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Plasma endotoxin and cytokine concentrations in patients with hemorrhagic shock.

OBJECTIVES: The roles of cytokines and endotoxin in hemorrhagic shock, particularly the translocation of endotoxin and bacteria during hemorrhagic shock, were investigated. DESIGN: Prospective study. SETTING: Critical care and emergency center of a university hospital. PATIENTS: Twenty-nine patients with hemorrhagic shock and 20 healthy controls. INTERVENTIONS: Serial blood samples were collected from both study and control patients. Standard resuscitation techniques were used. MEASUREMENTS AND MAIN RESULTS: Plasma levels of endotoxin and various cytokines were determined repeatedly during hemorrhagic shock. Endotoxin was measured using an endotoxin-specific assay in addition to a new perchloric acid method for pretreatment of plasma. Cytokines were measured by commercial enzyme-linked immunosorbent assays. Plasma endotoxin concentrations remained within the normal range for 7 days after admission. Although levels of tumor necrosis factor-alpha and several interleukins increased slightly in some patients, these cytokines did not reach the levels seen in septic shock. CONCLUSIONS: Translocation of bacteria or endotoxin from the gastrointestinal tract into the bloodstream has been noted in animal experiments; however, translocation was not detected in our patients with hemorrhagic shock.

Adolescent↗

Combined antithrombin III and C1-esterase inhibitor treatment decreases intravascular fibrin deposition and attenuates cardiorespiratory impairment in rabbits exposed to Escherichia coli endotoxin.

OBJECTIVE: To assess the effect of a combined antithrombin III and C1-esterase inhibitor treatment on intravascular organ fibrin deposition and cardiorespiratory changes following intravenous Escherichia coli endotoxin (lipopolysaccharide [LPS] 80 microg/kg i.v.) exposure. DESIGN: Prospective, randomized trial. SETTING: Research laboratory of a university medical center. SUBJECTS: Anesthetized, instrumented and mechanically ventilated rabbits ([Chbb:CH); n = 40). INTERVENTIONS: Endotoxin was given to 30 animals. Ten animals received no inhibitor (endotoxin control group). The other animals were either treated by high-dose (300 units/kg; n = 10) or low-dose (100 units/kg; n = 10) combined antithrombin III and C1-esterase inhibitor administration. Ten rabbits (time control group) were given placebo (sodium chloride 0.9%). Cardiorespiratory variables were assessed at baseline, 120 mins, and 240 mins after endotoxin or placebo administration. Four hours after endotoxin injection, liver, lung, and kidney tissue samples were examined for intravascular fibrin deposition by light microscopy. MEASUREMENTS AND MAIN RESULTS: Inhibitor treatment significantly decreased clot formation in lungs and livers without, however, demonstrating a clear dose-dependent effect. Combined antithrombin III/C1-esterase treatment attenuated the decrease of mean arterial pressure and cardiac output observed following endotoxin injection. Blood pressure improvement was significantly dependent on dosage administered. CONCLUSION: Combination of antithrombin III and C1-esterase inhibitor treatment during early endotoxin shock decreased organ fibrin deposition and improved cardiovascular stability.

Animals↗

Correlation between endotoxin level and bacterial count in bronchoalveolar lavage fluid of ventilated patients.

OBJECTIVE: To assess the predictive value of the endotoxin level in the bronchoalveolar lavage (BAL) and to propose to the clinician a guide in the diagnosis of gram-negative bacterial (GNB) pneumonia. DESIGN: Retrospective and prospective studies to investigate the relation between endotoxin level and quantitative bacterial culture of BAL and to test the predictive value of a defined threshold. SETTING: University hospital general intensive care unit. PATIENTS: In the first part of the study, 77 consecutive ventilated patients with clinical suspicion of nosocomial pneumonia between January 1995 and January 1996. In the second part of the study, 93 consecutive ventilated patients studied prospectively between February 1996 and April 1997. MEASUREMENTS AND MAIN RESULTS: Quantitative cultures for aerobic bacteria were performed directly from the fluid. Bacterial species were determined with standard techniques. The detection of endotoxin in BAL was made using a quantitative chromogenic Limulus assay. In the retrospective analysis, a significant correlation between quantitative GNB cultures and BAL endotoxin levels was observed (r2 = 0.60, p < .0001). An endotoxin level > or = 4 endotoxin units/mL (EU/mL) distinguishes patients with a significant GNB count from colonized patients with a sensitivity of 92.6%, a specificity of 81.4% and a correct classification rate of 84.9%. In the prospective analysis, the 4 EU/mL threshold permits identification of infected patients with a sensitivity of 82.2%, a specificity of 95.6%, and a correct classification rate of 90.3%. The receiver operating characteristic curve analysis showed that the Limulus assay still had a good discrimination power in the prediction of significant bacterial count in BAL fluid. CONCLUSIONS: Endotoxin detection immediately after bronchoscopy is a distinct advantage to the clinician because antimicrobial gram-negative therapy may be immediately justified according to the results.

Adolescent↗

Cardiovascular effects of central choline during endotoxin shock in the rat.

The cardiovascular effects of intracerebroventricular (i.c.v.) administration of choline were studied in endotoxin-treated rats. Intravenous (i.v.) endotoxin (20 mg/kg) caused a moderate hypotension and tachycardia within 10 min of treatment. Choline (50, 100, and 150 microg; i.c.v.) increased blood pressure and decreased heart rate in this condition in a dose-dependent manner. Mecamylamine (50 microg; i.c.v.) pretreatment prevented the pressor and bradycardic responses to choline, whereas atropine (10 microg; i.c.v.) failed to alter both responses. Atropine pretreatment, alone, inhibited endotoxin-induced hypotension. The pressor responses to choline in endotoxin-treated rats were attenuated by pretreatment with hemicholinium-3 (20 microg; i.c.v.), a high-affinity neuronal choline-uptake inhibitor. Plasma vasopressin levels of endotoxin-treated rats were severalfold higher than those of control animals, and choline (50-150 microg; i.c.v.) produced further increases in plasma vasopressin in this condition. Mecamylamine abolished vasopressin response to endotoxin as well as to choline. The vasopressin receptor antagonist, (beta-mercapto-beta,beta-cyclopentamethylene-propionyl(1)-O-Me-Tyr2,Arg8 )-vasopressin (10 microg/kg; i.v.) administered 5 min after choline decreased blood pressure from the increased level to the precholine levels but did not alter bradycardia. These results indicate that, in rats treated with endotoxin, choline increases blood pressure and decreases heart rate by a presynaptic mechanism leading to the activation of central nicotinic cholinergic pathways. An increase in plasma vasopressin levels seems to be involved in the pressor, but not in the bradycardic response, to choline.

Animals↗

Endotoxin induces bacterial translocation and increases xanthine oxidase activity.

Previously, we documented that endotoxin induces bacterial translocation from the gut and that inhibition or inactivation of xanthine oxidase activity reduces endotoxin-induced bacterial translocation. Consequently, experiments were performed to correlate endotoxin-induced bacterial translocation with changes in intestinal mucosal structure and xanthine dehydrogenase and oxidase activity. Segments of the jejunum, ileum, cecum, proximal colon, distal colon, and liver were harvested from ICR mice 24 hr after IP administration of E. coli 0111:B4 endotoxin (0.1 mg). Xanthine dehydrogenase and oxidase activities were measured in these samples and correlated with intestinal morphology. Bacteria translocated from the intestines to extraintestinal organs in 70% of the mice receiving endotoxin, while the organs of control mice were sterile (p less than 0.01). Endotoxin injured primarily the ileal and cecal mucosa and increased ileal and hepatic xanthine dehydrogenase and cecal oxidase activities (p less than 0.05). These results suggest that xanthine oxidase-induced mucosal damage plays a role in endotoxin-induced bacterial translocation.

Animals↗

Endotoxin and tumor necrosis factor-alpha in middle ear effusions in relation to upper airway infection.

OBJECTIVES/HYPOTHESIS: This study was performed to elucidate the role of endotoxin and tumor necrosis factor-alpha (TNF-alpha) in the middle ear effusions (MEEs) of children with otitis media with effusion (OME) in relation to the chronicity of the disease and the presence of upper respiratory tract infection (URTI). STUDY DESIGN: In a retrospective study 140 MEEs were collected from 101 children between 2 and 12 years of age, and evaluated for the cytokine TNF-alpha and the lipopolysaccharide endotoxin. The amounts were quantified and correlated with the type of MEE, OME duration, and the presence of URTI. METHODS: Endotoxin levels were measured using a limulus amebocyte lysate assay and TNF-alpha levels were measured with an enzyme-linked immunosorbent assay (ELISA). Means of the different variables were compared using the one-way ANOVA least significance difference test with P<.05. RESULTS: In MEEs classified as mucopurulent (22.8%) both endotoxin and TNF-alpha levels (11.9+/-3 ng/mg total protein and 61.1+/-21 pg/mg total protein, respectively) were significantly higher compared with serous- (23.6%) or mucoid- (53.6%) type effusions. Fifty-five percent of the children who were classified as having chronic OME also had significantly higher amounts of endotoxin and TNF-alpha. The majority of the children (61%) had no URTI, although children with URTI (36%) did also have significantly higher levels of endotoxin and TNF-alpha in their middle ears. CONCLUSIONS: These results indicate that there is a strong correlation between the endotoxin and the TNF-alpha concentration in the middle ear and the type of MEE, the presence of URTI, and the chronicity of the disease.

Child↗

Endotoxin enhances norepinephrine release in the rat by peripheral mechanisms.

The study was designed to investigate the effects of endotoxin administration on norepinephrine release in vivo in the rat. The norepinephrine release rate was calculated from the steady-state concentration of endogenous norepinephrine and [3H]norepinephrine in the central venous pool after infusion of [3H]norepinephrine intra-arterially. This method corrects for both metabolism and disposition as the infused tracer closely follows the normal pathway of neuronally released norepinephrine. Measurements were made in anesthetized intact rats as well as in pithed rats with electrically stimulated sympathetic outflow (3 Hz). Comparisons were made before and for 60 min following administration of bacterial endotoxin (10 mg/kg intravenously) or an equal volume of saline (vehicle). Plasma levels of norepinephrine and epinephrine increased significantly in both anesthetized and pithed preparations after endotoxin, whereas plasma norepinephrine clearance decreased only in anesthetized rats. Norepinephrine release rates were significantly increased in anesthetized as well as in pithed rat preparations after endotoxin. Plasma epinephrine was elevated more in pithed than anesthetized rats. The blood pressure fall was more rapid in pithed compared to anesthetized rats following endotoxin, which probably indicates that the central nervous system is able to compensate to some extent for the blood pressure fall in the anesthetized rat. Heart rate was unchanged in both preparations following endotoxin. Significant increases in norepinephrine release rates induced by bacterial endotoxin in pithed rats with constant frequency sympathetic nerve stimulation suggests that some factor in endotoxicosis enhances the release of norepinephrine by an action at peripheral nerve terminals.

Analysis of Variance↗

Partial hepatectomy reduces the endotoxin-induced peak circulating level of tumor necrosis factor in rats.

The pro-inflammatory cytokine tumor necrosis factor (TNF) is dramatically and transiently elevated in the circulation during endotoxic and septic shock and is a primary mediator in the pathogenesis of the sepsis syndrome. TNF peaks in the circulation 90 min after endotoxin administration with little variation, even among species. The specific cells, tissues, or organs that produce the high circulating level of TNF in septic shock remain unknown. The most likely sources are macrophage-laden tissues such as the liver and the spleen and circulating blood leukocytes. This study evaluated whether the liver is an important source producing the TNF spike 90 min after endotoxin. To test this hypothesis, we measured the peak circulating level of TNF following an endotoxin injection in rats subjected to a two-thirds hepatectomy versus sham-operated controls. Hepatechectomized rats produced 64% less TNF after endotoxin than controls (857 + or - 143 pg/mL plasma vs. 2410 + or - 491, respectively; p < .01). In contrast, splenectomy did not significantly after peak TNF levels versus sham-operated controls following an endotoxin injection (1380 + or - 148 pg/mL plasma vs. 1710 + or - 291). Furthermore, incubation of rat blood with endotoxin for 90 min did not significantly increase TNF above controls. These experiments demonstrate an important role for the liver in producing the high circulating levels of TNF after an endotoxin injection and suggest that hepatic-specific cytokine modulation deserves study for a therapeutic benefit in septic shock.

Animals↗

Effects of phentolamine or yohimbine on naloxone's actions during endotoxin shock in rats.

Endogenous opioids are known to mediate some of the cardiovascular sequelae of sepsis. Inhibition of adrenergic action has been implicated as a physiological path by which endogenous opioids cause deleterious changes in cardiovascular function during endotoxin shock, but where and to what extent this accounts for changes in regional vascular resistance remains unclear. In this study, we addressed this question by examining the role of alpha-adrenergic actions in cardiovascular performance and the regional perfusion changes caused by naloxone during endotoxin shock. Rats had catheters inserted into the tail artery, left cardiac ventricle, and jugular vein. Twenty-four hours later, rats received saline or endotoxin (2 mg/kg) challenge intravenously over 30 min, followed at 40 min by intravenous naloxone (or saline) treatment (4 mg/kg + 2 mg/kg x h) in the presence or absence of phentolamine (100 micrograms/kg + 600 micrograms/kg x h) or yohimbine (40 micrograms/kg + 4 micrograms/kg x h). Radiolabeled microspheres were used to determine cardiac outputs and blood flows at 0, 30, 60, and 120 min after beginning endotoxin infusion. Naloxone attenuated the endotoxin-induced decline in mean arterial pressure (MAP) and cardiac output (CO), but had no effect on increased systemic vascular resistance (SVR). Phentolamine blocked naloxone's ability to increase MAP and CO, but permitted an increase in SVR by naloxone. In the presence of yohimbine, naloxone still increased MAP, but not CO nor SVR. Regional vascular responses varied, with naloxone demonstrating a vasoconstrictive effect despite alpha-adrenergic receptor blockade in some beds, and no effect in others. The response of individual organs in the hepatosplanchnic circulation was heterogenous as well. These data suggest that some effects of endogenous opioids during endotoxin shock are mediated via inhibition of alpha-adrenergic effects, but that some cardiovascular effects of endogenous opioids are independent of adrenergic control during endotoxin shock.

Adrenergic alpha-Antagonists↗

Effect of cortisol-synthesis inhibition on endotoxin-induced porcine acute lung injury, shock, and nitric oxide production.

In the process of developing a model of Escherichia coli endotoxin-induced acute lung injury and shock in specific pathogen-free pigs, the effects of pretreatment with metyrapone (a cortisol-synthesis inhibitor) were examined. Metyrapone was administered 1.5 h before start of endotoxin infusion at t = 0 h (MET-ETOX group, n = 6). At the end of the experiments (t = 4 h) a bronchoalveolar lavage (BAL) was performed. Control animals received only endotoxin (CON-ETOX group, n = 6) or metyrapone (MET-CON group, n = 4). The following results are presented as means +/- SEM. It was found that metyrapone successfully blocked endogenous cortisol synthesis (plasma cortisol levels were 41.0 +/- 5.9 nM in MET-ETOX vs. 339.0 +/- 37.7 nM in CON-ETOX at t = 4 h, P <0.01). At t = 4 h the MET-ETOX animals had substantially increased systemic hypotension compared to the CON-ETOX group (mean arterial pressure 26.7 +/- 4.3 vs. 77.7 +/- 12.2 mmHg, P <0.01), decreased dynamic lung compliance (10.9 +/- 0.7 vs. 13.7 +/- 0.6 ml/cmH2O, P <0.01), increased percentage of BAL neutrophils (28.4 +/- 6.5 vs. 6.6 +/-1.8, P <0.01), pulmonary edema (BAL total protein 0.82 +/- 0.21 vs. 0.42 +/- 0.09 mg/mL, P <0.05), elevated levels of interleukin-8 (1924 +/- 275 vs. 324 +/- 131 pg/mL, P <0.01) and acidosis (pH 7.11 +/- 0.03 vs. 7.23 +/- 0.06, P <0.05). The MET-ETOX group also showed an increased pulmonary hypertension between 2 and 3 h after start of endotoxin infusion and a trend toward significantly increased levels of plasma interleukin-8 (P = 0.052). Arterial pCO2, pO2/FiO2, plasma endothelin-1, plasma TNFalpha, and blood leukocytes were not markedly influenced by the plasma cortisol levels. Nitric oxide production did not seem to be altered by endotoxin infusion in this model, in contrast to other animal studies; this discrepancy could be thought to be due to endotoxin-dosage differences or species differences. It is concluded that if endogenous cortisol production is blocked by metyrapone, the reactions occurring as a result of the endotoxin-induced acute lung injury and shock are greatly enhanced and that therefore pretreatment with metyrapone might be an important addition to this model with specific pathogen-free pigs.

Acid-Base Imbalance↗

Pulmonary endothelial and epithelial integrity and neutrophil infiltration after endotoxin in interleukin-1 receptor knockout mice.

Previously we found the structural integrity of the aortic endothelium was maintained after the administration of endotoxin in type 1 interleukin-1 (IL-1) receptor knockout mice. In this study, we investigated further the integrity of pulmonary vascular endothelium, airway epithelial, pulmonary microvasculature, and neutrophil infiltration into the microvasculature and respiratory air spaces. Adult male C57BL/129J wild-type mice and C57BL/129J knockout mice possessing a homozygous deletion of the type 1 IL-1 receptor received the following intraperitoneal injections; 1) Escherichia coli endotoxin (ENDT) (10 mg/kg), 2) ENDT (2 mg/kg given for 4 days), or (3) saline vehicle. Wild-type and knockout control animals receiving saline vehicle showed normal endothelial and epithelial ultrastructure with intact membranes. Pulmonary endothelial cell damage was found only in wild-type mice given a single 10 mg/kg endotoxin dose. Airway epithelial damage was found only in wild-type mice given a repetitive dose of endotoxin (2 mg/kg for 4 days). Neutrophil infiltration increased only in mice given a single dose of endotoxin (10 mg/kg) with the wild-type increasing by 32% and the knockouts by 6% compared with the saline control for that group respectively. Serum IL-6 and nitric oxide (indicators of septic shock severity and lethality) significantly increased only in the mice given 10 mg/kg of endotoxin. The maintenance of pulmonary endothelial and epithelial cell integrity and the decrease of neutrophil infiltration in the IL-1 knockout mice suggest that IL-1 contributes significantly to the severity of endotoxin-induced sepsis.

Animals↗

Induction of procalcitonin and proinflammatory cytokines in an anhepatic baboon endotoxin shock model.

Our objective was to evaluate the role of the liver for procalcitonin (PCT) and cytokine induction in a baboon endotoxin shock model. Complete liver resection with portocaval anastomosis was established in a baboon prior to the induction of endotoxin shock by intravenous administration of endotoxin (100 microg/kg LPS Escherichia coli). Two baboons without surgical intervention were used as controls. Plasma concentrations of PCT, tumor necrosis factor (TNF)-alpha, interleukin (IL) 6, IL-8, endotoxin, and hemodynamic and metabolic parameters were measured pre- and postoperatively and until 6 h after endotoxin administration. PCT concentrations increased to 1.2 and 4.6 ng/mL in control animals at 6 h, but remained below 0.3 ng/mL in the anhepatic baboon. IL-6 and IL-8 increased only for few hours in controls, but remained elevated in the hepatectomized animal near their maximum (IL-6, 2-6 ng/mL) or several-fold higher (IL-8, 30-35 ng/mL), whereas TNF-alpha response was only a small fraction (0.3 ng/mL) of the controls. Endotoxin was much higher and longer persisting in the hepatectomized animal compared with controls. The near absence of PCT production in the anhepatic baboon suggests a primary role for the liver as a source of PCT production during endotoxin shock. Furthermore, the liver also seems to be an important source of TNF-alpha, but not IL-6 or IL-8.

Animals↗

P38 MAPK mediates myocardial proinflammatory cytokine production and endotoxin-induced contractile suppression.

Cardiac myocytes are capable of synthesizing tumor necrosis factor alpha (TNF-alpha), interleukin-1, and interleukin-6 (IL-1 and IL-6). p38 mitogen-activated protein kinase (MAPK) has been implicated in oxidant-stress-induced myocardial TNF-alpha production; however, the extent to which this kinase contributes to endotoxin-induced contractile dysfunction, as well as TNF-alpha, IL-1alpha, IL-1beta, and IL-6 production, in a bloodless model of endotoxin-induced myocardial dysfunction is unknown. Isolated rat hearts were perfused (Langendorff), and myocardial contractile function continuously recorded, during direct antegrade endotoxin infusion, with and without prior p38 MAPK inhibition. Ventricular p38 MAPK activation (phospho-p38 MAPK Western), cytokine mRNA (RT-PCR), and protein (ELISA) were determined. Endotoxin resulted in progressive decline in left ventricular developed pressure and coronary flow that was attenuated with prior p38 MAPK inhibition (SB 203580). p38 MAPK inhibition significantly decreased endotoxin-induced cardiac TNF-alpha, IL-1alpha, IL-1beta, and IL-6 mRNA levels. To determine the relative effect of TNF-alpha in inducing IL-1alpha, IL-1beta, and IL-6 production, TNF-alpha was sequestered during endotoxin infusion, and TNF-alpha, IL-1beta, and IL-6 protein levels were measured. Interestingly, TNF-alpha sequestration alone significantly decreased myocardial IL-1beta and IL-6 production. We conclude that p38 MAPK is involved in endotoxin-induced myocardial contractile dysfunction and myocardial TNF-alpha production; however, p38 MAPK's involvement in IL-1 and IL-6 production may be indirectly mediated by TNF-alpha.

Animals↗

Endotoxin treatment of equine infectious anaemia virus-infected horse macrophage cultures decreases production of infectious virus.

Lentiviruses replicate in cells of the immune system, and activation of immune cells has been shown to modulate virus replication. To determine the effects of macrophage activation on replication of equine infectious anaemia virus (EIAV), primary horse macrophage cultures (HMCs) were established from 20 different horses, infected with an avirulent strain of EIAV, and stimulated with 5 microg/ml of bacterial endotoxin. Supernatants collected from HMCs were assayed for the presence of tumour necrosis factor (TNF-alpha) and for production of infectious virus. Results indicated that EIAV replication in vitro varied significantly (P < or = 0.0001) from horse to horse, regardless of the treatment of HMCs. Also, EIAV replication was significantly (P < or = 0.0001) decreased in HMCs stimulated with bacterial endotoxin as compared to untreated HMCs. No significant correlation was found between virus replication and production of TNF-alpha following treatment of virus-infected cells with bacterial endotoxin. However, when HMCs were treated with endotoxin prior to virus infection, inhibition of EIAV replication was proportional to increasing levels of endotoxin. PCR and RT-PCR were used to amplify EIAV proviral DNA and mRNA sequences, respectively, at various time-points following infection. The results indicated that the early events of EIAV replication, up to and including transcription of multiple-spliced mRNAs, were not inhibited by treatment of EIAV-infected macrophages with bacterial endotoxin. This suggests that endotoxin treatment inhibits a posttranscriptional step in the virus replication cycle.

Animals↗

Effect of endotoxin on colonisation of Campylobacter jejuni in infant mice.

An infant mouse model has been used to investigate the colonisation of the intestine by Campylobacter jejuni and the effect of endotoxin (Escherichia coli O26: B6) on the initial stage of this process. Endotoxin injected 1 or 16 h before the bacterial challenge had no effect on the growth of campylobacters but endotoxin injected 4 to 10 h before the bacterial challenge caused a bacteriostatic effect on the growth of campylobacters which lasted for one day. The bacteriostatic effect was evident both in the small intestine and in the distal part of the intestine containing caecum and colon. The mechanism of the bacteriostatic effect of endotoxin could not be explained in the study, but is thought to be non-immunological because it developed so rapidly. Oral and parenteral iron administered as ammonium ferric citrate or iron dextran, respectively, were used in an attempt to reverse the bacteriostatic effect. High oral doses of iron (0.5 mg per animal) were effective but small doses (0.5 mg per animal) were ineffective. Parenteral iron administration had a delayed effect on the reversal of the bacteriostatic effect of endotoxin. Transferrin administered orally caused a clear bacteriostatic effect in both endotoxin pretreated and untreated mice. Campylobacter counts were always lower in the small intestine than in the large intestine both in control and in endotoxin pretreated mice. This indicates that the large intestine is the primary ecological niche where campylobacters colonise mice.

Animals↗

Augmenting effect of antibiotics on endotoxin activity may cause a safety problem.

Enhancing/interfering effect of antibiotics on endotoxin was evaluated using the endotoxin test and the cell line assay in 28SC cells that has a responsiveness consistent with that of human peripheral blood. When a total of 21 products of seven different kinds of antibiotics were tested, none showed any significant effect on the endotoxin test at its therapeutic dose. However, aminoglycosides showed a significant augmenting effect on IL-6 induction of endotoxin in 28SC cells. Detailed examination of the augmenting effect was made on spectinomycin in the in vitro cell line assay and also in the lethal endotoxin challenge assay in D -galactosamine-treated mice. Spectinomycin also enhanced the endotoxin lethality in D -galactosamine-treated mice. A kinetic analysis in endotoxin-sensitized 28SC cells revealed that the augmentation takes place as quickly as 10 min after spectinomycin treatment. Accordingly, a special caution concerning the augmenting effect was assumed necessary for the safety control of antibiotic products as well as for selecting antibiotics for the therapeutic use.

Animals↗

Quantitative measurement of endotoxin in rainbow trout (Salmo gairdneri) serum by the chromogenic substrate method.

The amount of endotoxin in serum collected from normal rainbow trout (Salmo gairdneri) and trout inoculated with viable Vibrio anguillarum or lipopolysaccharide (LPS) extracted from bacteria was determined by the chromogenic substrate method. The mean values of endotoxin in four different groups of normal rainbow trout sera ranged from 31.9 to 65.3 pg/ml. When fish were inoculated with viable bacteria (1 x 10(8], they became septicaemic and a large amount of endotoxin ng/ml) was detected in the sera. In fish inoculated with a smaller number of bacteria the amount of endotoxin was several times higher than that of normal fish in spite of failure of bacterial isolation. Although the endotoxin level in serum increased rapidly (greater than 100 ng/ml) after intraperitoneal inoculation with purified V. anguillarum LPS (540 micrograms), no fish died during the experiment. The high level of endotoxin in normal rainbow trout and the resistance of trout to endotoxin are in striking contrast to those of mammalian and avian species.

Animals↗

Antagonism of endotoxin-induced disruption of equine gastrointestinal motility with the platelet-activating factor antagonist WEB 2086.

The effect of pre-treatment with a selective platelet-activating factor (PAF) antagonist, WEB 2086, on the actions of low-dose endotoxin was evaluated in ponies prepared with gastrointestinal strain gauges. Endotoxin (0.1 microgram/kg i.v.) produced a marked reduction in gastric contraction amplitude and rate, and an increased frequency and reduced duration of jejunal phase III activity fronts (AFs). WEB 2086 (6.6 mg/kg) administered i.v. 10 min before the endotoxin, produced significant antagonism (P less than 0.001) of the effect of endotoxin on gastric contraction amplitude and rate. The combination of WEB 2086 and endotoxin produced gastric contractions of significantly (P less than 0.01) higher frequency than in the control studies. WEB 2086 also reduced endotoxin-induced abnormal phase III AFs in the jejunum and increases in heart rate and packed cell volume. These results provide evidence that endogenous PAF plays a role in mediating the acute effects of endotoxin on equine gastrointestinal motility.

Animals↗