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Biomedical subjects

C Bode

Publications and source records attributed to C Bode.

At least 19 recordsLinked to original sources

Interaction of glutamic-acid-rich proteins with the cGMP signalling pathway in rod photoreceptors.

The assembly of signalling molecules into macromolecular complexes (transducisomes) provides specificity, sensitivity and speed in intracellular signalling pathways. Rod photoreceptors in the eye contain an unusual set of glutamic-acid-rich proteins (GARPs) of unknown function. GARPs exist as two soluble forms, GARP1 and GARP2, and as a large cytoplasmic domain (GARP' part) of the beta-subunit of the cyclic GMP-gated channel. Here we identify GARPs as multivalent proteins that interact with the key players of cGMP signalling, phosphodiesterase and guanylate cyclase, and with a retina-specific ATP-binding cassette transporter (ABCR), through four, short, repetitive sequences. In electron micrographs, GARPs are restricted to the rim region and incisures of discs in close proximity to the guanylate cyclase and ABCR, whereas the phosphodiesterase is randomly distributed. GARP2, the most abundant splice form, associates more strongly with light-activated than with inactive phosphodiesterase, and GARP2 potently inhibits phosphodiesterase activity. Thus, the GARPs organize a dynamic protein complex near the disc rim that may control cGMP turnover and possibly other light-dependent processes. Because there are no similar GARPs in cones, we propose that GARPs may prevent unnecessary cGMP turnover during daylight, when rods are held in saturation by the relatively high light levels.

ATP-Binding Cassette Transporters

Stimulation of a vascular smooth muscle cell NAD(P)H oxidase by thrombin. Evidence that p47(phox) may participate in forming this oxidase in vitro and in vivo.

Thrombin is a potent vascular smooth muscle cell (VSMC) mitogen. Because recent evidence implicates reactive oxygen intermediates (ROI) in VSMC proliferation in general and atherogenesis in particular, we investigated whether ROI generation is necessary for thrombin-induced mitogenesis. Treatment of human aortic smooth muscle cells with thrombin increased DNA synthesis, an effect that was antagonized by diphenyleneiodonium but not by other inhibitors of cellular oxidase systems. This effect of thrombin was accompanied by increased O-2 and H2O2 generation and NADH/NADPH consumption. ROI generation in response to thrombin pretreatment could also be blocked by diphenyleneiodonium, suggesting that the NAD(P)H oxidase was necessary for ROI generation and thrombin-induced mitogenesis. Because of observed differences between the VSMC and neutrophil oxidase, we examined whether the cytosolic components of the phagocytic NAD(P)H oxidase were present in VSMC. p47(phox) and Rac2 were present in VSMC. Furthermore, thrombin increased expression of p47(phox) and Rac2 and stimulated their translocation to the cell membrane. We examined whether p47(phox) might be similarly regulated in vivo in a rat aorta balloon injury model and found that p47(phox) protein was increased after injury. Immunocytochemistry localized expression of p47(phox) to the neointima and media of injured arteries. Our data demonstrate that generation of O-2 and H2O2 is required for thrombin-mediated mitogenesis in VSMC and that p47(phox) is regulated by thrombin in vitro and is associated with vascular lesion formation in vivo.

Animals

Rhodopsin's carboxy-terminal cytoplasmic tail acts as a membrane receptor for cytoplasmic dynein by binding to the dynein light chain Tctex-1.

The interaction of cytoplasmic dynein with its cargoes is thought to be indirectly mediated by dynactin, a complex that binds to the dynein intermediate chain. However, the roles of other dynein subunits in cargo binding have been unknown. Here we demonstrate that dynein translocates rhodopsin-bearing vesicles along microtubules. This interaction occurs directly between the C-terminal cytoplasmic tail of rhodopsin and Tctex-1, a dynein light chain. C-terminal rhodopsin mutations responsible for retinitis pigmentosa inhibit this interaction. Our results point to an alternative docking mechanism for cytoplasmic dynein, provide novel insights into the role of motor proteins in the polarized transport of post-Golgi vesicles, and shed light on the molecular basis of retinitis pigmentosa.

Amino Acid Sequence

Effects of chronic alcohol abuse on duodenal mononuclear cells in man.

The aim of this study was to investigate whether chronic alcohol abuse alters the number and distribution of mononuclear cells of the duodenal mucosa. The number of common leukocyte antigen (CLA)-positive interepithelial lymphocytes (IEL), B lymphocytes (BL), IgA-producing plasma cells (IgA-PC), and macrophages (MP) was quantitatively evaluated in biopsies of the duodenal mucosa of patients with alcohol abuse compared to subjects without alcohol abuse. Biopsies from the descending part of the duodenum were obtained by endoscopy from two groups of patients with chronic alcohol abuse (group A1, abstinence <5 days, N = 21) and group A2 abstaining 5-10 days (N = 6). Twenty-five subjects without alcohol abuse served as controls (C). Immunohistochemical staining was done by avidin-biotin-complex method. In addition, the content of IgA in the plasma cells was determined by using a TV-densitometric method. The number of B-lymphocytes in the lamina propria was increased by 37% in group A1 (P < 0.005). A distinct decrease was observed in group A1 compared to C in the number of IEL that were CLA positive (-50%, P < 0.025) and in the number of macrophages (-54%, P < 0.025). In group A2 the differences in the number of B lymphocytes and macrophages were no longer seen. In A1, there was no significant change in the number of IgA-producing plasma cells or in the number of interepithelial lymphocytes counted after H&E staining compared to the controls. There was no difference in content of IgA in the IgA-producing plasma cells. From these results it is concluded that chronic alcohol abuse significantly influences the gut-associated immune system, possibly by increasing the permeability of the gut mucosa to macromolecules that act as antigens.

Alcoholism

The effect of intravenously administered magnesium on platelet function in patients after cardiac surgery.

UNLABELLED: After cardiac surgery, magnesium is often administered for prophylaxis and treatment of cardiac arrhythmias. Magnesium, however, inhibits platelet function in vitro and in healthy volunteers. We performed a randomized, blinded, and placebo-controlled study to investigate the effect of magnesium on platelet function in patients after cardiac surgery. We studied patients who underwent uneventful coronary revascularization with cardiopulmonary bypass on the first postoperative day. Before and after an infusion of either 5.4 mmol magnesium (n = 19) or saline (n = 20), platelet function was investigated by means of in vitro bleeding time, platelet aggregation, and flow-cytometric assays. In addition, to investigate platelet function in vitro, 1, 5, and 10 mM magnesium were added to platelet-rich plasma before and 24 h after surgery in 30 patients. Compared with the control group, magnesium prolonged the in vitro bleeding time (22%) and inhibited ADP- and collagen-induced platelet aggregation (13% and 17%), platelet P-selectin expression (18%), and the binding of fibrinogen to the platelet glycoprotein IIb/IIIa receptor (10%). Magnesium also led to significant dose-dependent inhibition of platelet aggregation (19%), P-selectin expression (14%), and fibrinogen binding (11%) before and after surgery in vitro. Although the antithrombotic effect of magnesium may be beneficial in patients after coronary revascularization, large-dose magnesium therapy should be carefully considered in patients with impaired platelet function and co-existing bleeding disorders. IMPLICATIONS: In a randomized, blinded, placebo-controlled study of patients 24 h after coronary artery bypass grafting, IV administered magnesium inhibited platelet function in vitro and in vivo.

Adenosine Diphosphate

A bispecific antifibrin-antiplatelet urokinase conjugate (BAAUC) induces enhanced clot lysis and inhibits platelet aggregation.

Thrombolysis is well established in the treatment of acute myocardial infarction. However, clinical application of thrombolytic agents has limitations with respect to efficacy and specificity. To achieve highly effective and at the same time clot-selective plasminogen activation urokinase was coupled to a bispecific antibody consisting of the monovalent Fab' from the antifibrin monoclonal antibody 59D8 and the monovalent Fab' from the anti-glycoprotein GPIIb/IIIa monoclonal antibody 7E3. The bispecific antifibrin-antiplatelet urokinase conjugate (BAAUC) was synthesized and characterized. Assays with either immobilized platelets, GPIIb/IIIa or fibrin showed an increase in plasminogen activation compared to uncoupled urokinase by 10-fold, 58-fold and 13-fold, respectivley (p < 0.0001 each). In vitro clot lysis was performed on platelet-rich and fibrin-rich clots and revealed an up to 5-fold higher potency of BAAUC compared to uncoupled urokinase (p < 0.0001). In vitro platelet aggregation was effectively inhibited by the hybrid molecule, whereas urokinase had no effect. BAAUC and two monospecific urokinase-conjugates, UK-59D8-IgG and UK-7E3-(Fab')2 were compared with each other with regard to similar tests. In vitro clot assays with platelet-rich and platelet-poor clots were performed. BAAUC achieved a significantly higher plasminogen activation compared to each of the monospecific conjugates (p < 0.05, respectively). We conclude that BAAUC, a bispecific plasminogen activator with antifibrin and antiplatelet properties has the potency to lyse both fibrin-rich and platelet-rich thrombi with high efficacy and to effectively inhibit platelet aggregation.

Antibodies, Bispecific

Induction of fibrinogen binding and platelet aggregation as a potential intrinsic property of various glycoprotein IIb/IIIa (alphaIIbbeta3) inhibitors.

The blockade of platelet integrin glycoprotein (GP) IIb/IIIa is a promising new antiplatelet strategy. The binding of ligands or of the ligand-mimetic peptide RGD causes a conformational change of GP IIb/IIIa from the nonactivated to the activated state. Because several blocking agents/inhibitors are ligand-mimetics, the current study evaluates whether these agents have the intrinsic property to activate GP IIb/IIIa. Fibrinogen binding to GP IIb/IIIa on platelets or on CHO cells expressing recombinant GP IIb/IIIa was evaluated by flow cytometry or 125I-labeled fibrinogen. Incubation with the monoclonal antibody (MoAb) fragment c7E3 (abciximab) results in fibrinogen binding to GP IIb/IIIa and in the access of ligand-induced binding sites. At low concentrations (0.01 to 0.1 microgram/mL), this intrinsic activating property of c7E3 can result in platelet aggregation. The disintegrin flavorodin and the RGD analogue fradafiban also induce fibrinogen binding, whereas the blocking MoAbs 2G12 and P2 and the activation-specific MoAb PAC-1 do not. Aspirin and indomethacin cannot block c7E3-induced fibrinogen binding to GP IIb/IIIa, but can inhibit c7E3-induced platelet aggregation. Thus, we conclude that GP IIb/IIIa inhibitors can demonstrate an intrinsic activating property, which can result in fibrinogen binding to GP IIb/IIIa and consequently in platelet aggregation. Cyclooxygenase inhibitors can inhibit platelet aggregation caused by GP IIb/IIIa inhibitors. Further studies will have to evaluate the clinical relevance of the potential intrinsic activating property of GP IIb/IIIa inhibitors and define consequences for the future drug development and evaluation of these potent antiplatelet agents.

Abciximab

The haemochromatosis candidate gene HFE (HLA-H) of man and mouse is located in syntenic regions within the histone gene cluster.

The HFE (HLA-H) gene is a strong candidate gene for hereditary haemochromatosis and was localized on the short arm of chromosome 6 to 6p21.3-p22. In addition, the sequence of the homologous mouse and rat cDNA and a partial sequence from the mouse gene have been reported recently. In this report, we describe the location of the human and the mouse HFE (HLA-H) gene within the histone gene clusters on the human chromosome 6 and the mouse chromosome 13. Both the human and the murine gene were located on syntenic regions within the histone gene clusters in the vicinity of the histone H1t gene. The genomic sequence of the human HFE (HLA-H) gene and the 3' portion of the homologous mouse gene were determined. Comparison of the genomic sequences from man and mouse and the cDNA sequence from rat shows significant similarities, also beyond the transcribed region of the mouse gene.

Animals

Inhaled nitric oxide inhibits human platelet aggregation, P-selectin expression, and fibrinogen binding in vitro and in vivo.

BACKGROUND: Recent data suggest that inhaled NO can inhibit platelet aggregation. This study investigates whether inhaled NO affects the expression level and avidity of platelet membrane receptors that mediate platelet adhesion and aggregation. METHODS AND RESULTS: In 30 healthy volunteers, platelet-rich plasma was incubated with an air/5% CO2 mixture containing 0, 100, 450, and 884 ppm inhaled NO. ADP- and collagen-induced platelet aggregation, the membrane expression of P-selectin, and the binding of fibrinogen to the platelet glycoprotein (GP) IIb/IIIa receptor were determined before (t0) and during the 240 minutes of incubation. In addition, eight patients suffering from severe adult respiratory distress syndrome (ARDS) were investigated before and 120 minutes after the beginning of administration of 10 ppm inhaled NO. In vitro, NO led to a dose-dependent inhibition of both ADP-induced (3+/-3% at 884 ppm versus 70+/-6% at 0 ppm after 240 minutes; P<.001) and collagen-induced (13+/-5% versus 62+/-5%; P<.01) platelet aggregation. Furthermore, P-selectin expression (36+/-7% of t0 value; P<.01) and fibrinogen binding (33+/-11%; P<.01) were inhibited. In patients with ARDS, after two who did not respond to NO inhalation with an improvement in oxygenation had been excluded, an increase in plasma cGMP, prolongation of in vitro bleeding time, and inhibition of platelet aggregation and P-selectin expression were observed, and fibrinogen binding was also inhibited (19+/-7% versus 30+/-8%; P<.05). CONCLUSIONS: NO-dependent inhibition of platelet aggregation may be caused by a decrease in fibrinogen binding to the platelet GP IIb/IIIa receptor.

Administration, Inhalation

Induction of rat aortic smooth muscle cell growth by the lipid peroxidation product 4-hydroxy-2-nonenal.

BACKGROUND: Atherosclerotic lesion formation is a complex process, in part mediated by inflammatory and oxidative mechanisms including lipid peroxidation. To further characterize the potential role of lipid peroxidation products in atherogenesis, we studied the effects of 4-hydroxy-2-nonenal (HNE) on rat aortic smooth muscle cell growth. METHODS AND RESULTS: HNE, at concentrations of 1.0 and 2.5 micromol/L, significantly stimulated rat aortic smooth muscle cell growth as determined by cell counts, [3H]-thymidine uptake, and incorporation of bromo-deoxyuridine. To characterize the mechanism of HNE-induced mitogenesis, its effect on activation of intracellular growth signaling pathways was examined. Treatment with HNE resulted in activation of extracellular signal-regulated protein kinases ERK1 and ERK2, induction of c-fos and c-jun protein expression, and an increase in transcription factor AP-1 DNA binding activity. In addition, HNE induced expression of platelet-derived growth factor-AA (PDGF-AA) protein, and an anti-PDGF-AA antibody specifically inhibited HNE-mediated DNA synthesis, suggesting that growth factor induction may play a role in HNE-induced vascular smooth muscle cell growth. The role of redox-sensitive mechanisms in this process was further supported by the observation that HNE-induced DNA synthesis and AP-1 activation were inhibited by the antioxidants N-acetylcysteine and pyrrolidine dithiocarbamate. CONCLUSIONS: These data demonstrate that HNE, one of several important lipid peroxidation products, induces rat aortic smooth muscle cell growth through redox-sensitive mechanisms and growth factor expression. These observations are consistent with a role for lipid peroxidation products in vascular smooth muscle cell growth in atherogenesis.

Aldehydes

Management strategies for a better outcome in unstable coronary artery disease.

Unstable coronary artery disease is a term encompassing both unstable angina and non-Q-wave (non-ST-segment elevation) myocardial infarction. Patients with these conditions are at risk of early progression to acute myocardial infarction and death. Thus, management of these conditions must aim to reduce long-term mortality and morbidity. Risk stratification is crucial for the identification of patients whose risk of early progression is high; they may require coronary angiography and (if suitable) either percutaneous transluminal coronary angioplasty or coronary artery bypass surgery. No single variable can accurately predict risk, but considerable data are emerging to show that biochemical markers of myocardial injury, such as troponin-T and troponin-I, are valuable in combination with electrocardiographic findings and clinical features. Routine early invasive procedures (coronary angiography with or without revascularization) have not yet been shown to have any significant advantage over conservative regimens for the majority of patients. Antiplatelet, anticoagulant, and anti-ischemic agents remain the mainstay of treatment in the acute phase. New agents, such as glycoprotein IIb/IIIa receptor inhibitors and low-molecular-weight heparins, as well as antithrombins and Factor Xa inhibitors add to the treatments currently available. Thrombolytic agents are contraindicated in the absence of ST-segment elevation. After clinical stabilization, ongoing assessment should include exercise testing for all patients who are able; other imaging techniques should be used for patients unable to exercise. A profile indicating a high risk of future events is an indication for elective angiography and consideration for revascularization.

Algorithms

Augmentation of arterial endothelial cell expression of the plasminogen activator inhibitor type-1 (PAI-1) gene by proinsulin and insulin in vivo.

Diabetes mellitus is associated with an increased incidence and greater severity of primary atherosclerosis as well as restenosis after angioplasty for reasons not yet clear. We have shown previously that insulin and proinsulin-typically elevated in blood in patients with type II diabetes-increase plasma activity of plasminogen activator inhibitor type 1 (PAI-1)in vivo. Others have demonstrated that increased PAI-1 activity is associated with coronary heart disease. Accordingly, the present study was performed to identify sites of increased expression of the PAI-1 gene within the vessel wall. Equimolar concentrations of insulin, proinsulin, or vehicle alone as a control, were administered intravenously over 1 h to conscious rabbits that were kept euglycemic throughout by the use of glucose clamping. Within 3 h plasma PAI-1 activity increased from 1.15+/-1.34 to 11.33+/-4.30 AU/ml with insulin (mean+/-s.d., P=0.015) and from 2.83+/-0.74 to 15.43+/-4.70 AU/ml with proinsulin (P=0.035). This was found to be in contrast to the controls where the increase in plasma PAI-1 activity was of lesser degree (2.43+/-1.86 to 6.80+/-1.10 AU/ml, P=n.s., n=4 each). As judged from the results of in situ hybridization, the site of prominent aortic expression of the PAI-1 gene was the endothelium. Furthermore, expression increased further in this site after administration of insulin or proinsulin. As judged from results of immunohistochemistry, PAI-1 protein in the aorta was also prominent in endothelium. These results suggest that "hyper(pro)insulinemia", increases PAI-1 not only in blood but also in arterial endothelium. Thus, attenuation of vasculopathy and especially of restenosis after angioplasty in type II diabetes may be possible with somatic gene therapy targeting PAI-1 expression in endothelial cells.

Animals

[Prevention and treatment of restenosis after percutaneous transluminal coronary angioplasty].

Restenosis is a clinical problem after coronary angioplasty associated with major ischemic events or repeat interventions in 20-50% of the patients undergoing this procedure. Major efforts have been undertaken in the past decade to successfully prevent or treat restenosis but no pharmacologic approach to the problem has as yet been identified to be effective enough in clinical conditions. New strategies to cope with restenosis are targeted by local application of ionizing radiation which markedly reduces cell proliferation after angioplasty in animal experiments. Preliminary clinical trials indicate that endovascular radiation therapy is a safe and effective means to treat restenosis. Randomized, multicenter studies with long follow-up periods are needed to support these early results.

Angioplasty, Balloon, Coronary

[Catheter-assisted techniques for decreasing the rate of restenosis after coronary angioplasty: an overview of radiotherapy].

Restenosis after percutaneous transluminal coronary angioplasty (PTCA) is a clinical problem associated with major ischemic events or repeat interventions in 20-50% of the treated patients. Systemic drug therapy has not yet been shown to prevent restenosis in clinical conditions. However, local therapeutic strategies are evolving, such as the catheter-based delivery of drugs, of antiproliferative genes, or of ionizing radiation. Experimental studies show that radiation therapy reduces restenosis rates, and preliminary clinical trials investigating a small number of patients indicate that, in particular, catheter-based radiation may be safe and effective. Randomized multicenter studies with long follow-up periods are needed to support these early results.

Angioplasty, Balloon, Coronary

Expression of the mouse histone gene H1t begins at premeiotic stages of spermatogenesis.

The gene encoding H1t, a testicular variant of histone H1, is expressed in mammals during spermatogenesis. Northern blot and in situ hybridization has detected H1t mRNA only at the stage of pachytene spermatocytes. We have extended this analysis to more sensitive approaches and demonstrate, by RNase protection and electron-microscopic in situ hybridization, that H1t mRNA is detectable even in spermatogonia. Just a faint H1t band is seen in Western blots of nuclear protein from 9-day-old mice. This indicates that the H1t gene is expressed at premeiotic stages, albeit at a low level. In contrast to H1t mRNA, the H1t protein has not been detected in spermatogonia by electron microscopy after immunogold staining.

Animals

Prospective use of glycoprotein IIb/IIIa receptor blockers in the emergency department setting.

Platelets play a pivotal role in the pathophysiology of acute coronary syndromes (ACS) and thus are logical therapeutic targets for treatment of this disease process. Platelet glycoprotein (GP) IIb/IIIa receptor antagonists, which interrupt the final common pathway of platelet aggregation, have been proved to reduce the 30-day incidence of death, acute myocardial infarction (MI), and urgent revascularization in both high-risk and low-risk patients undergoing percutaneous intervention procedures. Three-year follow-up has indicated that these benefits appear durable. Recent large-scale randomized trials have demonstrated the value of GP IIb/IIIa receptor inhibitors in reducing the risk of death and MI in patients with unstable angina or those with MI with non-Q-wave abnormalities who are receiving pharmacologic management. In addition, emerging evidence suggests a future role for GP IIb/IIIa receptor inhibitors as an adjunct to low-dose fibrinolytic therapy in patients with acute MI. As the list of indications for GP IIb/IIIa receptor antagonists expands to encompass the full spectrum of ACS, there is increasing interest in the potential use of these agents in the emergency department setting. The integration of GP IIb/IIIa receptor inhibitors into ED protocols will ultimately depend largely on whether these drugs prove to be safe and effective regardless of the direction of ST-segment deviation, and irrespective of whether definitive therapy will be invasive or conservative.

Acute Disease

Validation and comparison of two computerized methods of obtaining a diet history.

The aim of this study was to validate two computerized methods of obtaining a diet history (DH and EBIS). The food consumption of 12 men and eight women was calculated by weighing each food item over a period of 8 days. Thereafter the diet history was taken over this period by using both programs alternatively. The intake of energy, protein, fat and carbohydrates, and 10 further nutrients was evaluated and the percentage difference calculated. In general, the intake of nutrients calculated from the diet history tended to be underestimated by most of the people interviewed. The mean daily intake of the nutrients calculated from the DH program deviates from -34% to +20% (mean SD = 48.1) and -35% to +15% for EBIS (mean SD = 28.1). In conclusion, both computerized methods proved useful for epidemiological studies, but not for the determination of deficiencies in individuals.

Aged

Light and electron microscopic in-situ hybridization of collagen type I and type II mRNA in the fibrocartilaginous tissue of late-stage osteoarthritis.

OBJECTIVE: Biochemical analysis indicates the presence of collagen type I in fibrocartilaginous tissue of osteoarthritic cartilage, whereas normal hyaline cartilage contains only collagen type II produced by normal chondrocytes. Fibrocartilaginous tissue of late-stage osteoarthritis also exhibits irregularly shaped type 2b secretory chondrocytes as described in the literature. We have attempted to elucidate the type of cell which produces each type of collagen in late-stage osteoarthritis. DESIGN: We carried out in-situ hybridization at the light and electron microscopic level on the same tissue embedded in LR-Gold applying silver enhancement for gold-coupled anti-DIG antibodies. We correlated the types of cells with the expression of transcripts for type I and type II collagen. RESULTS: We found that cells resembling type 2b secretory chondrocytes of deep zones of fibrocartilaginous tissue expressed collagen type I mRNA and almost no collagen type II mRNA. The amount of collagen type I mRNA was as high as the amount produced in normal human skin fibroblasts. CONCLUSION: Some of the collagen type I in osteoarthritic human cartilage of late-stage disease is produced by cells resembling type 2b secretory chondrocytes of the deep zone.

Adult