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K Werdan

Publications and source records attributed to K Werdan.

At least 73 records · Page 4Linked to original sources

[Significance of the heart-lung machine for the concept of minimal invasive heart surgery].

Proinflammatory cytokines have been implicated in mediating myocardial dysfunction in a systemic inflammatory reaction following open heart surgery with extracorporeal circulation (ECC). The present study aimed to distinguish the surgical impact on cytokine release from the influence of ECC in a model of supported angioplasty. The extracorporeal circulation and not surgical trauma was found to be the main trigger of the systemic inflammatory response.

Adult↗

[Cytokines and heart diseases. Attempt at an update].

UNLABELLED: Acute septic cardiomyopathy is-to our present knowledge-the heart disease most strongly interrelated with cytokines. Myocardial depression by cytokines is characterized by their pleiotropic actions mediating not only impairment of one, but several inotropic cascades. Information concerning the relevance of cytokines in non-septic heart diseases is-at present-scarce: Concepts emerge in cases of myocarditis, heart failure and cardiomyopathies, acute coronary syndromes, systemic inflammatory response due to cardiopulmonary bypass, heart transplant rejection and Kawasaki disease. CONCLUSION: Cytokines are involved in heart diseases.

Animals↗

A post-receptor defect of adenylyl cyclase in severely failing myocardium from children with congenital heart disease.

The aim of this study was to determine whether a defect at the post-receptor level of adenylyl cyclase may also contribute to the decreased effectiveness of cAMP-increasing agents in severely failing patients with congenital heart disease. The severity of congestive heart failure in 31 patients with congenital heart disease was graded by a scoring system which included a description of historical and clinical variables. Patients were divided into a group with no or mild heart failure (score < or = 6) and a group with severe heart failure (score > 6). beta-Adrenoceptor-stimulated adenylyl cyclase activity was significantly decreased by 65% in patients with severe heart failure in comparison to the group of patients with no or mild heart failure. In addition, receptor-independent adenylyl cyclase stimulation by forskolin was reduced by 52% in patients with score > 6 compared to patients with score < or = 6. This post-receptor defect of adenylyl cyclase was apparently due to a decrease in the activity of catalytic subunit of adenylyl cyclase as adenylyl cyclase stimulation by forskolin in the presence of Mn2+ which uncouples catalytic subunit from the G proteins, G(s) and G(i), was also significantly diminished in the patients with severe heart failure. In contrast, the level of inhibitory G protein alpha-subunits was apparently not different in the two groups. In summary, the data indicate that a defect at the catalytic subunit of adenylyl cyclase apparently contributes to the decreased effectiveness of cAMP-increasing agents in severely failing patients with congenital heart disease.

Adenosine Diphosphate↗

[Systemic inflammatory reactions to extracorporeal therapy measures (II): Cardiopulmonary bypass].

About 65,000 cardiac patients undergo surgery annually in Germany with the assistance of cardiopulmonary bypass. The "post pump inflammatory response" (the systemic and myocardial inflammatory response syndrome post cardiac surgery), triggered at least in part by the cardiopulmonary bypass, contributes substantially towards morbidity (e.g., myocardial depression) and mortality in these patients. The main mechanisms underlying this inflammatory response are the complement cascade, the activation of blood cells, the release of cytokines and the induction to nitric oxide synthesis. The relative importance of each individual factor, however, is still a matter of debate. Scoring systems and measurements of tumor necrosis factor-alpha, as well as soluble tumor necrosis factor receptors, allow the early detection of an "escalating inflammatory response" in 2-10% of all patients, which is associated with a worse prognosis. Therapeutic attempts to suppress these systemic and myocardial inflammatory reactions focus on blockade of the complement system, coating of CPB membranes with heparin, leucocyte depletion and attenuation of leucocyte function, elimination of toxins and mediators by means of hemofiltration, as well as on the administration of antiproteases, antioxidants, oxygen radical scavengers and also of immune globulins.

Cardiopulmonary Bypass↗

[Systemic inflammatory reactions to extracorporeal therapy measures (I): Hemodialysis and hemofiltration].

Hemodialysis and hemofiltration (intermittent or continuous) are the most frequently applied extracorporeal treatment strategies, enabling survival of patients with acute or chronic renal failure. To a various degree on the other hand they induce an undesirable inflammatory response summarized as bioincompatibility. Apart from the quality of the dialysate the composition of the dialytic membrane itself appears to be of very great importance in triggering this inflammatory process. The main humoral and cellular mechanisms underlying this inflammatory response are the activation of complement cascade, the activation of blood cells, the release of cytokines and the induction of nitric oxide synthesis. Various laboratory tests have confirmed a lower degree of inflammatory response on using synthetic membranes in comparison with cuprophane membranes. The importance of these differences in the treatment of dialysis patients with respecto to intradialytic complications and long-term morbidity and mortality, is, however, still a matter of debate. The results of clinical investigations to date are conflicting and have not yet clearly proven, whether implementation of synthetic membranes is of any benefit to dialysis patients or not. Apart from the cost factor there is no argument in favour of using cuprophane membranes.

Complement Activation↗

Partial inhibition of protein synthesis by Pseudomonas exotoxin A deranges catecholamine sensitivity of cultured rat heart myocytes.

To elucidate cellular mechanisms of myocardial depression in Pseudomonas sepsis the effects of sublethal concentrations of P. aeruginosa exotoxin A--a main virulence factor--were studied in cultured neonatal rat cardiomyocytes. It is known that this toxin exerts its pathogenic effect by inhibition of protein synthesis via ADP-ribosylation and thereby inactivation of elongation factor 2 (EF-2). Within 48 72 h, half maximal inhibition of protein synthesis occurs at 4-10 ng/ml. The toxin prevents the beta-adrenoceptor(AR)-mediated myosin heavy chain isozyme shift (V3/V1), while the T3-induced myosin shift is not suppressed. While beta 1-AR-downregulation by excess of norepinephrine (NE) is not affected, protein synthesis-dependent receptor upregulation in the recover period after removal of NE is completely suppressed by P. aeruginosa exotoxin A. Thus, a non-lethal, partial inhibition of global cellular protein synthesis by P. aeruginosa exotoxin A: (1) completely prevents beta 1-AR-mediated myosin isozyme shift and beta-AR upregulation: (2) sustains the cardiomyocytes in a catecholamine-refractory contractile state in the recovery period after catecholamine desensitization: (3) suggests cellular mechanisms by which P. aeruginosa exotoxin A might impair heart function in Pseudomonas sepsis: and (4) may help reveal the possible influence of endogenous inhibitors of EF-2.

ADP Ribose Transferases↗

Tumor necrosis factor alpha (TNF alpha) is cardiodepressant in pathophysiologically relevant concentrations without inducing inducible nitric oxide-(NO)-synthase (iNOS) or triggering serious cytotoxicity.

Cardiac hypertrophy and heart failure are frequently accompanied by elevated plasma levels of tumor necrosis factor alpha (TNF alpha), the pathogenetic relevance of this finding being a matter of debate. In human acute septic cardiomyopathy, on the other hand, the negative inotropic impact of TNF alpha on the heart is well documented and frequently ascribed to the induction of inducible nitric oxide (NO) synthase (iNOS) and an enhanced production of NO in the heart. Yet the present study presents evidence that in cardiomyocytes TNF alpha in non-toxic concentrations specifically depresses contractile performance independent of NO. In spontaneously beating neonatal rat cardiomyocytes, TNF alpha in a low, pathophysiologically relevant concentration (10 U/ml, 1-3 days) does not alter basal pulsation amplitude, but blocks alpha- and beta-adrenoceptor-stimulated increase in contractility and beating irregularity and impairs the impact of high extracellular calcium on contractile performance. However, this low TNF alpha-concentration does not suffice to induce iNOS - documented by reverse transcriptase polymerase chain reaction - or enhance nitrite concentrations in the cell culture supernatants as a measure of cellular NO production, neither in the presence nor absence of dexamethasone (0.1 micro M). Only in high concentration - the specific proinflammatory action being documented by an enhanced release of interleukin-6 from cardiomyocytes - TNF alpha (1000 U/mol; 6, 24 h) weakly induces the mRNA for iNOS, with a consecutive moderate rise in cellular nitrite production. TNF alpha-incubation (10-1000 U/ml) does not alter the morphological appearance of the cells displayed by phase contrast microscopy or evoke gross cytotoxicity.

Animals↗

TNF-alpha and IL-1 alpha inhibit both pyruvate dehydrogenase activity and mitochondrial function in cardiomyocytes: evidence for primary impairment of mitochondrial function.

Cytokines such as tumor necrosis factor alpha (TNF alpha) and Interleukin-1alpha (IL1alpha) are known to influence energy metabolism and mitochondrial function in tumor and vascular smooth muscle cells. The aim of the present study was to investigate whether in cardiomyocytes mitochondrial function and PDH activity may also be impaired by TNF alpha and IL1alpha. Pyruvate dehydrogenase (PDH) activity and mitochondrial oxygen consumption of cultured cardiomyocytes were determined after subchronic exposure (24 h) to TNF alpha (1, 10, 100, 1000 I.U./ml) and IL1alpha (0.1, 1, 10, 100 I.U./ml). TNF alpha- and IL1alpha- exposure of the cardiomyocytes resulted in a concentration dependent decrease of PDH activity up to 38%. In parallel, selective oxygen consumption of the respiratory chain complexes I (NADH:ubiquinone oxidoreductase) and II (succinate:ubiquinone oxidoreductase) decreased by up to 45%. Addition of the PDH activator dichloracetate (0.01 M) resulted in complete restoration of PDH activity but not of mitochondrial function. The results suggest a primary inhibition of the mitochondrial respiratory chain by TNF alpha and IL1alpha and a subsequent down regulation of PDH activity.

Animals↗

Comparison of early IgM-enriched immunoglobulin vs polyvalent IgG administration in score-identified postcardiac surgical patients at high risk for sepsis.

STUDY OBJECTIVE: To address the relevance of the IgM component in polyvalent immunoglobulins in sepsis treatment by comparison of the clinical course under polyvalent IgG vs IgGMA therapy in postcardiac surgical patients at high risk for sepsis and to reassess the prognostic validity of sequential changes in acute physiology and chronic health evaluation (APACHE II) scores during treatment. DESIGN: Prospective, randomized clinical trial. SETTING: Cardiac surgical ICU in a university hospital. PATIENTS: Among 870 consecutive patients after elective open-heart surgery, 29 (3.3%) met the previously validated high-risk criterion (APACHE II score > or = 24 on the first postoperative day) with a mean APACHE II score-predicted mortality risk of 63%. INTERVENTIONS: In addition to standard therapy, 27 of these patients were randomized to receive commercially available IV IgG (Polyglobin N, n = 14, total dosage: 18 mL/kg) or IgGMA (Pentaglobin, n = 13, total dosage: 15 mL/kg). MEASUREMENTS AND RESULTS: The two groups were comparable in baseline disease severity and concurrent therapy. The extent of score-quantified improvement in disease severity during treatment was similar in both groups (mean fall in APACHE II scores within 4 days; IgG, -6.9; IgGMA, -5.2), as were score-defined improvement rates (rate of patients with score decrease > or = 7 within 4 days: IgG, 57%; IgGMA, 54%) and in-hospital mortality (IgG, 29%; IgGMA, 31%) (all p = NS). There was a strong association between the decrease over time in APACHE II scores during therapy and prognosis (mortality rates in patients with vs without score-assessed improvement: 0% vs 67%, p = 0.0002). CONCLUSIONS: IgG and IgGMA were associated with a comparable improvement in disease severity in score-identified postcardiac surgical patients at high risk for sepsis. Given the design as an efficacy rather than an equivalence study, this hypothesis derived from our results needs independent validation in larger trials. Sequential APACHE II score changes were reconfirmed as a prognostically valid quantitative measure of disease progress during sepsis therapy.

APACHE↗

[The heart in infection and MODS (multiple organ dysfunction syndrome)].

Dysfunctioning of the heart forms part of the multiple organ dysfunction syndrome (MODS) in sepsis and SIRS. This acute septic cardiomyopathy is often underestimated in degree and relevance, although yet in fact 10% of all sepsis fatalities are due to intractable heart failure. This potentially reversible cardiomyopathy is characterized by a considerable pump failure, is not primarily ischemic, coronary blood flow being normal or even enhanced; left and right ventricle are enlarged as a consequence of an increased ventricular compliance. Damage of the heart can further be aggravated in case of an additional right ventricular impairment due to pulmonary hypertension in ARDS. SIRS-cardiomyopathy in non-infectious MODS has common traits with acute septic cardiomyopathy. The pathogenesis of heart disease in sepsis and SIRS is multifactorial, the endotoxin/TNF-alpha/NO/cGMP-cascade representing a main negative inotropic axis. Therapy of acute septic cardiomyopathy and SIRS-cardiomyopathy at present still is mainly symptomatic (volume substitution, inotropic/vasoactive agents), causal therapeutic principles are, however, put to test in the context of a comprehensive concept of causal sepsis treatment.

Cardiomyopathies↗

Subchronic exposure of cardiomyocytes to low concentrations of tumor necrosis factor alpha attenuates the positive inotropic response not only to catecholamines but also to cardiac glycosides and high calcium concentrations.

The main purpose of this study was to determine the subchronic effects of low concentrations of tumor necrosis factor alpha (TNF alpha) on the inotropic response and on the cellular level of high energy phosphates of cardiomyocytes. Therefore, the inotropic response of cultured neonatal rat heart cells to 10(-5) M isoproterenol-, 10(-6) M ouabain-, 10(-5) M forskolin- and 2,4 mM calcium-perfusion was studied 24 h after exposure to TNF alpha (0.01/0.1/1/10/100 U/ml). In parallel experiments high energy phosphates (CP, ATP, ADP, AMP) were determined by high performance liquid chromatography. Furthermore, the reversibility of TNF alpha-induced changes was studied after washout of TNF alpha or after administration of anti-TNF alpha-antibody. Whereas control cells showed an increase of cell wall motion to 150 +/- 5% of baseline value during 10(-5) M isoproterenol-perfusion respectively 180 +/- 7% during 2,4 mM calcium-perfusion, 24 h exposure of the cells to 1 U/ml up to 100 U/ml TNF alpha resulted in an inhibition of the inotropic response. Almost complete inhibition was observed 12 h after exposure to TNF alpha and was reversible 12 h after administration of the anti-TNF alpha-antibody. If the cells were perfused with 10(-6) M ouabain or 10(-5) M forskolin, a similar inhibition of the inotropic response was observed 24 h after TNF alpha-exposure. Determination of high energy phosphates showed that 24 h TNF alpha-exposure resulted in a reversible decrease of ATP, ADP, AMP and CP by 30-40% (p < 0.05). However, a similar reduction of cellular high energy phosphate levels using a TNF alpha independent mechanism (2,5 mM 2-deoxy-D-glucose) did not inhibit the inotropic response of the cardiomyocytes. From our results we conclude that subchronic exposure to low concentrations of TNF alpha resulted in an almost complete but reversible inhibition of the response of cardiomyocytes to different inotropic agents suggesting that a common final step of the inotropic cascade might be altered by TNF alpha. Though energy metabolism of TNF alpha exposed cells was affected also, reduction of high energy phosphate levels alone did not explain the observed inhibition of the inotropic response of the cardiomyocytes.

Animals↗

Exposure to the n-3 polyunsaturated fatty acid docosahexaenoic acid impairs alpha 1-adrenoceptor-mediated contractile responses and inositol phosphate formation in rat cardiomyocytes.

The beneficial effects of n-3 polyunsaturated fatty acids of fish oil in the prevention of fatal arrhythmias in myocardial ischemia were suggested to be at least in part mediated by a modulation of dihydropyridine-sensitive L-type calcium channels. As cardiac alpha 1-adrenoceptor stimulation has been suggested to have no significant effect on L-type calcium channels, the aim of this study using cultured neonatal rat cardiomyocytes was to investigate whether chronic n-3 polyunsaturated fatty acid exposure may have an influence on alpha 1-adrenoceptor-induced positive inotropic effects and induction of arrhythmias. Pretreatment of the rat cardiomyocytes for 3 days in the presence of the n-3 polyunsaturated fish oil-derived fatty acid docosahexaenoic acid (60 mumol/l) markedly decreased alpha 1-adrenoceptor-stimulated increase in contraction velocity and induction of arrhythmias. The increase in contraction velocity of the cardiomyocytes induced by the beta-adrenoceptor agonist isoprenaline was also markedly reduced by the n-3 fatty acid pretreatment. Basal contractile amplitude and spontaneous beating frequency of the cardiomyocytes were not significantly altered by the docosahexaenoic acid exposure. The pretreatment of the rat cardiomyocytes for 3 days in the presence of docosahexaenoic acid (60 mumol/l) decreased alpha 1-adrenoceptor-stimulated formation of the calcium-mobilizing second messenger IP3 and its metabolites IP2 and IP1 by 55%. The depression of IP3 formation by docosahexaenoic acid treatment was not mediated by a decreased uptake of myo-inositol into the cardiomyocytes nor by a decreased synthesis of phosphatidylinositol bisphosphate (PIP2), the substrate of phospholipase C. The level of glycerol-3-phosphate, an important substrate of the phosphoinositide cycle, was unaltered by the docosahexaenoic acid pretreatment. Receptor binding studies revealed that the dissociation constant and maximal binding capacity of the alpha 1-adrenoceptor antagonist (3H)prazosin was unchanged by the n-3 polyunsaturated fatty acid exposure. Beta-Adrenoceptor-and forskolin-stimulated adenylyl cyclase activities were not diminished by the docosahexaenoic acid pretreatment. Chronic exposure of the cardiomyocytes to the n-6 polyunsaturated fatty acid arachidonic acid (60 mumol/l) did neither significantly alter alpha 1-adrenoceptor-induced inositol phosphate formation nor alpha 1-adrenoceptor-stimulated increase in contraction velocity. The results presented show that chronic n-3 polyunsaturated fatty acid pretreatment of rat cardiomyocytes leads to a marked impairment of alpha 1-adrenoceptor-induced positive inotropic effects and induction of arrhythmias concomitant with a n-3 fatty acid-induced decrease in IP3 formation. This derangement of the phosphoinositide pathway by chronic n-3 fatty acid exposure may, thus, contribute to the beneficial effects of fish oil-derived fatty acids in the prevention of fatal arrhythmias in myocardial ischemia.

Adenylyl Cyclases↗

Beta-adrenoceptor desensitization despite cardiac denervation in human failing transplanted myocardium.

The aim of this study, using right ventricular endomyocardial biopsies, was to determine whether adenylyl cyclase activity is decreased-despite cardiac denervation-in human failing transplanted myocardium. beta-Adrenoceptor-stimulated adenylyl cyclase activity in membranes of moderately failing transplanted hearts was significantly decreased by 49% in comparison to non-failing transplanted hearts. Receptor-independent adenylyl cyclase stimulation (forskolin + GTP, forskolin + Mn2+) and the level of inhibitory G protein alpha-subunits were not significantly different in membranes of failing vs. non-failing transplanted myocardium. The results indicate that similar to failing non-transplanted myocardium the responsiveness to beta-adrenoceptor agonists is also decreased in failing transplanted myocardium.

Adenylyl Cyclases↗

Early prediction of outcome in score-identified, postcardiac surgical patients at high risk for sepsis, using soluble tumor necrosis factor receptor-p55 concentrations.

OBJECTIVE: To investigate the prognostic value of increased serum concentrations of soluble tumor necrosis factor (TNF) receptors in patients at high risk for sepsis. DESIGN: Prospective study. SETTING: Cardiac surgical intensive care unit in a University Hospital. PATIENTS: Those 27 of 870 consecutive postcardiac surgical patients who met a previously validated high-risk criterion for imminent sepsis (Acute Physiology and Chronic Health Evaluation II [APACHE II] score of > or = 24 on the first postoperative day [day 1]). In this population, systemic inflammatory response syndrome was present in 96% of the patients and the in-hospital mortality rate was 30%. In addition, ten postcardiac surgical patients with an uncomplicated course (mortality rate 0%) were studied for comparison. INTERVENTIONS: Blood sampling for measurements of serum concentrations of TNF and soluble TNF receptors 55 kilodalton (TNF receptor-p55) and 75 kilodalton (TNF receptor-p75) on days 1, 2, 3, and 5. MEASUREMENTS AND MAIN RESULTS: Compared with the ten patients with an uncomplicated course (group A), the high-risk patients had significantly higher baseline (day 1) serum concentrations of soluble TNF receptor-p55 (9.2 vs. 4.2 ng/mL) and soluble TNF receptor-p75 (9.2 vs. 5.5 ng/mL). These high-risk patients could be further differentiated into two subgroups: one (B) with a prompt decrease in APACHE II score and a good prognosis (mortality rate 0%) and another (C) with a persisting high risk of sepsis and mortality rate (40%, p < .05). Although baseline APACHE II score was similar in both high-risk subgroups, soluble TNF receptor-p55 concentrations were significantly higher in subgroup C compared with subgroup B already at baseline (10.7 vs. 4.7 ng/mL). The receiver operating characteristic curve for subgroup classification by soluble TNF receptor-p55 was in a discriminating position with an area (0.773 +/- 0.096), confirming soluble TNF receptor-p55 as a predictor of mortality. TNF and soluble TNF receptor-p75 concentrations were less predictive at baseline. CONCLUSIONS: This study suggest that increased soluble TNF receptor-p55 concentrations in the serum of postcardiac surgical patients allow earlier prognostication of subsequent hospital course than APACHE II scores alone. This study further suggests that the combination of physiologic scores and cytokine receptor measurements could improve the predictive power of early postoperative risk stratification.

APACHE↗

Hemostatic parameters in sepsis patients treated with anti-TNF alpha-monoclonal antibodies.

Tumor necrosis factor-alpha (TNF alpha) is a central mediator in the pathogenesis of sepsis. It also interferes with the hemostatic system and exerts and a net procoagulant effect. Since TNF alpha may contribute to thrombotic complications in sepsis patients, we determined markers of thrombin activation, parameters of the fibrinolytic system (D-dimer, tissue plasminogen activator antigen (tPA) urinary type plasminogen activator antigen (uPA), plasminogen activator inhibitor antigen (PAI-1) and von Willebrand factor antigen (vWF) in 30 patients with sepsis or septic shock. All patients were treated with standard therapy, but 14 patients were treated additionally with an anti-TNF alpha monoclonal antibody (MAK 195F); 16 patients served as historical controls. No significant effect of the antibody on the parameters of the hemostatic system could be determined. Our data speak against a modulation of coagulation or the fibrinolytic system by the monoclonal anti-TNF alpha antibody MAK 195F in this cohort of sepsis patients.

Adult↗

B2 bradykinin receptors in cultured neonatal rat cardiomyocytes mediate a negative chronotropic and negative inotropic response.

Receptors for bradykinin (BK) were characterized in primary cultures of beating neonatal rat cardiomyocytes using [3H]BK was radioligand. Degradation studies demonstrated that [3H]BK was stable for at least 2 h when incubated with cardiomyocytes at 2 and 37 degrees C in the presence of bacitracin in combination with captopril or ramiprilat. Without these inhibitors, > 80% of the [3H]BK was degraded within 2 h at 37 degrees C. This indicates that angiotensin-converting enzyme (ACE) is responsible for the main BK-degrading activity in cardiomyocytes. Scatchard plots were linear and gave a Kd of 1.5 +/- 0.8 nmol/l (mean +/- SD, n = 4) and a maximum binding capacity of 55-125 fmol/mg protein. Association and dissociation studies showed that binding of [3H]BK was saturable and reversible. Binding of [3H]BK at 37 degrees C led to internalization of the ligand. Competition studies with B1 and B2 agonists and antagonists were consistent with a B2 subtype of receptor. Addition of BK to beating cardiomyocytes (> 1 nmol/l) at 37 degrees C gave a strong but transient negative chronotropic effect. This response was paralleled by changes in the pulsation amplitude, which indicated a simultaneous negative inotropic effect of BK. These results provide a basis for the hypothesis that ACE inhibition exerts its cardioprotective effect at the level of a population of cardiomyocytes by virtue of kinin receptor-mediated mechanisms.

Angiotensin-Converting Enzyme Inhibitors↗