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E Kmonícková

Publications and source records attributed to E Kmonícková.

13 recordsLinked to original sources

Tert-butyl hydroperoxide selectively inhibits mitochondrial respiratory-chain enzymes in isolated rat hepatocytes.

Sensitivity of various mitochondrial enzymes to oxidative damage was tested on isolated rat liver hepatocytes permeabilized by digitonin. In permeabilized hepatocytes normal respiratory control values were obtained and mitochondrial membranes remained intact. Respiratory rates of NADH-dependent (glutamate + malate, palmitylcarnitine + malate) and flavoprotein-dependent (succinate) substrates were determined in hepatocytes exposed for 5 min to 0.5-3 mM tert-butyl hydroperoxide before addition of digitonin. Our data showed that oxidation of NADH-dependent substrates is much more sensitive to oxidative stress than oxidation of flavoprotein-dependent ones, evidently due to the modification of iron-sulfur clusters or SH groups in the NADH dehydrogenase enzyme complex (Complex I).

Animals↗

Quantitative aspects of lipopolysaccharide and cytokine requirements to generate nitric oxide in macrophages from LPS-hyporesponsive (Lps(d)) C3H/HeJ mice.

Due to a gene defect (Lps(d)), C3H/HeJ mice are known to be hyporesponsive to the immunobiological potential of lipopolysaccharide (LPS). We studied dose requirements for LPS, IFN-gamma, and cytokines TNF-alpha and IL-10 to produce nitric oxide (NO) in peritoneal macrophages (Mphi) from these animals. In contrast to the Lps(n) C3H/HeN mice, high concentrations of LPS (up to 5 microg/mL) or IFN-gamma (up to 5 ng/mL) by themselves were unable to activate NO production in C3H/HeJ Mphi. The failure to produce NO could not be overcome by addition of L-arginine or tetrahydropterin. The high-output NO biosynthesis was dose-dependently stimulated by combined administration of varying concentrations of IFN-gamma (50-5000 pg/mL) and LPS (approximately 1 ng/mL) or to a lesser extent by IFN-gamma plus TNF-alpha or TNF-alpha/IL-10. Formation of NO in C3H/HeJ MCO triggered by high concentration of LPS (approximately 1 microg/mL) given together with IFN-gamma (0.2-5 ng/mL) reached the values typical for Lps(n) C3H/HeN mice. While Mphi from C3H/HeN mice secreted TNF-alpha, IL-10, and IL-10 upon contact with a low dose of LPS (1 ng/mL), C3H/HeJ Mphi required high concentration of LPS (5 microg/mL) to enhance the secretion of the cytokines. Yet, this dose remained ineffective to stimulate IFN-gamma in Mphi from C3H/HeJ mice. It can be presumed that one of the important factors influencing their deficient ability to form NO is a failure of Mphi to produce IFN-gamma upon LPS contact.

Animals↗

Effect of nitric oxide donors on isoprenaline-induced lipolysis in rat epididymal adipose tissue: studies in isolated adipose tissues and immobilized perfused adipocytes.

The present investigation was directed to study the effect of in vitro or ex vivo NO donors, sodium nitroprusside and molsidomine, using isolated sliced adipose tissue or in the form of immobilized and perfused adipocytes on the basal and isoprenaline-stimulated lipolysis. The results demonstrated that 1) in vitro application of sodium nitroprusside to perfused adipocytes or molsidomine to sliced adipose tissues affects isoprenaline-induced lipolysis in two ways, an increase in lipolysis at low isoprenaline concentrations (which means the sensitization of adipose tissues to adrenergic effect by NO) and decreased adrenergic agonist-stimulated lipolysis at higher concentration of isoprenaline (a decrease in the maximum lipolytic effect of isoprenaline), 2) low concentrations of molsidomine alone induced lipolysis from adipose tissue which attained more than 60% of that by isoprenaline (pD2 value for molsidomine = 11.2, while pD2 for isoprenaline = 8.17) while sodium nitroprusside did not affect the basal lipolysis significantly, 3) in vivo administration of molsidomine for 2 days reduced the maximum lipolytic effect of isoprenaline and (only non-significantly) increased the sensitivity to low doses of isoprenaline. In conclusion the present data demonstrate that NO plays an important role in adrenergic lipolysis in adipose tissues and further investigations are needed to unravel the exact role of NO in lipolysis.

Adipose Tissue↗

Modulatory effect of cyclosporin A on tert-butyl hydroperoxide-induced oxidative damage in hepatocytes.

In the present work, we followed an in vitro protective action of cyclosporin A (CsA) against tert-butyl hydroperoxide (t-BHP)-induced oxidative damage in hepatocytes. Various parameters (cell viability, cytosolic calcium level, rhodamine 123 accumulation as indicator of mitochondrial membrane potential and alanine-aminotransferase leakage from cells) were measured as an index of cytotoxicity. Tert-butyl hydroperoxide (1 mM) significantly increased cytosolic Ca2+ and affected mitochondrial membrane potential. Pretreatment with cyclosporin A (0.5 microM) reduced t-BHP-induced cytosolic Ca2+ increase and ALT (alanine-aminotransferase) leakage, but had no protective effect on t-BHP-induced changes of mitochondrial membrane potential. Our data thus suggest that the mechanism of cytoprotection of CsA on the cytosolic Ca2+ changes and ALT leakage induced by t-BHP, does not directly correlate with protection of t-BHP-induced changes of mitochondrial membrane potential.

Alanine Transaminase↗

Potential application of immobilized and perfused hepatocytes in environmental toxicology studies.

Conventional cellular models have contributed significantly to the understanding of many aspects of cell physiology and molecular biology. In these models cells are metabolically less active, due to the inefficient oxygenation and waste product buildup. Therefore perfusion methods for the cells are expected to improve cell activities. Cells have to be fixed in or on an appropriate inert carrier or support, which enables cellular perfusion, maintains integrated cellular functions and makes a bioreactor. Since isolated hepatocytes are extensively used in biomedical studies including those dealing with environmental pollutants or toxins and in xenobiotic biotransformation investigations, an efficient hepatocyte perfusion model has to be available for researchers. This research article is focusing on the value of hepatocyte immobilization as a laboratory bioreactor model and is shedding light on its potentiality in research related to public health. We demonstrate the application of this cellular model as a means to study representative phase I and phase II biotransformation reactions using hexobarbital hydroxylation and 7-ethoxycoumarin deethylation and 4-chloro 2-dinitrobenzene glutathione. Both phase I and phase II drug biotransformation in hepatocytes was demonstrated in this study non-destructively to the cells and in an efficient way. In spite of the aforementioned advantages, immobilized hepatocytes yet have relatively limited applications compared to conventional hepatocyte cellular systems. Reasons for this discrepancy are discussed. This cellular system may become popular due to the better performance of immobilized hepatocytes as compared to conventional hepatocyte culture and due to economic and ethical reasons. Naturally its applicability will cover several biomedical areas including basic research in environmental toxicology and other public health issues.

Animals↗

Evaluation of calcium channel blockers as potential hepatoprotective agents in oxidative stress injury of perfused hepatocytes.

The aim of this study was to investigate the effects of calcium channel blockers on tertbutyl hydroperoxide (TBH) induced liver injury using isolated perfused rat hepatocytes. Rat hepatocytes were immobilized in agarose threads and perfused with Williams E medium. Hepatocyte injury was induced by the addition of tertbutyl hydroperoxide (1 mM) to the perfusion medium 30 min after the addition of either verapamil or diltiazim. Hepatocyte injury was observed by monitoring the functional and metabolic competence of hepatocytes or by ultrastructural morphological examination of hepatocytes. Verapamil (0.5 mM) reduced lactate dehydrogenase leakage in TBH-injured hepatocytes as compared to the controls (154+/-11% vs. 247+/-30%). Lipid peroxides production was reduced after verapamil pretreatment as compared to the controls and oxygen consumption was increased by pretreatment of hepatocytes with verapamil. Verapamil pretreatment increased the protein synthesis activity at both levels of granular endoplasmic reticulum and free polysomes in cytoplasm and decreased ATPase activity. Diltiazem was qualitatively effective as verapamil. It is concluded that in hepatocyte oxidative injury, calcium channel blockers exhibited hepatoprotective properties. The hepatoprotective effect of calcium channel blockers was accompanied by a decrease in ATPase activity, which may implicate a normalization of Ca2+i after TBH intoxication.

Adenosine Triphosphatases↗

Cyclosporin A modifies cytoplasmic calcium levels in isolated hepatocytes exposed to oxidative stress due to tert-butyl hydroperoxide.

Within the framework of our studies on hypertension in various rat strains, we have examined the effect of cyclosporin A (CsA) on intracellular calcium signaling under conditions of oxidative stress. For these preliminary experiments, we have chosen isolated hepatocytes of normotensive rats as a model system for the study of the role of intracellular calcium. We used tert-butyl hydroperoxide (t-BHP, 1 mmol x l(-1)) as an prooxidant agent. When compared to the controls, we found increased levels of cytosolic free calcium concentration (Ca2+i) during 120 min incubation. The preincubation of hepatocytes with CsA in the concentration of 0.5 micromol x l(-1)] did not change the physiological level of cytosolic calcium. However, a dual action of CsA on elevated Ca2+i was observed during oxidative injury of hepatocytes: while in the first period of incubation CsA increased Ca2+i, CsA reduced the effect of t-BHP on Ca2+i during the next period of incubation. This indicates the ability of CsA to modify oxidative stress, but further studies are necessary to explain these findings.

Animals↗

Differences in heart phospholipids in two inbred rat strains differing in sensitivity to the development of heart lesions.

The content of phospholipids and their fatty acid composition were followed in the hearts of two inbred strains of rats: IR, resistant against the development of isoprenaline-induced myocardial lesions and IS, sensitive to their development. In the hearts of rats of the resistant strain, a lower content of phosphatidylcholine and its plasmalogen fraction was found compared to IS rats. The total amount of phospholipids was only insignificantly lower in IR rats. Greater differences were found in individual fatty acids. The most important finding concerned lower arachidonic acid and higher linoleic acid content in heart phospholipids of IR rats. These differences were exactly opposite to changes reported in the literature in animals known to have a higher resistance against myocardial damage due to various interventions. Our results do not support the hypothesis claiming the importance of changes in phospholipids and their FA composition for the resistance of the heart against the development of necrotic lesions.

Animals↗

[Treatment of early stages of ovarian carcinoma. Evaluation of experience at the Institute of Radiation Oncology over a 10-year period (1983-1993)].

The authors evaluated in a retrospective study the therapeutic results of ovarian carcinoma stage FIGO I (68 patients) and FIGO II (28 patients) attained in the Institute of Radiation Oncology, Prague during the ten-year period from 1983-1993. Total survival and survival without relapse within five years are 77% in stage I and 74% in stage II. The corresponding values of five-year survival without relapse were 56% and 58% resp. Despite the fact that the therapeutic results are comparable with data in the literature, a great shortcoming is the inadequate documentation of the initial laparotomy and the very general histopathological finding, moreover without grading, in a great proportion of the patients. The authors emphasize that these shortcomings make a reliable indication of adjuvant therapy impossible, in particular in early stages of ovarian carcinoma. Despite repeated references to this shortcoming these mistakes have persisted for several decades.

Adult↗

Phosphoinositide signalling system in red blood cells of patients with hereditary spherocytosis.

Hereditary spherocytosis (HS) is characterised with many deviations of red blood cells properties. We investigated a group of 14 patients with mild HS, 7 of whom were splenectomised. We found changes in the content and/or turnover of polyphosphoinositides and phosphatidic acid accompanied by the higher generation of inositol 1,4,5-trisphosphate. We suggest that the activation of the phosphoinositide signalling system may be crucial for the manifestation of HS.

Calcium↗

The effect of inositol 1,4,5-trisphosphate and inositol 1,4,5-trisphosphorothioate on calcium release and membrane skeleton organization in the human red blood cell.

The inositol 1,4,5-trisphosphate [Ins(1,4,5)P3] content of unstimulated human red blood cells (RBC) has been found to be 227 +/- 83 pmol of Ins(1,4,5)P3 per mL of packed cells. Ins (1,4,5)P3 at concentrations between 0.4-5.0 microM releases Ca2+ from RBC plasma membrane with an EC50 of 0.55 microM. Inositol 4,5-bisphosphate [Ins(4,5)P2] is less potent, but inositol 1-phosphate [Ins(1)P], inositol 1,4-bisphosphate [Ins (1,4)P2], and adenosine triphosphate (ATP) are inactive. The release was stereospecific for D-Ins(1,4,5)P3; 1 microM L-Ins(1,4,5)P3 released no more Ca2+ than the control. A nonhydrolyzable analog of Ins(1,4,5)P3, inositol 1,4,5-trisphosphorothioate [Ins(1,4,5)PS3] evokes sustained release of Ca2+ from isolated ghosts. Release of 45Ca2+ was also observed after the addition of AlF4-. Ionophore A23187 and AlF4- increase the level of Ins(1,4,5)P3 in intact RBC to 1004 +/- 533 and 455 +/- 74 pmol/mL of packed RBC, respectively. We have elaborated a method for visualization of spectrin by indirect immunofluorescence in smears of RBC. Ins(1,4,5)P3 evokes shape changes in permeabilized RBC and disorganization of the spectrin network. The shape changes are stereospecific for the D-enantiomer, since L-Ins(1,4,5)P3 and other compounds had no effect. Whereas the effect of Ins(1,4,5)P3 was reversible, as was the weaker effect of Ins(4,5)P2, Ins(1,4,5)PS3 evoked irreversible shape changes. Shape changes and spectrin disorganization were also observed after the action of AlF4- and ionophore A23187. We conclude that the phosphoinositide signaling system plays an important role in the shape maintenance of human RBC.

Aluminum↗

Phosphoinositide signalling system in human erythrocyte and its role in cell pathology.

Human erythrocytes contain 217.2 +/- 70.5 pmole of inositol 1,4,5-trisphosphate per ml of packed cells (n = 14). The increased generation of Ins 1,4,5P3, was induced by 1 microM A 23187, 20 microM Pb2+, and by AlF4-. Ins 1,4,5P3, Pb2+ and AlF4- evoke shape changes, disorganisation of spectrin network and vesiculation. In erythrocytes of patients with hereditary spherocytosis the level of Ins 1,4,5P3 was increased to 556.7 +/- 374 pmole per ml of packed cells. We suggest that activation of the phosphoinositide signalling system may represent a common denominator for many divergent stimuli and defects which affect shape changes of erythrocytes.

Calcimycin↗

Phosphoinositide metabolism of rat pineal gland in a low ionic strength medium.

Pineal glands were incubated in the presence of 32P orthophosphate. When all NaCl in a conventional incubation medium was replaced by isotonic sucrose, i.e. when the ionic strength of the medium was decreased, there was a marked increase in 32P labelling of phosphatidylinositol (PI) and phosphatidic acid (PA). The 32P labelling of phosphatidylcholine (PC) and phosphatidylethanolamine (PE) was not affected. No net synthesis of PI was observed. The increased labelling of PI therefore represents an increase in the turnover of PI. The 32P labelling of PI was observed also in media where NaCl was replaced by fructose or mannitol, but not in media, where NaCl was replaced by choline chloride. The effect depends on the concentration of the HEPES buffer and was not found in the medium with a bicarbonate buffer. 32P labelling of PI was not blocked by alpha 1 adrenergic blockers, phentolamine and prazosin, and did not depend on the presence of Ca2+ in the incubation medium. The effect was blocked by a Ca2+ channel blocker, MnCl2. Only 32P labelling of PI and not that of phosphatidylinositol 4-phosphate (PIP) and phosphatidylinositol 4,5-bisphosphate (PIP2) was increased during prolonged incubation in the sucrose medium. It is suggested that a decrease in the charge distribution across the plasma membrane as a result of the absence of most monovalent cations is responsible for the increased metabolism of phosphatidylinositol.

Animals↗