Search PubMed⌕ Search

Biomedical subjects

K Werdan

Publications and source records attributed to K Werdan.

At least 55 records · Page 3Linked to original sources

Improved outcome of APACHE II score-defined escalating systemic inflammatory response syndrome in patients post cardiac surgery in 1996 compared to 1988-1990: the ESSICS-study pilot project.

OBJECTIVE: Cardiac surgery using extracorporeal circulation leads to the release of cytokines and subsequently to a systemic inflammatory response syndrome, which is thought to be a negative prognostic factor for patients' outcome. A stratification for the risk of an escalating systemic inflammatory response syndrome had been achieved in a monocenter study carried out in 1988-1990, using APACHE II scoring on the morning of the 1st postoperative day. We now re-evaluated this concept prospectively in three independent centers. METHODS: The APACHE II based risk stratification was put to test in three independent heart surgery centers in the period from June to December 1996. Nine hundred and forty-five patients after elective cardiac surgery (excluding heart transplantation) with the assistance of the cardiopulmonary bypass were prospectively monitored. RESULTS: We found an increase in mortality with higher APACHE II score values determined on the 1st postoperative day. The mortality rose to nearly 50% with an APACHE II score of > or = 28. Patients at high risk for the development of a systemic inflammatory response syndrome (APACHE II score > or = 24) significantly differed from patients at lower risk (APACHE II score < 19) in the duration of mechanical ventilation and extracorporeal circulation, age and New York Heart Association (NYHA) classification (P < 0.05). CONCLUSION: The APACHE II score determined on the morning of the 1st postoperative day helps identifying the subgroup of patients with escalating systemic inflammatory response syndrome. Comparison with the data obtained in the years 1988-1990, suggests a better prognosis in the current trial for patients at high risk with a similar degree of escalating systemic inflammatory response syndrome.

APACHE↗

Cerebrovascular reactivity is impaired in patients with cardiac failure.

AIMS: We undertook this study to evaluate potential changes in cerebral vasoreactivity in patients with cardiac failure and their consequent dependence upon cardiac functional variables. METHODS AND RESULTS: A total of 50 patients with various degrees of heart failure, 20 age-matched controls and 20 normal controls were examined. Cerebrovascular reactivity was examined with the carbon dioxide technique. Mean flow velocities of both middle cerebral arteries as well as end-tidal carbon dioxide partial pressure were continuously registered. Normal controls were examined on two different occasions, to evaluate the technique's reproducibility. Cerebrovascular reactivity was significantly reduced in all examined patients as compared to controls, and in NYHA IV as compared to NYHA II and III patients. A significant relationship between cerebrovascular reactivity and left ventricular ejection fraction was evident. Reproducibility of the technique was satisfactory. CONCLUSION: Our study provided evidence of significantly reduced cerebrovascular reactivity in patients with cardiac failure, which was significantly related to the NYHA grade and the left ventricular ejection fraction.

Blood Flow Velocity↗

The overall concept: immunoglobulins as adjuvants for mediastinitis--does it make sense?

Supportive intravenous immunoglobulin (ivIg) treatment may reduce the incidence and severity of infections in a well-defined group of patients in intensive care, including those who have had cardiac surgery. Sternal wound infections and mediastinitis after cardiac surgery are to be investigated in the ATMI study with Pentaglobin. In this article I focus on optimising ivIg dosage, on likely mechanisms, on reasons why ivIg might improve a primarily gram-positive infection, and on the use of serial scoring as an endpoint in a trial of immunoglobulin.

Cardiac Surgical Procedures↗

Hemofiltrate from patients with severe sepsis and depressed left ventricular contractility contains cardiotoxic compounds.

Myocardial dysfunction due to sepsis is common in patients with multiple organ dysfunction syndrome and is believed to be produced by inflammatory mediators. Some of these mediators may be eliminated by continuous hemofiltration, which is a standard procedure in an ICU for renal replacement therapy. This study was designed to directly compare the effects of ultrafiltrates from patients with sepsis (UFs) with ultrafiltrates from healthy volunteers (UFh) in well-characterized cardiomyocyte culture systems. Isovolemic hemofiltration (filtration rate: 2 L/h, polyamide membrane) was performed during 12 hours in 5 patients with severe sepsis (Elebute Score >20) and simultaneously reduced left ventricular contractility (left ventricular stroke work index [LVSWI] <30 g m/m2) and in 5 healthy volunteers. Inflammatory mediator concentrations (interleukin [IL]-1beta, IL-6, IL-8, tumor necrosis factor [TNF] alpha, C3a, and C5a) were measured in plasma and ultrafiltrate samples taken shortly after the beginning of the hemofiltration procedure. Cell culture experiments were done comparing UFs with UFh by using spontaneously beating or electrically driven neonatal rat cardiomyocyte cultures. UFs contained significantly higher amounts of IL-1, IL-8, and C3a when compared to UFh. Simultaneously, UFs induced a decrease in the contraction frequency of electrically-stimulated cardiomyocytes, whereas UFh had no effect. The cardiotoxic effect could be reversed by the addition of a high concentration (2.4 mM) of Ca++. Hemofiltration did not alter parameters of cardiac performance during 12 hours in patients with sepsis. UFs induced significant cardiotoxic effects in rat cardiomyocytes, whereas UFh showed no cardiotoxicity. Contact of blood with the hemofiltration membrane did not induce activation of cardiotoxic mediators. Significantly higher filtration rates may be required to improve left ventricular contractility in patients with sepsis by hemofiltration.

Adult↗

Supplemental immune globulins in sepsis.

Intravenous immune globulins are widely used as supplemental treatment of sepsis, septic shock and systemic inflammation in the critically ill, although this indication has at best been validated in part. Likely beneficial mechanisms of action may include the improvement of serum bactericidal activity due to neutralizing and opsonizing immunoglobulin (Ig)G- and IgM-antibodies, as well as stimulation of phagocytosis and neutralization of bacterial endo- and exotoxins; another attractive mode of action may represent immune globulin-mediated modification and specific suppression of proinflammatory cytokine release from endotoxin- and superantigen-activated blood cells. For the "entire group of patients with sepsis and septic shock" a reduction in mortality by intravenous immune globulin could not be documented; however, in the score-based immunoglobulin in sepsis (SBITS)-study with 653 patients included, a moderate improvement in sepsis morbidity and multiple organ dysfunction syndrome was demonstrated. In defined sepsis subgroups, a reduction in mortality by intravenous immune globulin has been seen in individual small, not yet confirmed trials. Finally, the incidence of some severe infections in well characterized "patients at risk" and "operations at risk" is reduced by intravenous immune globulin prophylaxis. Thus, intravenous immune globulin is not a "magic bullet"of sepsis treatment, but it may reduce morbidity and thereby represent a useful piece of stone in the therapeutic mosaic of sepsis treatment.

Controlled Clinical Trials as Topic↗

Reduction of circulating cholesterol and apolipoprotein levels during sepsis.

Sepsis with multiple organ failure is frequently associated with a substantial decrease of cholesterol levels. This decrease of cholesterol is strongly associated with mortality suggesting a direct relation between inflammatory conditions and altered cholesterol homeostasis. The host response during sepsis is mediated by cytokines and growth factors, which are capable of influencing lipid metabolism. Conversely lipoproteins are also capable of modulating cytokine production during the inflammatory response. Therefore the decrease in circulating cholesterol levels seems to play a crucial role in the pathophysiology of sepsis. In this review the interaction between cytokines and lipid metabolism and its clinical consequences will be discussed.

Animals↗

Impaired energy metabolism in hearts of septic baboons: diminished activities of Complex I and Complex II of the mitochondrial respiratory chain.

Recent findings support the view that the bioenergetic part of septic organ failure is not caused by insufficient supply of oxygen but by disturbances of the mitochondrial function. Therefore, the aim of the present study was to investigate key enzymes of energy metabolism in septic hearts to answer the question whether or not impairment of mitochondrial or glycolytic enzymes occur under these conditions. For this purpose the well established model of septic baboons was used. Baboons under general anesthesia were made septic by infusion of Escherichia coli. Single challenge with infusion of high amounts of bacteria was compared with a multiple challenge protocol (less bacteria infused). Some animals obtained no E. coli (sham). The hearts of the baboons were removed after 72 h (survival: yes) or after death (survival: no) of the animals, frozen in liquid nitrogen, and stored at -80 degrees C until spectrophotometrical measurement of nine mitochondrial and glycolytic enzymes. A reduction of the activity of NADH:cytochrome-c-reductase (Complex I + III) to 67% and succinate:cytochrome-c-reductase (Complex II + III) to 45% was found in the hearts of surviving animals after infusion of high amounts of bacteria. After multiple challenge with lesser amounts of bacteria, no significant changes in enzyme activity were detectable. After lethal septic shock, activities of Complex I + III (12%) and Complex II + III (13%) as well as of phosphofructokinase (16%) were found to be strongly diminished. Decylubiquinol:cytochrome-c-reductase (Complex III, 59%), cytochrome-c-oxidase (51%), succinate dehydrogenase (60%), glucosephosphate isomerase (61%), lactate dehydrogenase (61%), and citrate synthase (120%) were less or unaffected. Similar but less pronounced effects were found after infusion of lesser amounts of bacteria. By means of inhibitor titrations of succinate: cytochrome-c-reductase, it was shown that the loss of activity is not caused by Complex III but by disturbances in Complex II. It is concluded that E. coli-induced sepsis causes decreased activities of Complex I and Complex II in baboon heart mitochondria in a dose-dependent manner.

Animals↗

[Emporiatrics].

Explore the source record for details and available documents.

Antibiotic Prophylaxis↗

Platelet-derived interleukin-1 induces cytokine production, but not proliferation of human vascular smooth muscle cells.

During vascular injury, such as observed in atherosclerosis, restenosis, vasculitides, transplantation, or sepsis, vascular smooth muscle cells (SMC) can be exposed to platelets or platelet products. Under these conditions proliferation or cytokine production of SMC stimulated by platelets or platelet products may contribute to regulation of vascular pathogenesis. Thus, we investigated interleukin-6 (IL-6) and IL-8 production as well as proliferation of SMC in response to platelets or platelet lysates. Platelets not already preactivated by thrombin induced IL-6 (10- to 50-fold) or IL-8 production of unstimulated SMC in a cell number dependent fashion. Preactivation of platelets with thrombin potently increased the platelet-mediated IL-6 (50- to 1,000-fold) and IL-8 production of SMC. Hirudin specifically inhibited the activation of platelets with thrombin. Isolated platelets cultured in the absence of SMC did not contain detectable IL-6 or IL-8. Prestimulation (4 hours) of SMC with pathophysiologically relevant substances (lipopolysaccharide [LPS], tumor necrosis factor-alpha [TNF-alpha], or IL-1alpha) further increased the platelet-induced cytokine production. The platelet-derived SMC stimulatory activity was IL-1, since IL-1 receptor antagonist (IL-1-Ra) inhibited the platelet-induced cytokine production of SMC. Anti-platelet-derived growth factor (PDGF)-antibody did not further reduce this activity. Thrombin itself stimulated expression of IL-6 and IL-8 to some degree and induced IL-6 production of SMC synergistically with IL-1. Platelets also induced proliferation of SMC, however, anti-PDGF antibodies, rather than IL-1-Ra blocked this response. These data show that platelet-derived IL-1 stimulates cytokine production of vascular smooth muscle cells, indicating that platelet-derived IL-1 may contribute to regulation of local pathogenesis in the vessel wall by activation of the cytokine regulatory network.

Antibodies, Monoclonal↗

Endotoxin and tumor necrosis factor alpha exert a similar proinflammatory effect in neonatal rat cardiomyocytes, but have different cardiodepressant profiles.

Bolus application of endotoxin to healthy volunteers results in reversible hemodynamic alterations, such as observed in septic cardiomyopathy. Currently, endotoxin-induced cardiodepression is mainly attributed to the endotoxin-induced release of proinflammatory cytokines into the circulation, particularly of tumor necrosis factor alpha and interleukin-1, the serum levels of these cytokines being enhanced in sepsis and septic shock, and also in various heart diseases. In this study, we report a proinflammatory effect of endotoxin (1-10 micrograms/ml, 24-h incubation period) on neonatal rat cardiomyocytes in serum-free culture, evidenced by induction of inducible nitric oxide synthase, enhanced release of nitrite (protein synthesis-dependent) and interleukin-6 into the supernatant, as well as an increase in cell-associated interleukin-1 and a specific cardiodepressant profile: endotoxin disrupts beta-adrenoceptor-mediated increase in pulsation amplitude, but alpha-adrenoceptor-induced increase in pulsation amplitude and arrhythmias are not suppressed. In the presence of dexamethasone (0.1 microM), the endotoxin-mediated blockade of beta-adrenergic responsiveness, as well as induction of inducible nitric oxide synthase, enhanced nitrite release and interleukin-1/-6-production are inhibited. In contrast, tumor necrosis factor alpha at a low concentration (10 U/ml) depresses alpha- and beta-adrenergic responsiveness in the presence of dexamethasone in a nitric oxide-independent manner. These data suggest a stimulatory effect of endotoxin on the cardiomyocyte and a specific proinflammatory and nitric oxide-dependent cardiodepressant profile of endotoxin.

Animals↗

Association of serum tumor necrosis factor levels with decrease of cholesterol during septic shock.

Recent studies suggest that release of cytokines during inflammatory states such as septic shock leads to hypocholesterolemia. To examine whether tumor necrosis factor alpha (TNF), which is the major cytokine in inflammatory disease, causes hypocholesterolemia, we measured serum levels of total (bioactive and receptor-bound) TNF, cholesterol, Apo B, and Apo A1 in seven patients with septic shock over a period of 8 days. Since elevated serum TNF levels are accompanied by the release of soluble TNF receptors, levels of TNF receptors p55 and p75 were also measured. Patients with septic shock had significantly higher serum TNF and TNF receptor levels compared with healthy controls. Increased cytokine levels were accompanied by a significant decline in total serum cholesterol apolipoprotein A1 and B. In vitro studies with cultured human skin fibroblasts, human umbilical vein endothelial cells, and HepG2 hepatoma cells showed that TNF increased the degradation of 125I-labeled low-density lipoprotein in all the cell lines tested. Recombinant soluble TNF receptors inhibited the TNF-induced stimulation of low-density lipoprotein receptor in a concentration-dependent manner. However, the calculated ratio of TNF receptors to total TNF measured in serum of these patients was not able to counteract the stimulatory effect of TNF, possibly due to the higher molar excess of TNF receptors required to achieve this effect in vitro. Our data strengthen the hypothesis that serum values of total TNF determine the extent of hypocholesterolemia during sepsis and septic shock despite the presence of a high concentration of TNF receptors. Studies with recombinant TNF also confirm the role of TNF in hypocholesterolemia in inflammation.

Aged↗

The interleukin-1 and interleukin-1 converting enzyme families in the cardiovascular system.

The multifunctional cytokine interleukin-1 (IL-1) is a key mediator in the cytokine network. The IL-1 family consists of two zymogen isoforms of IL-1 (IL-1alpha and IL-1beta), the IL-1 receptor antagonists, two receptors and receptor-associated proteins. Identification of the enzyme responsible for cleavage and activation of the IL-1beta precursor, the IL-1beta converting enzyme (ICE; caspase 1), unexpectedly linked the IL-1 family to the apoptosis machinery, since ICE is the founding molecule of the caspase family, which is important for regulation of apoptosis. Although it has been suggested that cytokines are involved in pathogenesis of cardiovascular diseases only few informations exist regarding the endogenous production and function of IL-1 and the associated enzyme(s) of the caspase family in the cardiovascular system. Here, we summarize informations regarding the IL-1 and the caspase family in the cardiovascular system.

Animals↗

Cardiodepression by tumor necrosis factor-alpha.

Cardiodepressant effects of tumor necrosis factor-alpha (TNF-alpha have been documented in numerous experimental settings in vivo and in vitro. In vivo administration of TNF-alpha mimicks the cardiovascular pattern of sepsis including septic cardiomyopathy. Serum levels of TNF-alpha were found to be elevated both in sepsis and in numerous non-septic heart disorders. Although an involvement of TNF-alpha in the pathogenesis of septic cardiomyopathy seems likely, presently no definite conclusion can be drawn with regard to the role of TNF-alpha in chronic heart failure. The origin and trigger mechanisms for the release of TNF-alpha in heart failure are a matter of debate, endotoxin (LPS) from intestinal translocation in venous congestion being one possible player. The negative inotropic impact of TNF-alpha is frequently ascribed to the induction of inducible nitric oxide (NO) synthase (iNOS). Results from in vitro studies rather suggest a complex interaction of TNF-alpha with the heart, with pleiotropic effects on cardiomyocyte performance, including an induction of iNOS at higher TNF-alpha concentrations, but NO-independent cardiodepression at low, pathophysiologically more relevant concentrations. TNF-alpha effects on the heart also vary with regard to the kinetics of the process: rapidly occuring cardiodepressant effects include a release of sphingosine and a suppression of the calcium transient, while chronic administration of TNF-alpha was shown to depress the synthesis of precursors for the phosphoinositide pathway and inhibit pyruvate dehydrogenase activity and mitochondrial function. Whether secondary cytokines induced by TNF-alpha in cardiomyocytes contribute to cardiodepression or whether apoptotic signals activated by TNF-alpha are involved in the cardiodepressive pathways is presently unknown.

Animals↗