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Biomedical subjects

R Urbaschek

Publications and source records attributed to R Urbaschek.

At least 19 recordsLinked to original sources

Pathophysiologic features of a pneumoperitoneum at laparoscopy: a swine model.

OBJECTIVE: The aim of this study was to examine local and systemic reactions of the body to a pneumoperitoneum to elucidate potential dangers and risks of laparoscopic procedures. STUDY DESIGN: Laparoscopy was performed on 25 pigs. The pigs were divided into five groups by level of intraabdominal pressure (14 and 18 mm Hg) and gas used (carbon dioxide and air). The effects of the pneumoperitoneum on cardiopulmonary condition and the peritoneal milieu were observed. These effects should be the result of various changes as the mechanical, ventilatory, cellular, hormonal, and immunologic levels. RESULTS: In this animal study marked changes in the peritoneal milieu were observed, and we demonstrated that these changes were dependent on the gas used, intraabdominal pressure, and duration of application. Locally these changes are manifest in the development of severe peritoneal acidosis, hypercapnia, and the release of various mediators. Systemic changes, in particular cardiopulmonary changes, also depend on the intraabdominal pressure and the gas used. CONCLUSION: During conventional pneumoperitoneum the peritoneum might change to a large extent so that the development of new risks are possibly encouraged. A reduction in intraabdominal pressure with the use of carbon dioxide as the insufflation gas should result in normal acid-base balance.

Abdomen

Effect of immunoglobulin G on the hepatic microvascular inflammatory response during sepsis.

The effects of intravenous immunoglobulin G (ivIG) on the hepatic microvascular inflammatory response to sepsis were studied in rats by in vivo microscopy. High doses of ivIG (300 mg/kg bw) (Sandoglobulin or rat IgG) significantly improved the 48 h survival of septic rats from 25-66% when ivIG was given before or immediately after cecal ligation and puncture. Circulating endotoxin also was significantly reduced. Eight hours after inducing sepsis, the average number of leukocytes adhering to the sinusoidal endothelium increased 15-fold and the average decrease in the number of perfused sinusoids was 22%. IvIG administration minimized these responses. In both septic and nonseptic animals, ivIG also reduced the phagocytic activity of Kupffer cells. The results suggest that high doses of ivIG not only reduce lethality but also limit hepatic microcirculatory dysfunction during sepsis by minimizing leukocyte-endothelial interactions that may be a result of reducing circulating endotoxin and modifying Kupffer cell function.

Animals

Potential transfer of endotoxin across high-flux polysulfone membranes.

It has been postulated that synthetic membranes, such as polysulfone membranes, are rather impermeable for endotoxin or endotoxin fragments and can be used for sterile filtration of dialysate. It has never been investigated, however, whether endotoxin permeability may be different in commercially available polysulfone membranes. In vitro, we found a significantly different permeability for endotoxin in two standard dialyzers and one test dialyzer with high-flux polysulfone membranes. In contrast to the F-60 dialyzer with a very low permeability for endotoxin, a stepwise increasing load of endotoxin concentration in the dialysate compartment of the PN 1913 test dialyzer and Primus 1350 polysulfone dialyzer was followed by a stepwise increase of endotoxin in the blood compartment. A significant transfer across the membranes was found when the endotoxin concentration in the dialysate compartment was > 10 ng/mL in the PN 1913 and > 0.5 ng/mL in the Primus 1350. In the latter, about 0.5% of the endotoxin concentration of the dialysate compartment was found in the blood compartment. The data suggest that manufacturers have to evaluate the performance and other properties of their synthetic membranes in detail.

Biocompatible Materials

The microcirculation during endotoxemia.

The initial responses to endotoxemia are detectable in the microcirculation as a microvascular inflammatory response characterized by activation of the endothelium stimulating these cells from their normal anticoagulant state to a procoagulant state with increased adhesiveness for leukocytes and platelets. Concomitantly, arteriolar tone is lost and reactivity to a variety of agonists is modified. Tissue damage subsequently results not only from reduced perfusion of the exchange vessels, but also from injurious substances released from activated, sequestered leukocytes as well as activated endothelial cells, macrophages, and platelets. This is the result of endotoxins inducing activation and interaction of a number of effector cells, cascades, and acute-phase responses, such as the complement, coagulation, bradykinin/kinin, and hematopoietic systems accompanied by the release of a myriad of mediators. These include eicosanoids, cytokines, chemokines, adhesion molecules, reactive free radicals, platelet-activating factor, and nitric oxide. This paper briefly reviews the microvascular responses to endotoxemia and discusses some of the mechanisms involved.

Animals

[Endotoxinemia and multiple organ failure after polytrauma].

Despite successful management of early complications in polytraumatized patients and obvious reduction of early death, lethality in the late course of the disease--frequently as a result of multiple organ failure (MOF)--remains generally unaffected. Concerning the pathogenesis of sepsis and MOF, there is some evidence that a central role is played by endotoxin. A series of 32 patients with severe polytraumatic injury (Hannover Polytrauma Score > 20 points) comprised the study group. Endotoxin was measured hourly over the first 24 hours. The first measuring point was four hours after injury at the latest. Endotoxin levels were determined by a quantitative turbidimetric limulus assay. The Goris MOF score reached between the 8th and 10th day after injury was used for evaluation of the severity of MOF. Thirty of the 32 patients showed episodes of endotoxemia during the measuring period. There was a strong correlation between observed endotoxin peak concentrations, on the one hand, and outcome as well as positive predictive value (PPV) concerning development of MOF, on the other hand. If the peak concentration was greater than 10 pg/ml, the PPV reached 100%. No patient survived a peak concentration greater than 12 pg/ml. Endotoxemia during the early phase after polytraumatic injury is a frequent phenomenon. It appears to be possible that measurement of endotoxin peak concentration during the early phase gives some indication of the development of MOF and the outcome of these patients.

APACHE

Ethanol exacerbates hepatic microvascular dysfunction, endotoxemia, and lethality in septic mice.

The effect of acute ethanol administration on the hepatic microvascular responses to sepsis was studied. Polymicrobial sepsis was induced 30 min after mice had received ethanol (1 g/kg b.w.) or isocaloric maltose-dextrin by gastric gavage. Lethality within 24 h was 91.7% in the ethanol-treated animals and 40.0% in septic controls. Endotoxin levels in ethanol treated animals were 107 pg/ml at 6 hr and 1205 pg/ml at 12 h, compared with 32 pg/ml and 104 pg/ml, respectively in the controls. In vivo microscopy revealed that at 3 h in the ethanol treated septic animals, Kupffer cell phagocytic activity was increased by 41%, whereas the number of sinusoids containing blood flow were reduced by 34% concomitant with a 144% increase in the adherence of leukocytes to the sinusoidal walls when compared with the septic controls. By 6 h, however, Kupffer cell phagocytic activity was reduced by 48% in the ethanol treated animals; this was accompanied by a further deterioration in sinusoidal blood flow. Thus, a small, acute dose of ethanol causes significant impairment of the hepatic microcirculation followed by suppression of Kupffer cell activity. This results in exacerbation of endotoxemia and lethality during polymicrobial sepsis.

Animals

[Detection of endotoxin in plasma: specificity and value for development and prognosis of infection].

A number of problems may be involved in the detection of endotoxin in plasma of patients using LAL (Limulus amebocyte lysate). When collecting blood or processing samples, contamination with endotoxin or its adsorption to material must be avoided. In our laboratory a kinetic LAL microtiter assay was developed that takes into account plasma-related interferences with the LAL endotoxin reaction by performing an internal standardization in each sample. Negative results do not absolutely exclude the involvement of endotoxins in the underlying disease. High levels of endotoxins do not necessarily reflect the severeness of the clinical status of the patient. Due to nonendotoxin-specific reactions with some complete lysates, false-positive levels may result, e.g., following immunoglobulin therapy. In spite of these limitations, the LAL test remains a valuable tool in the evaluation of gram-negative infections.

Endotoxins

Isoniazid protects mice against endotoxin lethality without influencing tumor necrosis factor synthesis and release.

Treatment of NMRI mice with isoniazid (INH; 25 mg/kg) intraperitoneally induced significant protection when it was injected before or after a lethal intravenous challenge with endotoxin. The INH preparation used was not contaminated with endotoxin. Tumor necrosis factor (TNF) was not elevated in sera from NMRI mice 2 h after the injection of INH. INH did not influence TNF synthesis or release determined in human monocytes in vitro. Therefore, it is concluded that the protective effect of INH against lethal endotoxin is not due to a suppressive effect of INH on TNF production.

Animals

[Endotoxin contents of phytopharmaceuticals: correlation with clinically observed side effects].

Four phytopharmaceutics (Carnivora, Pascotox forte-Injectopas, Esberitox N, Iascador M), which sometimes cause side effects after parenteral administration (fever, rigor, nausea), were examined for their endotoxin content by the kinetic turbidometric Limulus-amebocyte-lysate (LAL) microtitre test. Contaminations of over 10(5) EU/ml (endotoxin units; 1 EU = 0.1 ng of the FDA standard EC-5) were found in correlation with the clinical picture. In one preparation (Carnivora) very high endotoxin levels were always found; contaminations were only occasionally found in the others. These endotoxin measurements are supported by tests of endotoxin-dependent parameters in in-vivo experiments (reduction in leukocytes, acute death in hyperreactive mice). These findings underline the urgent need for a widening of the regulations on testing for pyrogens to include those parenteral preparations which now do not have to be tested because of their small volume (less than 15 ml).

Animals

Tumor necrosis factor induced stimulation of granulopoiesis and radioprotection.

Human recombinant tumor necrosis factor, TNF, was used to assess its ability to stimulate granulopoiesis and to protect mice against lethal irradiation, effects known to be inducable with TNF-rich postendotoxin serum from BCG infected mice (BCG/ET serum). Although the endotoxin contamination of this TNF preparation is extremely low its effects were compared in endotoxin low responder C3H/HeJ mice and susceptible NMRI mice. TNF is a potent inducer of serum colony stimulating activity, CSA, in both mouse strains. In peripheral blood a marked granulocytosis with a concomitant decrease in lymphocytes and monocytopenia occurs at 2 hours after injection of TNF. Moreover, TNF induces an increase in the number of splenic myelopoietic committed stem cells (GM-CFC, granulocyte-macrophage colony forming cells) determined five days after injection. The lethality rate, registered over 30 days after exposure to 660 cGy whole body X-irradiation is reduced to 40% in C3H/HeJ mice as compared to 75% in control animals. The reduction in lethality is observed both, when TNF was injected 24 hours before or after irradiation. In vitro, TNF significantly increases the number of colonies in the presence of CSA in bone marrow cultures. TNF per se does not effect colony growth. The studies reported here demonstrate that TNF is a myelopoiesis stimulating factor in mice which may be related to the reduction in lethality following whole body irradiation.

Animals

No evidence for endotoxin transfer across high flux polysulfone membranes.

Recently, there has been some concern that high-flux membranes may expose dialysis patients to the risk of endotoxin transfer secondary to backfiltration within the dialyzer. To evaluate the safety of high-flux polysulfone dialyzers, we examined in an in vitro recirculation system whether lipopolysaccharides (LPS) and lipid A respectively penetrate from the dialysate to the blood compartment and vice versa using a F-60 hemofilter (Fresenius AG). For the detection of endotoxin, a sensitive, kinetic limulus amebocyte lysate (LAL) microtiter test was used. It can be concluded that LPS and lipid A do not pass from either side through the filter system used when saline was recirculated for more than 10 h on both sides of the membrane.

Blood

Deficient Kupffer cell phagocytosis and lysosomal enzymes in the endotoxin-low-responsive C3H/HeJ mouse.

Various substances, including lysosomal enzymes, are produced by Kupffer cells and other macrophages; their release has been implicated in the toxic response to endotoxins. C3H/HeJ mice exhibit little or no response to doses of endotoxin that are lethal in syngeneic C3HeB/FeJ mice. To explore the nature of this deficient response, the Kupffer cells of these mice were studied using in vivo microscopic as well as histochemical and electron microscopical methods. In vivo, the rate of phagocytosis of single 0.8 micron latex particles was measured in individual Kupffer cells as was the number of phagocytic cells per microscopic field. Frozen sections of livers were stained for a variety of lysosomal enzymes and liver specimens also were processed for electron microscopy. In comparison to the endotoxin-sensitive C3HeB/FeJ mice, the livers of the C3H/HeJ mice contained 60% fewer Kupffer cells that phagocytosed latex. However, the rate of phagocytosis by these cells was not statistically different and ranged from 19-26 sec. The volume density of acid-phosphatase-positive Kupffer cells was 40% less in the C3H/HeJ mice. Similar differences were observed with other lysosomal enzymes including cathepsins B and H and dipeptidyl peptidases I and II. However, light and electron microscopy revealed a relatively normal number of Kupffer cells in livers stained for peroxidase, a nonlysosomal enzyme. The results suggest that the insensitivity of C3H/HeJ mice to endotoxin may be related in part to a lysosomal enzyme deficiency and a paucity of phagocytic Kupffer cells in these animals.

Animals

Species differences in Kupffer cells and endotoxin sensitivity.

The relative species sensitivity to Escherichia coli O111:B4 endotoxin was found to be guinea pig greater than hamster greater than mouse greater than rat. The 50% lethal dose of this endotoxin correlated with both the rate at which single latex particles were phagocytosed by individual Kupffer cells and the number of Kupffer cells in hepatic lobules that phagocytosed latex. The results suggests that the intrahepatic density and the level of activation of Kupffer cells participate in determining endotoxin sensitivity.

Animals

Protective effects and role of endotoxin in experimental septicemia.

An experimental model was used in mice in which septicemia develops following invasion of the animals' own intestinal flora after cecal ligation and puncture. Pretreatment with 1 microgram of endotoxin administered 24 hours before surgery significantly reduced the rate of lethality. Bacteria were counted and differentiated in cardiac blood at various times throughout a 48-hour period after induction of septicemia in mice, with and without pretreatment. Endotoxin levels and plasma-related interference of the Limulus-amebocyte-lysate (LAL)-endotoxin reaction also were determined as were hematologic and metabolic parameters. A shift from mixed gram-positive and gram-negative to predominantly gram-negative bacteria occurred in both groups. In pretreated mice, a reduction in aerobic bacterial counts and reduced hyperglycemia were seen in the initial phase; and a decrease in anaerobic and aerobic bacteria and in endotoxin levels were observed at the end of the experiment. This appears to be related to endotoxin-induced increased resistance against the consequences of intraabdominal sepsis. These studies also indicate that the measured amount of circulating endotoxin does not necessarily correlate to the severeness of infection. Individual differences in plasma-related interference with the LAL-endotoxin reaction also emphasize the requirement for sample-internal standardization in order to reliably quantify endotoxin in plasma.

Animals