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Effect of bacterial endotoxin on lipoxygenase and cyclo-oxygenase metabolites by rat neutrophils and correlation with cellular functional parameters.

The effect of Salmonella enteritidis endotoxin on in vitro rat neutrophil cyclo-oxygenase and lipoxygenase metabolism, phagocytic activity, superoxide (O2-) generation, and microbicidal activity was investigated. Incubation of polymorphonuclear leukocytes (PMN) with 5, 25, and 50 micrograms of endotoxin significantly enhanced synthesis of immunoreactive (i) leukotriene (LT)C4/D4 and thromboxane (Tx)B2 (P less than 0.001) as compared to control cells. Endotoxin 5 micrograms/ml produced optimal stimulation of the arachidonic acid metabolites. Calcium ionophore, A23187, significantly enhanced iLTC4/D4 and iTxB2 synthesis more than that elicited with endotoxin. Although phagocytic function was not significantly altered by endotoxin, intracellular killing of C. albicans demonstrated enhanced microbicidal activity at 5 micrograms/ml of endotoxin. Superoxide generation was significantly enhanced in neutrophils stimulated with phorbol myristate acetate (PMA). Endotoxin (5 micrograms/ml) further potentiated superoxide generation by these cells when stimulated by PMA. These findings demonstrate that endotoxin directly enhances neutrophil iLTC4/D4 and iTxB2 synthesis. The enhanced arachidonic acid metabolism elicited by endotoxin in these cells parallels increased microbicidal activity and superoxide generation.

Animals↗

In vivo effects of toxic and detoxified endotoxin alone or in combination with muramyl dipeptide on lymphoid and non-lymphoid cells in the spleen of Meth A sarcoma-bearing mice.

In this study we confirmed that combinations of toxic or detoxified endotoxin with muramyl dipeptide (MDP) induced much more necrosis of transplanted Meth A sarcoma in mice than toxic endotoxin alone. Detoxified endotoxin and MDP alone had little antitumor effects. We investigated whether these divergent antitumor effects could be related to histopathological changes in the white pulp of the spleen of Meth A sarcoma-bearing mice. Toxic endotoxin reduced the T:B cell compartment ratio in the splenic white pulp by increasing the size of the B-cell compartment while leaving the size of the T-cell dependent inner PALS unaffected. The number of the T-lymphocytes in this area, however, was reduced. The border of B-lymphocytes in the marginal zone was markedly narrowed and the number of marginal metallophils along the inner border of the marginal sinus was decreased. None of these changes were observed after treatment with detoxified endotoxin or MDP. Addition of MDP to either endotoxin did not change their effects. The histopathological changes in the lymphoid and non-lymphoid compartments of the splenic white pulp are apparently exclusively induced by toxic endotoxin. As the antitumor activity of both toxic and detoxified endotoxin combined with MDP are about equal and more powerful than the activity of toxic endotoxin alone, it is concluded that these antitumor effects cannot be related to changes in the white pulp of the spleen.

Acetylmuramyl-Alanyl-Isoglutamine↗

Comparative study of the endotoxemia and endotoxin tolerance on the production of Th cytokines and macrophage interleukin-6: differential regulation of indomethacin.

Endotoxin tolerance reduces the capacity of monocytes to produce proinflammatory cytokines, results in cellular immune paralysis, and down-regulates the production of helper T (Th)1 type cytokines with a shift toward a Th2 cytokine response. Prostaglandin (PG)E2 in the immune system also results in macrophage inactivation and the suppression of Th1 activation and the enhancement of Th2 activation. However, the inhibitory effects of PGE2 on the altered polarization of the Th cell and macrophage interleukin (IL)-6 production characterized in part by cellular immune paralysis in a state of endotoxin tolerance is unclear. This study was undertaken, using indomethacin, to investigate the role of endogenous PGE2 on the Th cytokines and macrophage IL-6 production in a state of endotoxin tolerance compared to those with endotoxemia mice, wherein, in this latter case, the increased production of proinflammatory cytokines and PGE2 is exhibited. Endotoxemia was induced by injection of lipopolysaccharide (LPS; 10 mg/kg in saline) ip. once in BALB/c mice, and endotoxin tolerance was induced by pretreatment with LPS (1 mg/kg in saline) injected i.p. daily for two consecutive days and then with LPS 10 mg/kg on day 4. Splenocytes or macrophages were obtained from endotoxemia and endotoxin tolerance models pretreated with indomethacin, and then cytokine production was induced by Con A-stimulated splenocytes for the Th cytokine assays and LPS-stimulated macrophages for the IL-6 assay. Our results showed that endotoxemia led to significantly reduced IL-2 and IL-4 production, to significantly increased IL-6 production, whereas interferon (IFN)-gamma production was not affected. Indomethacin in the case of endotoxemia markedly attenuated IFN-gamma and IL-6 production and didnt reverse IL-2 and IL-4 production. Endotoxin tolerance resulted in the significantly reduced production of IL-2 and IFN-gamma and the significantly increased production of IL-4 and IL-6. Indomethacin in endotoxin tolerance greatly augmented IL-2 production, significantly decreased IL-4 production, and slightly attenuated IL-6 production. These findings indicate that endogenous PGE2 may mediate the suppressed Th1 type immune response, with a shift toward a Th2 cytokine response in a state of endotoxin tolerance, whereas endotoxemia may be regulated differentially. Also, endogenous PGE2 may mediate macrophage IL-6 production in the case of endotoxemia to a greater extent than in the case of endotoxin tolerance.

Animals↗

Chronic systemic endotoxin exposure: an animal model in experimental hepatic encephalopathy.

Plasma levels of gut-derived endotoxins (lipopolysaccharides, LPS) are often elevated in cirrhotics and are thought to contribute to hepatic encephalopathy. Circulating LPS activates macrophages to produce tumor necrosis factor alpha (TNF-alpha) and other potentially cytotoxic proinflammatory mediators. A pathogenic role for endotoxins is supported by studies showing that treatment with Lacto-bacillusor antibiotics, both of which reduce LPS-producing intestinal Gram-negative bacteria, alleviates experimental liver damage. To mimic the "leaky gut" syndrome with endotoxin translocation into the circulation in cirrhotics, a new animal model was developed. Rats were chronically exposed to ethanol and for the four last weeks also infused with endotoxin into the jugular vein from subcutaneously implanted osmotic minipumps. Animals receiving endotoxin had elevated hepatic expression of both pro- and anti-inflammatory cytokines, but compared to ethanol treatment alone hepatic steatosis and inflammatory changes were only marginally increased. This demonstrates marked endotoxin tolerance, probably as a consequence of a counteracting anti-inflammatory cytokine response. The role of gut-derived endotoxin in hepatic encephalopathy has recently received considerable attention. To further delineate the role and actions of endotoxin and its extrahepatic effects, studies applying both acute challenge and chronic infusion seem warranted. The chronic endotoxin model, mimicking the "leaky gut," may best be combined with more robust ways to impair liver function, such as carbon tetrachloride treatment, bile duct ligation, or galactosamine administration.

Animals↗

Labor and infection. II. Bacterial endotoxin in amniotic fluid and its relationship to the onset of preterm labor.

We have previously reported the detection of endotoxin in the amniotic fluid of patients with gram-negative intraamniotic infection. Endotoxin or lipopolysaccharide is a potent biologic product capable of inducing prostaglandin release from several cell types and, therefore, may be involved in the onset of human parturition in the presence of intraamniotic infection. This article describes a technique for the quantification of endotoxin in amniotic fluid. The method uses a computer-assisted quantification of the turbidimetric reaction between the Limulus amebocyte lysate and endotoxin. Serial dilutions of Escherichia coli endotoxin in culture-negative amniotic fluid were prepared, and the samples were run in the assay. Amniotic fluid was found to enhance the reaction, and a dilution of 1:20 was required for this biologic fluid to behave similarly to pyrogen-free water. The sensitivity of this kinetic turbidimetric technique in the detection of endotoxin in amniotic fluid was 40 pg/ml. This method was applied to the quantification of endotoxin concentration in amniotic fluid in 26 patients with intraamniotic infection and premature rupture of membranes. Patients in active labor had higher concentrations of endotoxin (median = 47,514 pg/ml) than nonlaboring patients (median = 635 pg/ml) (p less than 0.025). Therefore, women with preterm labor had a higher median concentration of endotoxin in amniotic fluid than patients who were not in labor.

Amniotic Fluid↗

Effect of bacterial endotoxin on the transmembrane electrical potential and plasma membrane fluidity of human monocytes.

In order to gain insight into the physical interaction between bacterial endotoxins and the surface of human monocytes, we investigated the effects of Salmonella typhi endotoxin and lipid A on two functional properties of the plasma membrane of these cells: (1) the transmembrane electrical potential and (2) the fluidity of the lipid bilayer. Using the fluorescent lipophilic cationic probe 3,3'-dipropylthiodicarbocyanine (di-S-C3(5] to monitor the transmembrane electrical potential, we found that neither endotoxin nor lipid A induced depolarization of the monocyte's plasma membrane or impeded its ability to undergo depolarization in response to phorbol myristate acetate. When the resting transmembrane potential of the monocyte was analyzed by exposing di-S-C3(5)-labeled cells suspended in media containing incremental concentrations of potassium ion (K+) to valinomycin, no difference between the response of control cells and cells pretreated with endotoxin was noted. We next examined the effect of endotoxin and lipid A on the fluidity of the monocyte's plasma membrane by monitoring the intensity of the fluorescence of 1,6-diphenyl-1,3,5-hexatriene. By quantifying the intensity of parallel and perpendicular polarized light emitted by this membrane-embedded probe between 8 and 56 degrees C, measurements of molecular anisotropy were used to identify temperature-dependent phase transitions within the hydrocarbon region of the plasma membrane and to estimate the relative microviscosity of the lipid bilayer before and after exposing the cells to endotoxin or lipid A. Although the temperature at which phase transitions occurred was the same in all experimental groups of cells, preincubation of monocytes with either endotoxin or lipid A appeared to increase both the apparent microviscosity of the cell membrane and the order of the lipid bilayer as reflected by a decrease in its flow-activation energy. Our data indicate that when endotoxin molecules contact the surface of the monocyte, the lipid A moiety appears to become incorporated into the plasma membrane, increasing the microviscosity of the lipid bilayer without significantly altering its ionic permeability. We therefore conclude that the metabolic activation of monocytes by endotoxin is not coupled to, or initiated by, membrane depolarization.

Endotoxins↗

Tritiation of endotoxin.

Tritiated endotoxin was synthesized by three different methods: (1) sodium boro[3H]hydride reduction of native endotoxin; (2) sodium boro[3H]hydride reduction of endotoxin that had been oxidized previously with sodium metaperiodate; and (3) exposure of dry endotoxin to 3H2 gas. Sodium borohydride reduces aldehyde groups and sodium metaperiodate oxidizes vicinal glycol groups to aldehydes. Chromatographic analysis of the three tritiated endotoxins, using agarose, revealed that the biological activity associated with each labeled product appeared at the void volume, and in each case the biological activity coincided with a peak in radioactivity. The labeled product of the first method had a specific radioactivity of 0.18 mCi/g and a biological activity equal to that of native endotoxin. The labeled products of the second and third methods had specific activities of 2.1 mCi/g and 60.0 mCi/g, respectively, while their biological activities were one hundred-fold less than native endotoxin, as determined by the Limulus amebocyte lysate assay. These three labeled endotoxins are potentially ueled endotoxin.

Biological Assay↗

Mitogenic response of rat lung to endotoxin exposure.

Adult rats exposed to hyperoxia are protected from lung injury by treatment with bacterial endotoxin. Experiments were undertaken to determine whether endotoxin treatment produces a mitogenic effect on the lung. Endotoxin treatment caused a significant (P less than .05) loss of body weight (8%) in rats exposed to either air or greater than 95% O2 for 24 hr. Therefore, experiments were also undertaken in which both saline- and endotoxin-treated rats were starved for the duration of the experiments to make equal any nutritional imbalance. The rate of DNA synthesis in lung slices from fed rats treated with endotoxin did not differ from that of saline-treated controls. In contrast, lung DNA synthesis in starved rats treated with endotoxin increased 50%. The effect of endotoxin treatment was similar in rats breathing air or greater than 95% O2, and lung protein synthesis generally paralleled lung DNA synthesis. These results indicate that endotoxin does exert a mitogenic effect on the lung and this effect can be masked by the nutritional imbalance resulting from endotoxin administration.

Animals↗

Specific binding of endotoxin to human monocytes and mouse macrophages: serum requirement.

Specific binding of Bordetella pertussis and Neisseria meningitidis endotoxins to human monocytes and murine macrophages was demonstrated. Binding of B. pertussis endotoxin could be inhibited by endotoxins of Salmonella minnesota, Escherichia coli, and Klebsiella pneumoniae, the extent of inhibition being dependent on the origin of the lipopolysaccharides and on the origin of the mononuclear phagocytic cells. The binding of B. pertussis and N. meningitidis endotoxins which was mediated by the polysaccharide region of the endotoxins was serum dependent. The results indicated that the binding of endotoxin was promoted neither by natural antibodies directed against the endotoxin nor by proteins known to combine with endotoxins: immunoglobulins, albumin, or fibronectin; we have provided some evidence that complement components may play a role in the specific binding of endotoxins to the monocyte/macrophage membrane.

Animals↗

The hepatotoxicities of endotoxin and ethanol comparisons in vitro using the precision-cut rat liver slice model.

Using the precision-cut rat liver slice model, the in vitro toxicities of endotoxin and ethanol, independently and in combination, were evaluated. Hepatotoxicity was assessed by two measures: the leakage of LDH from slice to medium and the ability of slices to reduce a tetrazolium compound, MTT. Ethanol, in concentrations of 1% and greater, exhibited a time and dose dependent hepatotoxicity; MTT reductive capacity was more profoundly affected than LDH leakage. Endotoxin (0.1 to 100 micrograms/ml), however, had only a modest effect on MTT reduction and did not perturb LDH leakage. When combined in vitro, the toxicities of 2% ethanol and various concentrations of endotoxin were additive. Slices prepared from the livers of rats injected ip with endotoxin one day previously sustained considerably more injury (compared to normal rat liver slices) upon subsequent in vitro exposure to either endotoxin or ethanol. Prior in vivo exposure to ethanol, however, did not affect the subsequent in vitro toxicity of endotoxin. Thus, while endotoxin exhibits only subtle toxic effects upon liver slices in vitro, exposure to endotoxin in vivo renders the liver more susceptible to subsequent direct injury by endotoxin or ethanol.

Animals↗

Endotoxin-induced liver injury in aged and subacutely hypervitaminotic A rats.

The plasma disappearance of endotoxin and endotoxin-induced hepatic injury were studied in two rat models: the aging rat and the subacutely hypervitaminotic A rat. The choice of these models was based on their respective association with a decreased or increased Kupffer cell endocytic activity. The half-life of endotoxin (E. coli O26: B6, phenol extracted) in plasma was significantly prolonged in aged rats as measured by both the Limulus assay (t1/2 = 2.1 +/- 0.1 h in 3-6-month-old, and 3.3 +/- 0.3 h in 24-36-month-old rats) and 51Cr-labeled endotoxin radioactivity assay (t1/2 = 5.3 +/- 0.3 h in 3-6-month old and 7.7 +/- 0.6 h in 24 36-month-old rats). In subacute hypervitaminosis A, the half-life of endotoxin was significantly decreased in the Limulus assay (t1/2 = 2.1 +/- 0.1 h in 3-6-month old and 1.4 +/- 0.2 h in subacutely hypervitaminotic A rats), but not in the radioactivity assay (t1/2 = 5.3 +/- 0.3 h in 3-6-month-old and 5.0 +/- 0.4 h in subacutely hypervitaminotic A rats). Hundred percent mortality was observed at a dose of 2 mg endotoxin/100 g body wt. in old rats, but not in young rats. Only 1 of 7 young subacutely hypervitaminotic A rats died following injection of this dose of endotoxin. The dose of endotoxin which caused only minimal parenchymal liver cell injury in young rats induced substantial parenchymal cell injury in old rats and subacutely hypervitaminotic A rats as determined by both histological and biochemical parameters. It is concluded that some basic characteristics of experimental animals, such as age and nutritional status, can dramatically influence the sensitivity to endotoxin and this is not necessarily correlated with the rate of endotoxin clearance.

Aging↗

Chromogenic assay of endotoxin in platelet poor or rich plasma.

In order to determine which sample preparation, platelet rich plasma (PRP) or platelet poor plasma (PPP), is more suitable for clinical endotoxin assay, we investigated the binding of endotoxins to platelets by comparing the amount of endotoxin in PRP with that in PPP, using a newly developed colorimetric assay with chromogenic substrate (Boc-Leu-Gly-Arg-pNA). When purified endotoxins were added to human whole blood, the amount of endotoxin recovered in PPP was significantly lower than that in PRP for all endotoxins tested except that from E. coli 0111:B4 and their ability to bind to platelets was varied depending on the species of bacteria from which they were purified. However, the amount of endotoxin in PRP obtained from surgical patients (n = 50) was almost same as that in PPP with a correlation coefficient r = 0.95, indicating that natural endotoxins circulating in human blood may not bind to platelets and that PPP can be used for endotoxin assay as well as PRP.

Binding Sites↗

Effect of endotoxin to differentially affect cytochrome P-450 monooxygenase activities of untreated rats and animals induced with phenobarbital or 3-methylcholanthrene.

The effect of endotoxin in decreasing the cytochrome P-450-dependent metabolism of aniline, aminopyrine and ethoxycoumarin was examined in untreated rats, and in rats pretreated with either phenobarbital or 3-methylcholanthrene. Ethoxycoumarin metabolism was determined at two substrate concentrations (5 microM and 500 microM) to determine the effect of endotoxin on the high and low affinity enzyme activities. In untreated animals, endotoxin depressed both aniline and ethoxycoumarin metabolism by the high and low affinity enzymes by approximately 70%, but aminopyrine was decreased by only 47%. In phenobarbital pretreated rats, endotoxin decreased enzyme activities less than in untreated animals. Aniline metabolism and low affinity ethoxycoumarin metabolism were decreased by only 24%, and aminopyrine metabolism was decreased by 35%. The high affinity ethoxycoumarin metabolism was least affected, being decreased by only 12%. In 3-methycholanthrene pretreated rats, aniline and ethoxycoumarin (500 microM) metabolism were decreased by approximately 45%, but aminopyrine metabolism was only decreased by 20%. In these animals, endotoxin did not significantly affect the activity of ethoxycoumarin metabolism assayed with the low substrate concentration. Endotoxin decreased total cytochrome P-450 level of untreated rats by 32%, of phenobarbital pretreated rats by 39%, and in 3-methylcholanthrene pretreated animals the decrease was only 21%. Heme oxygenase activity of untreated animals was induced most by endotoxin administration and least in phenobarbital treated rats. The data suggest that endotoxin may differentially affect the various isozymes of cytochrome P-450 associated with the metabolism of aniline, aminopyrine and ethoxycoumarin. The results also suggest that the isozymes associated with these activities in untreated, phenobarbital or 3-methylcholanthrene pretreated rats may differ in their sensitivity to the effect of endotoxin.

Animals↗

Effects of multiple low doses of flunixin meglumine on repeated endotoxin challenge in the horse.

Previous work has shown repeated low doses of flunixin meglumine (FM) inhibit thromboxane production in normal horses. Enhanced concentrations of thromboxane in serum occurred after the drug therapy was discontinued. Our study was performed to evaluate the effects of low doses of FM in horses repeatedly challenged with endotoxin. Group I horses received E. coli endotoxin (0.1 microgram/kg IV) at 0 and 90 h. Group II horses received endotoxin and were also treated with FM (0.25 mg/kg IV) at 2, 10, 18, 26, 34, and 42 h after the initial administration of endotoxin. Clinical signs of endotoxemia were observed in all horses, but FM treated horses recovered more rapidly. The leukopenic response after endotoxin was attenuated in Group II following the second dose. Serum thromboxane (TxB2) decreased after the initial administration of endotoxin and remained below baseline values throughout the study. Serum TxB2 concentrations were not different between the groups. Plasma TxB2 and 6-keto-PGF1 alpha concentrations were increased after the initial endotoxin injection. In Group II, plasma TxB2 levels declined rapidly after FM administration and remained low. After the second dose of endotoxin, Group I horses had a mild rise and decline in TxB2 and 6-keto-PGF1 alpha concentrations, respectively. Thromboxane B2 levels in Group II changed little after the second dose of endotoxin, but a dramatic increase in 6-keto-PGF1 alpha concentrations occurred. These results suggest that multiple low doses of FM to horses with endotoxemia cause a selective and sustained suppression of TxB2 production and an enhancement of 6-keto-PGF1 alpha.

6-Ketoprostaglandin F1 alpha↗

Development and evaluation of an enzyme-linked immunosorbent assay for endotoxin in milk.

A double antibody sandwich enzyme-linked immunosorbent assay (ELISA) was developed for the detection of endotoxin in milk samples. Bovine and rabbit antisera raised in response to vaccination with the J5 mutant of Escherichia coli 0111:B4 were used. Antiserum to this mutant has been shown to be cross-reactive with endotoxin from other gram-negative organisms. Known quantities of endotoxin were added to milk samples to generate a standard curve. Acid treatment of whole milk enhanced the detection of endotoxin as compared to untreated whole milk, skim milk and chloroform-treated milk. Milk samples from experimentally induced mastitic cows were then assayed for endotoxin content. Recovery of endotoxin, as measured by ELISA, positively correlated with the amount of endotoxin infused and the time post-infusion of sampling. However, when endotoxin from these samples was quantitated using the Limulus Amebocyte Lysate (LAL) assay, readings tended to increase, suggesting false-positive reactions with the LAL assay. Milk samples from cases of clinical mastitis were assayed by ELISA with 64% of these showing measurable levels of endotoxin. While further studies of this assay are needed, refinements may produce an assay important for clinical applications.

Animals↗

A rapid highly-sensitive endotoxin detection system.

This paper presents a rapid, highly-sensitive, and low-cost method of endotoxin quantification based on the use of stress-responsive magnetoelastic sensors, that monitor the gel formation (viscosity change) of the Limulus Amoebocyte Lysate (LAL) assay in response to endotoxin. Ribbon-like magnetoelastic sensors, 12.7 mm x 6 mm x 28 microm, were immersed in a LAL assay after mixing with test samples of variable endotoxin concentration, and the decrease in resonance amplitude of the sensor was recorded as a function of time. Experimental results show excellent correlation between endotoxin concentration and the maximum clot rate, determined by taking the minimum point of the first derivative of the amplitude-time curve, as well as the clotting-time, defined as the time that corresponds to the maximum clot rate. Using a LAL gel-clot assay with a sensitivity of 0.06 EU/ml (EU: endotoxin unit), the magnetoelastic sensor based technology can detect the presence of endotoxin at 0.0105 EU/ml in test requiring approximately 20 min. Unlike optical methods used for determining endotoxin concentration, the color of the test solution does not impact the magnetoelastic sensor measurement. Due to the small size of the sensor reader electronics and low cost, the magnetoelastic sensor based endotoxin detection system is ideally suited for wide-spread use in endotoxin screening for sepsis prevention.

Biosensing Techniques↗

Endotoxin testing in inhalation grade lactose-a useful quality parameter?

Alpha-lactose monohydrate is the standard carrier used for dry powder inhalation drug products. The physico-chemical characteristics of this carrier material need to be monitored and specified carefully in order to guarantee functionality of the powder formulation. But also microbiological acceptance criteria need to be considered during development and routine testing. In this study, the endotoxin content of 19 batches of alpha-lactose monohydrate provided by two different manufacturers was determined with a semi-quantitative LAL assay. The endotoxin content was found to be less than 18 endotoxin units (EU)/g lactose in all cases and less than 3 EU/g in most cases. Assuming that the typical lactose has an endotoxin content of 10 EU/g and that a patient inhales six times daily 25 mg of lactose and that the total amount of lactose reaches the lung, this translates to an endotoxin exposure of 1.5 EU per day. On the other hand, the proposal for endotoxins in air limits the endotoxin concentration to 50 EU/m3 which corresponds to approximately 3333 EU inhaled endotoxins a day during normal breathing (breathing at rest conditions). The maximum endotoxin exposure by dry powder inhalations is thus two log steps lower than the recommended acceptable daily intake.

Administration, Inhalation↗

High-density lipoproteins reduce the effect of endotoxin on cytokine production and systemic hemodynamics in cirrhotic rats with ascites.

BACKGROUND/AIMS: Hypersensitivity to endotoxin is a recognized feature in cirrhosis. High-density lipoproteins (HDL) have a high capacity to inactivate endotoxin. The aim was to determine if HDL reduces the effect of endotoxin on cytokine production and systemic hemodynamics in experimental cirrhosis. METHODS: The study was performed in control and rats with carbon-tetrachloride induced cirrhosis with ascites. Hemodynamic parameters were determined before and after several doses of endotoxin. The effects of 25 microg/kg of endotoxin on the serum concentration of TNFalpha and mean arterial pressure (MAP) were determined after treatment with HDL (80 mg/kg) or saline. RESULTS: Whereas endotoxin decreased MAP only at doses of 100 and 1000 microg/kg in control rats, in cirrhotic rats significant hypotension occurred at doses of 25, 50, 100 and 1000 microg/kg. Following the administration of endotoxin (25 microg/kg) the serum levels of TNFalpha were 140 times higher in cirrhotic than in control rats (89?835+/-21?090 vs. 625+/-137 pg/ml; P<0.001). Serum TNFalpha was 80% lower in cirrhotic rats pretreated with HDL (18?890+/-5012 pg/ml; P<0.001) than in those pretreated with saline. The administration of endotoxin (25 microg/kg) was associated with a significant lower decrease of MAP in cirrhotic rats pretreated with HDL than in those receiving saline (11.9+/-3.5 vs. 24.7+/-4.3%; P<0.05). CONCLUSIONS: HDL attenuates the increased effect of endotoxin on cytokine production and systemic hemodynamic in cirrhosis.

Animals↗