cells was found, contrary to the stimulatory action of a single glucan injection. In addition, the prompt increase in serum granulocyte-macrophage colony-stimulating activity occurring after a single glucan injection, and proposed to upregulate myelopoiesis, was absent in mice treated with glucan repeatedly. A joint administration of glucan with diclofenac, an inhibitor of prostaglandin synthesis, was able to enhance the GM-CFC response to a single glucan injection, probably due to the removal of the downregulation action of prostaglandins on these progenitor cells. However, a repeated administration of diclofenac with glucan did not reduce substantially the development of GM-CFC hyporesponsiveness. Thus, the results suggest that the GM-CFC hyporesponsiveness or tolerance to repeated glucan injections was induced by weakening the mechanisms of positive control mediated by the serum colony-stimulating activity.

Adjuvants, Immunologic↗

Elevation of extracellular adenosine induces radioprotective effects in mice.

The radioprotective effectiveness of the elevation of extracellular adenosine induced in mice by the combined administration of dipyridamole, a drug inhibiting the cellular uptake of adenosine, and adenosine monophosphate, a soluble adenosine pro-drug, was evaluated. Based on survival studies, endogenous hemopoietic spleen colony formation, and the postirradiation behavior of bone marrow granulocyte-macrophage colony-forming cells (GM-CFC), it was demonstrated that the combined administration of dipyridamole and AMP protects mice when given either 15 or 60 min before irradiation. It could be deduced that the radioprotective action is induced by at least two independent mechanisms: (1) protection by hypoxia as a result of the effect of the treatment on the cardiovascular system, and (2) and enhanced regeneration of the hemopoietic stem cells due to either enhanced postirradiation repair or an increased proliferation of the hemopoietic stem cells. Both of these protective mechanisms, which are able to increase the regeneration of hemopoiesis, seemed to be effective in enhancing the survival of mice given single radiation exposures, with a dose reduction factor for the LD50/30 of 1.11. The protective efficiency of the mechanisms enhancing the postirradiation recovery of hemopoiesis was also evident in experiments evaluating the survival of mice subjected to fractionated irradiation and a repeated administration of the protective agents.

Adenosine↗