Search PubMed⌕ Search

Biomedical subjects

H Haller

Publications and source records attributed to H Haller.

At least 181 records · Page 10Linked to original sources

High glucose concentrations and protein kinase C isoforms in vascular smooth muscle cells.

High extracellular glucose activates protein kinase C (PKC), a family of kinases vital to intracellular signaling. However, which PKC isoforms are involved and where in the cell they operate is unclear. We tested the hypothesis that only those PKC isoforms binding to diacylglycerol (DAG) are activated by high glucose. We also reasoned that the isoforms would translocate to different parts of the cell, where they presumably serve different functions. The PKC isoforms alpha, beta, delta, epsilon, and zeta were studied. Twenty mM glucose caused an increase in total PKC activity at six hours, which was maintained at 24 hours. High glucose decreased the angiotensin II-induced calcium signal. This effect was reversed by preincubating the cells with the PKC inhibitor staurosporine. Glucose induced a translocation of all PKC isoforms except PKC zeta by Western blot. Confocal microscopy showed that PKC alpha, beta, and epsilon were translocated into the nucleus. PKC delta showed strong association with cytoskeletal structures. The effects were sustained at 24 hours for PKC isoform beta and to a lesser extent for PKC delta and epsilon, but not for PKC alpha. Thus, PKC isoforms differ in their propensity to be activated by high glucose. Those isoforms binding to DAG are activated. Both cytoskeletal and nuclear signaling may be involved.

Alkaloids↗

Characteristics of perforin expressing lymphocytes within the first trimester decidua of human pregnancy.

PROBLEM: The number of perforin (P)-positive cells in decidua of pregnancy is larger than that observed in any other pathological condition. The aim was to investigate the distribution and the phenotype of P+ cells. METHOD: Decidual tissue was obtained from the first trimester vaginal termination of pregnancy. Tissue distribution of P+ cells was analyzed by immunohistochemistry. The method for simultaneous measurement of P and cell surface is presented. RESULTS: There is no difference in number and distribution of P+ cells between decidua basalis (DB) and decidua parietalis (DP). The percentage of P+ decidual lymphocytes (DL) is two times higher than in peripheral blood lymphocytes (PBL) (55% vs. 27%), and the prevalent phenotype is CD3- CD4- CD8- CD2+ (95%) CD11c+ (68%) and CD56+ (82%). CD56bright+ DL are also Pbright+ and this is the largest DL subpopulation (42.4% DL). Two different subpopulations of CD8+ DL exist: 1) CD8bright+, which are CD3+ CD56- P- and 2) CD8dim+, which are CD3- CD56+ P+. CONCLUSION: P expressing DL are prevalently nonclassical NK cells (CD16-) with low cytolytic activity but fully equipped with potent cytolytic machinery (Pbright+). There are no classical cytotoxic lymphocytes (CTL) (CD3+ CD8+ P+) in the decidua, and all CD8+ P+ cells are CD3- CD56+. The number of P+ cells is even higher in DP in the vicinity of noninvasive trophoblast, than in DB.

Biomarkers↗

Monocyte infiltration and c-fms expression in hearts of spontaneously hypertensive rats.

To elucidate mechanisms of myocardial hypertrophy in spontaneously hypertensive rats (SHR), we examined by Northern blotting the expression of the proto-oncogenes c-myc, c-fos, c-sis, and c-fms in the hearts of 4- and 14-week-old SHR and normotensive Wistar-Kyoto (WKY) rats. No difference in c-myc or c-fos expression could be found between SHR and WKY rats. In SHR, c-sis gave a weak and c-fms a very strong signal at 14 weeks, whereas no signal for these oncogenes was found in either WKY rats or Sprague-Dawley controls. Since c-fms codes for the receptor of monocyte colony-stimulating factor, we next used in situ hybridization to localize the presence of c-fms in hearts of SHR at 14 weeks. We found strong signals for c-fms around small blood vessels and between cardiac myocytes in 14-week-old SHR but none in WKY rats. Immunohistochemical staining corroborated the presence of clusters of monocyte infiltration at these same perivascular sites in significantly greater numbers in SHR than in WKY rats. We conclude that c-fms expression and macrophage infiltration are increased in the perivascular space of hypertrophied hearts from SHR. We suggest that mononuclear cell recruitment and induction of c-fms may play a role in the development of hypertension-associated myocardial hypertrophy.

Animals↗

Low-density lipoprotein induces vascular adhesion molecule expression on human endothelial cells.

We tested the hypothesis that low-density lipoprotein (LDL) and its acetylated form influence surface expression of vascular adhesion molecules on human endothelial cells. Vascular adhesion molecule surface expression was assessed with flow cytometry on cultured endothelial cells with a modified enzyme-linked immunosorbent assay. LDL acetylation was determined by chromatography. Monocyte adhesion to endothelial cells was assessed with U937 cells by direct counting. Tumor necrosis factor-alpha (10 ng/mL), a positive control, induced a time-dependent expression of vascular adhesion molecules (P < .05), which peaked at 5 hours. Incubation of endothelial cells with LDL (1.3 to 26.0 mmol/L) led to an increase in expression at 2 and 5 hours (P < .05). Prolonged (24-hour) exposure to LDL resulted in a second peak. The effect of acetylated LDL on expression was not different from that of native LDL. Incubation with the protein kinase C inhibitor staurosporine (5 x 10(-8) mol/L) blocked the effects of both native and acetylated LDL completely (P < .05). The calcium channel blocker nitrendipine (10(-7) mol/L) did not influence the expression of vascular adhesion molecule at 2 and 5 hours but did reduce the effect of LDL on expression at 24 hours. LDL (2.6 mmol/L) also induced a significant increase in the surface expression of intercellular adhesion molecule-1 but did not affect the expression of endothelial adhesion molecules. LDL (2.6 mmol/L) induced a significant increase in monocyte binding. We conclude that LDL can induce the expression of vascular adhesion molecules on endothelial cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Calcium Channel Blockers↗

Differentiation of vascular smooth muscle cells and the regulation of protein kinase C-alpha.

Dedifferentiation and proliferation of vascular smooth muscle cells (VSMCs) are important features of atherosclerosis. The molecular mechanisms are largely unclear; however, protein kinase C (PKC) is a key enzyme in the intracellular signaling pathways that mediate this process. We studied the activity and immunoreactivity of PKC-alpha in primary cultures of VSMCs from rat aortas under different conditions of growth and differentiation. PKC-alpha was determined under the following conditions: (1) during the growth phase and after confluence of cultured (passages 1 through 3) VSMCs, (2) before and after induction of differentiation in VSMCs by retinoic acid, and (3) in primary cultures of VSMCs from spontaneously hypertensive rats (SHR) and Wistar-Kyoto (WKY) rats during early passages. PKC activity was measured by in vitro substrate phosphorylation. PKC-alpha immunoreactivity was assessed by Western blot using specific polyclonal antibodies and by immunostaining with confocal microscopy. Cell proliferation was measured by direct count. The cell phenotype was characterized by immunostaining and Western blot for alpha-actin and desmin. PKC-alpha expression and PKC activity during VSMC growth showed a decrease during rapid growth and an increase in confluent cells. This pattern was associated with the respective changes in cell differentiation. Retinoic acid induced an increase in PKC-alpha expression together with a more differentiated phenotype. Subcultured, rapidly growing VSMCs from SHR showed a decreased PKC-alpha expression compared with cells from WKY rats. To establish cause and effect, we next microinjected either PKC-alpha or inactivated material directly into dedifferentiated cells. We found that cells injected with active PKC-alpha expressed increased amounts of actin compared with control cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Actins↗

Comparison of voice stress reactivity under psychological stress test and simulated Mir docking manoeuvre.

The relation between the results of laboratory tests and results of the interesting professional work is a very difficult one. The same is true for the relation between training and real performance. The pilot controlled MIR-docking manoeuvre is in reality a very seldom but very important one. The training of this manoeuvre is a very special professional work and only for cosmonauts available. But the objective estimation of the performance and the used objective and subjective needs is nevertheless necessary. Even for the subjective "stress"-feelings during task solving it is often impossible to get reliable data without any physiological measurements. The use of electrodes, cables and equipments is hardly limited during real work. Sometimes only the voice is available over more or less quality communication channels. So it is the case during the training and the real pilot controlled MIR-docking manoeuvre. Based on findings in the literature and own experiments analyzing the relation between fundamental voice frequency (F0) and subjective stress feelings we tested the hypothesis that a on-line measurement of F0 can be used for stress evaluation during standardised training sessions of MIR-docking manoeuvres.

Astronauts↗

Pinacidil relaxes porcine and human coronary arteries by activating ATP-dependent potassium channels in smooth muscle cells.

We investigated the effect of the potassium channel opener pinacidil on ATP-dependent K+ channels (KATP) in the relaxation of porcine and human coronary arteries by means of isometric contraction experiments in arterial rings. We also measured whole cell currents in freshly isolated porcine and human coronary artery vascular smooth muscle cells with patch clamp. We first characterized serotonin-induced precontractions in our vessels and proved that the contractions were mediated by Ca2+ influx through voltage-dependent Ca2+ channels. Similarly, we observed that serotonin-induced contractions were strongly enhanced by small K(+)-induced depolarizations. Pinacidil completely relaxed rings preconstricted with 5 microM serotonin and produced dose-dependent relaxations of 5 microM serotonin-preconstricted rings, with an IC50 of 1.26 microM. Similar results were observed (IC50 = 1.15 microM) when the endothelium was removed. The KATP blocker glibenclamide (3 microM), inhibited pinacidil-induced relaxations (5-10 microM) by approximately 25% although the KATP blocker tetrapentylammonium (10 microM), inhibited pinacidil-induced (5-10 microM) relaxations completely. Pinacidil 10 microM had only a minimal effect on rings precontracted with a 50 mM external K+ concentration (IC50 = 60 microM). Porcine and human arterial rings did not differ qualitatively in their responses. Moreover, in the patch clamp experiments pinacidil (1 microM and 20 microM) induced a large, nonrectifying, outward current in both human and porcine cells. The reversal potential was close to the K+ equilibrium potential, suggesting an induction of pinacidil-activated K+ current. The pinacidil-induced (1 microM) current was strongly inhibited by glibenclamide (3 microM). These data show that the relaxation of porcine and human coronary arteries by pinacidil is primarily induced by an opening of KATP in smooth muscle cells. Furthermore, the vasorelaxant effect of pinacidil is not endothelium dependent.

Animals↗

Effect of exogenous mineralocorticoid on platelet cytosolic calcium in normal humans.

We tested the hypothesis that the fludrocortisone in doses sufficient to elevate blood pressure (BP) in normal subjects would increase platelet cytosolic calcium. Eight normal volunteers were given 0.8 mg fludrocortisone daily for 7 days (short protocol). Eight other normal volunteers ingested the drug for 6 weeks (long protocol). In the short protocol, fludrocortisone increased platelet cytosolic calcium and body weight by day 3, while BP was increased by day 7. In the long protocol, platelet cytosolic calcium was increased after 1 week, returned to basal values by 3 weeks and remained at that level for the rest of the study. Stimulation of the subjects' platelets ex vivo with thrombin and vasopressin led to a significant increase in intracellular free calcium concentration; however, fludrocortisone treatment did not alter the calcium response to either agonist. Fludrocortisone decreased serum potassium, plasma renin activity, plasma noradrenaline concentration and serum ionised calcium. These changes, as well as the BP increase, reverted to basal values when the drug was discontinued. We next incubated human platelets with fludrocortisone (1.4 nmol/l) and found a significant increase in cytosolic calcium by 30 min. The data suggest that a blood pressure-raising dose of mineralocorticoid leads to a transient (days to weeks) increase in platelet cytosolic calcium. Platelet cytosolic calcium and blood pressure are dissociated in that cytosolic calcium increases before the BP increase and later decreases to lower values, while the BP increase is sustained. Mineralocorticoid also has a direct effect on platelet cytosolic calcium in vitro.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Rat pancreatic AR42J cells. Amphicrine cells as an in vitro model to study peptide hormone receptor regulation.

The rat pancreatic acinar tumor cell line, AR42J, is widely used to study pancreatic acinar cell biology and biochemistry. In addition to the well-documented exocrine cell features, we have identified by immunofluorescence and by electron microscopy the co-expression of small neuroendocrine (NE) vesicles using the NE vesicle-specific markers synaptophysin and "protein S.V.2." AR24J cells store [3H]GABA, which is secreted upon potassium depolarization in a calcium-dependent manner. In addition, we found the expression of the receptor for the neurotransmitter substance P by using a receptor-specific cDNA probe. Glucocorticoid treatment, which profoundly inhibits cellular growth and induces differentiation, results in a rapid decrease of substance P receptor (SPR) gene expression as assessed by Northern blot analysis. Intracellular Ca2+ mobilization was then determined in response to substance P in control cells and glucocorticoid-pretreated cells by dual wavelength spectrophotometry using fura-2 in single cells. Glucocorticoid-mediated down-regulation of substance P receptors resulted in a dose- and time-dependent decrease of the intracellular Ca2+ mobilization stimulated by substance P. In summary, these data indicate that AR42J cells display an amphicrine phenotype with two differentially regulated secretory pathways; during glucocorticoid-induced differentiation, the cells become less sensitive to substance P stimulation as a consequence of reduced gene expression of the substance P receptor.

Animals↗

Differential nuclear localization of protein kinase C isoforms in neuroblastoma x glioma hybrid cells.

The protein kinase C (PKC) alpha, beta and epsilon isoforms have distinct nuclear localizations in neuroblastoma x glioma hybrid cells NG 108-15. We found by immunoblotting that PKC alpha, beta II, delta and epsilon are the predominant isoforms in these cells. In contrast to other neuronal cell lines, none of these isoforms is down-regulated during differentiation. Confocal immunofluorescence microscopy revealed that in undifferentiated cells PKC alpha is located in the cytoplasm and in the nucleus excluding nucleoli. In differentiated cells PKC alpha was almost exclusively located in the cytoplasm. Stimulation of the cells with phorbol ester resulted in translocation to the plasma membrane. PKC beta II was not detectable in the nuclei. PKC delta was found in the nucleoli and in the cytoplasm, in differentiated cells particularly in the neurites. Phorbol ester failed to induce a translocation to other compartments. PKC epsilon was localized with the nuclear-pore complexes at the nuclear envelope. In differentiated cells after stimulation with phorbol ester, partial translocation to the plasma membrane was observed.

Animals↗

The effect of cyclosporine on calcium, protein kinase C, and sodium-proton exchange in platelets.

Cyclosporine increases platelet aggregation as well as the risk of thromboembolism. To test the hypothesis that CsA stimulates platelets by activating cytosolic calcium [Ca2+]i and related mechanisms, we measured the effects of CsA on [Ca2+]i, protein kinase C (PKC), and sodium/proton (Na+/H+) exchange. [Ca2+]i was measured in human platelets with fura 2, PKC was determined by the phosphorylation of the endogenous 47 kDa protein, and Na+/H+ exchange was measured with BCECF after acidification of the platelets with propionic acid. CsA alone did not influence basal PKC activity in platelets. However, CsA augmented the thrombin-induced phosphorylation of the specific PKC substrate p47 in platelets in a dose-dependent fashion. CsA did not affect basal [Ca2+]i--however, it increased thrombin-induced calcium influx. The effect of CsA on PKC was not dependent on the CsA-induced calcium influx. CsA increased Na+/H+ exchange, which was blocked completely by a PKC inhibitor. Our results demonstrate that CsA directly augments PKC-dependent cellular mechanisms in platelets.

Biological Transport↗

Type B cholecystokinin receptors on rat glioma C6 cells. Binding studies and measurement of intracellular calcium mobilization.

To our knowledge, no brain derived cell line has been shown as yet to bear cholecystokinin(CCK)B receptors. In this paper, CCK binding sites were identified on rat C6 glioma cells. Pharmacological characterization demonstrated a single class of high affinity binding sites (Kd = 1.7 +/- 0.3 x 10(-10) M) and a binding capacity of 6.1 +/- 1.8 fmol/mg protein. These CCK binding sites displayed a typical CCKB pharmacological profile as shown in competition studies by using several CCK-related compounds and nonpeptide CCK antagonists discriminating between CCKA and CCKB sites. In order to demonstrate that CCK binding sites constitute a functional receptor CCK-8S induced mobilization of free intracellular calcium was investigated in single C6 cells by using a laser scanning confocal imaging system. Since rise in [Ca2+]i noted by stimulation of C6 cells with CCK-8S could be blocked by the CCKB receptor antagonist L-365,260 (100 nM) but not by the CCKA receptor antagonist L-364,718 (100 nM), CCK induced calcium signal is triggered by activation of CCKB receptors in C6 cells. The rat C6 glioma cell line may serve as a useful model for studying CCKB receptor in brain.

Animals↗

Bombesin receptor gene expression in rat pancreatic acinar AR42J cells: transcriptional regulation by glucocorticoids.

BACKGROUND/AIMS: This study investigated the correlation between glucocorticoid-regulated gene expression of the bombesin receptor (BR) and cellular sensitivity to bombesin stimulation in the rat pancreatic acinar cell line AR42J. METHODS: BR gene expression was assessed using a cloned complementary DNA probe and radioligand binding assays. Intracellular Ca2+ mobilization was assessed by dual wavelength spectrophotometry using fura-2 in single cells. RESULTS: Dexamethasone resulted in a rapid dose- and time-dependent decrease of BR messenger RNA levels with maximal inhibition to 25% +/- 2% of controls (n = 4) after 6 hours of hormone treatment. BR messenger RNA half-life was approximately 120 minutes and was not affected by dexamethasone pretreatment; nuclear run-on analysis showed a decreased transcription rate of the BR to approximately 25% of control after hormonal treatment. Radioligand binding studies showed a time-dependent decrease of specific bombesin binding to 25% +/- 8% of control after 48 hours of hormone treatment. Down-regulation of BR gene expression by dexamethasone resulted in a time- and dose-dependent decrease of intracellular Ca2+ mobilization after bombesin stimulation compared with untreated controls. CONCLUSIONS: Glucocorticoids decrease BR gene transcription. The subsequent decrease in cellular BR number renders AR42J cells less sensitive for bombesin-stimulated intracellular Ca2+ mobilization.

Animals↗

CCKB receptor signaling in rat pituitary GH3 cells. CCK-8S-induced intracellular calcium mobilization by Ca2+ release and Ca2+ influx.

We describe the effect of sulphated cholecystokinin octapeptide (CCK-8S) on [Ca2+]i in rat pituitary GH3 cells. Investigations were performed on fluo-3 loaded cells by using a confocal imaging system MRC-600 (Bio-Rad). Because CCK-8S mobilized intracellular calcium in cells bathed in Ca(2+)-free buffer it must be able to release calcium from internal stores. Furthermore, influx of Ca2+ from outside the cells seems to contribute to CCK-8S induced increases in [Ca2+]i as demonstrated by calcium mobilization in GH3 cells preincubated with thapsigargin in Ca2+ containing buffer.

Animals↗