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Endotoxin-induced tumor necrosis factor alpha synthesis in murine embryo fibroblasts.

Murine embryo fibroblasts (MEF) were found to secrete tumor necrosis factor (TNF) in response to stimulation with endotoxin. Endotoxin-induced TNF production by MEF was inhibited by cycloheximide. However, reversal of the effect of this inhibitor on protein synthesis results in TNF being secreted in amounts equivalent to those produced by endotoxin-induced MEF not treated with cycloheximide. Actinomycin D treatment of MEF blocked the production of endotoxin-induced TNF. Maximal production of TNF required MEF gene transcription during the first 6 h of incubation with endotoxin. To determine whether endotoxin-induced TNF alpha (TNF-alpha) and/or TNF beta were produced by MEF, cDNA was synthesized from the total RNA isolated from endotoxin-induced MEF and amplified by the polymerase chain reaction in the presence of oligonucleotide primers specific for each cytokine. On the basis of the polymerase chain reaction analysis, it was determined that TNF-alpha mRNA levels were increased in endotoxin-induced MEF. Thus, production of TNF-alpha by fibroblasts in response to the endotoxin component of bacterial cell walls is likely to contribute to the expression of TNF-mediated effects occurring in fibroblast-rich tissues infected with gram-negative bacteria.

Animals↗

Mitochondrial fatty acid oxidation and susceptibility to endotoxin in acute liver injury.

Farrar, W. Edmund, Jr. (Walter Reed Army Institute of Research, Washington, D.C.), Laurence M. Corwin, and Thomas H. Kent. Mitochondrial fatty acid oxidation and susceptibility to endotoxin in acute liver injury. J. Bacteriol. 90:1365-1372. 1965.-Acute liver injury was produced in guinea pigs with three chemically unrelated hepatotoxins: CCl(4), allyl alcohol, and dl-ethionine. The effects of these agents on liver morphology, susceptibility of animals to Escherichia coli endotoxin, endotoxin-inactivating ability of tissue homogenates, and substrate oxidation by liver mitochondria were studied. CCl(4) markedly reduced oxidation of all substrates studied except succinate, impaired the ability of liver homogenates to detoxify endotoxin in vitro, and increased the susceptibility of animals to the lethal effect of endotoxin by 150-fold. Allyl alcohol produced a severe morphological lesion in the liver but did not impair fatty acid oxidation by mitochondria, diminish endotoxin detoxification by liver homogenates, or greatly enhance susceptibility of the animals to endotoxin. Ethionine showed an effect intermediate between the other two agents. These findings are consistent with the hypothesis that the liver performs an important function in the detoxification of endotoxin by the oxidation of fatty acid residues in the endotoxin molecule.

Alcohols↗

Effect of lead acetate on the susceptibility of rats to bacterial endotoxins.

Selye, H. (Université de Montréal, Montreal, Canada), B. Tuchweber, and L. Bertók. Effect of lead acetate on susceptibility of rats to bacterial endotoxins. J. Bacteriol. 91:884-890. 1966.-A single, normally well-tolerated, intravenous injection of lead acetate increases the sensitivity of the rat to the endotoxins of various gram-negative bacteria about 100,000 times above normal. Under the conditions of these experiments, the mortality and organ changes normally produced by the intravenous injection of 100 mug of Escherichia coli endotoxin were essentially the same as those obtained by use of 1 nanogram in lead-sensitized rats. The sensitizing effect of lead acetate for E. coli endotoxin is greatest when the two agents are given simultaneously. However, considerable sensitization is still detectable when endotoxin is injected up to 1 hr before or 7 hr after sensitization with lead. No sensitization was noted when the endotoxin was administered 24 hr before or after lead acetate. Under our experimental conditions, the minimal dose of lead acetate which could still induce significant sensitization to E. coli endotoxin was 1 mg per 100 g of body weight. Although lead acetate induces a high degree of susceptibility to various endotoxins, other reticuloendothelial blocking agents did not acquire unusual toxicity after pretreatment with lead. Finally, none of the other metals or reticuloendothelial blocking agents tested could duplicate the pronounced decrease in endotoxin resistance induced by lead acetate.

Acetates↗

Properties of binding of Escherichia coli endotoxin to various matrices.

Binding of Escherichia coli O127:B8 endotoxin to a variety of resins and column materials was investigated by measuring the beta-hydroxy myristic acid content (a major component of the lipid A moiety) of endotoxin after hydrolysis by selected ion-monitoring gas chromatography-mass spectrometry. More than 80% of the endotoxin was bound to hydroxylapatite, polystyrene, Dowex 1-X2, and charcoal. The binding of endotoxin to these materials was markedly reduced by the addition of normal or delipidated serum. Phenyl- and octyl-Sepharose bound 56 and 50% of the endotoxin from saline solutions, respectively. Their percent binding was increased significantly in 1 M ammonium sulfate solutions, indicating hydrophobic interactions between endotoxin and phenyl- and octyl-Sepharose. Only 5% of the endotoxin was bound to plastic polymer PSI-HAP-100 beads, and no binding was observed with concanavalin A- and heparin-Sepharose. Study of the in vitro binding of endotoxin to the above material in the presence of serum suggests that the use of these materials in removing circulating endotoxin in vivo is limited.

Charcoal↗

Sensitive quantitation of endotoxin by enzyme-linked immunosorbent assay with monoclonal antibody against Limulus peptide C.

Limulus peptide C, a 28-amino-acid fragment of coagulogen formed by the reaction of endotoxin with Limulus amebocyte lysate, was synthesized, and a monoclonal antibody against it was raised. A new microassay for endotoxin was developed, using this antibody in an enzyme-linked immunosorbent assay for generated peptide C-like immunoreactivity. A linear relationship between absorbance and endotoxin concentration was obtained. Control standard endotoxin in water could be detected to a level of 0.001 endotoxin unit per ml. The endotoxin levels in plasma samples from normal humans, rabbit, mice, and guinea pigs were generally found to be below the detection limit of 0.01 endotoxin unit per ml of plasma. The color and turbidity of specimens did not interfere with the assay. The consumption of Limulus amebocyte lysate in the assay was less than 5% of that in the gel-clot and chromogenic assays. With raw lysate, which was much more stable in solution than chloroform-treated lysate, the assay was still highly sensitive to endotoxin but was totally unresponsive to natural glucans. The monoclonal antibody cross-reacted with peptide C-like immunoreactivity generated in Tachypleus amebocyte lysate, which gave equal sensitivity in the endotoxin assay.

Animals↗

The measurement of aerosolized endotoxin from land application of Class B biosolids in Southeast Arizona.

The purpose of this study was to determine aerosolized endotoxin concentrations downwind of a biosolids land application site. Aerosol samples were collected from biosolids land application sites, tractor operation, and an aeration basin located within an open-air wastewater treatment plant. Aerosolized endotoxin above background concentrations was detected from all sites, at levels ranging from below detection up to 1800 EU m-3 of air. Biosolids loading operations resulted in the greatest concentrations of endotoxin (mean 344 EU m-3). As downwind (perpendicular to wind vector) distance increased from sources (2-200 m), levels of endotoxin decreased to near background (without biosolids application) concentrations. Overall, the detected levels of aerosolized endotoxin were within past proposed aerosolized endotoxin limits (250-2000 EU m-3) by other occupational exposure studies. Occasionally, peak concentrations were found to be above these limits. Sites in which soil was being aerosolized resulted in greater concentrations of endotoxin with or without biosolids, which suggested that the majority of endotoxin may in fact be of soil origin. This study evaluated the presence of aerosolized endotoxin from the land application of biosolids and showed that these levels were within ranges for concern suggested by other studies and that this area of research needs further investigation.

Aerosols↗

Mediation of endotoxin-induced changes in zinc metabolism in rats.

A further characterization of endotoxin-induced changes in zinc metabolism provided insight into the possible mediation processes involved. Endotoxin reduced serum zinc levels while elevating zinc associated with hepatic metallothionein (Zn-MT) in control, fasted, and zinc-depleted rats. Unlike zinc, copper in the serum and that associated with metallothionein showed little response to endotoxin. In vitro translation of liver mRNA demonstrated that metallothionein mRNA levels were increased after endotoxin administration to either control or zinc-depleted rats. Cycloheximide fully blocked endotoxin-induced alterations in serum and metallothionein zinc, but actinomycin D was only partially inhibitory. Glucagon might act as the primary mediator for these actinomycin D-insensitive changes. Glucocorticoids might be responsible for the remaining alterations in zinc metabolism because dexamethasone increased 65Zn accumulation in cultured hepatocytes, whereas endotoxin did not. In endotoxin-treated rats, the kidney as well as liver showed increases in metallothionein-zinc and metallothionein-mRNA. Virtually all the effects of endotoxin were mimicked by leukocytic endogenous mediator, implying that it probably represents the initial mediator of endotoxin action on zinc metabolism.

Animals↗

Lipoprotein lipase-suppressing mediator in serum of endotoxin-treated rats.

The conditions under which lipoprotein lipase-suppressing mediator is present in serum of endotoxin-treated rats was determined in this study. The suppression of lipoprotein lipase activity in 3T3-L1 cells was used as a bioassay for mediator in serum. Endotoxin (0.1-10 micrograms/ml) and serum from control rats did not suppress lipoprotein lipase activity. Maximum suppression of cell lipoprotein lipase activity (70%) by serum from endotoxic rats required a cell exposure time of 5 h. At the highest dose of endotoxin used (1 mg/100 g), significant suppression was achieved when cells were incubated with 0.5% serum from endotoxic rats (P less than 0.05). Serum obtained 2-3 h after endotoxin injection possessed the maximal ability to suppress lipase activity, but suppressing activity was not present in serum collected 8 h after endotoxin. Rats rendered tolerant to endotoxin by 5 daily injections (0.1 mg/100 g) did not contain detectable levels of mediator in serum after endotoxin injection. The results demonstrate that the presence of lipoprotein lipase activity-suppressing mediator is transitory after in vivo exposure of naive rats to endotoxin, but does not appear in serum of endotoxin tolerant rats.

Animals↗

Role of endotoxin in the hypermetabolic state after acute ethanol exposure.

This study investigated the role of endotoxin in the hypermetabolic state or swift increase in alcohol metabolism (SIAM) due to acute ethanol exposure. Female Sprague-Dawley rats (100-120 g) were given ethanol (5 g/kg) by gavage. Endotoxin measured in plasma from portal blood was not detectable in saline-treated controls; however, 90 min after ethanol, endotoxin was increased to 85 +/- 14 pg/ml, and endotoxin clearance was diminished by approximately 50%. Oxygen uptake in perfused livers was increased 48% by ethanol, and production of PGE2 by isolated Kupffer cells was increased similarly. These effects were blunted by elimination of gram-negative bacteria and endotoxin with antibiotics before ethanol administration. To reproduce ethanol-induced endotoxemia, endotoxin was infused via the mesenteric vein at a rate of 2 ng. kg-1. h-1. Endotoxin mimicked the effect of ethanol on oxygen uptake. The specific Kupffer cell toxicant GdCl3 completely prevented increases in oxygen uptake due to endotoxin. These findings demonstrate that endotoxin plays a pivotal role in SIAM, most likely by stimulating eicosanoid release from Kupffer cells.

Animals↗

EDRF and nitric oxide production in cultured endothelial cells: direct inhibition by E. coli endotoxin.

Recent studies have yielded contradictory interpretations about the influence of gram-negative endotoxin on endothelium-derived relaxing factor (EDRF). We tested the hypothesis that Escherichia coli endotoxin exerts primary facilitatory or, alternatively, inhibitory actions on EDRF release and the synthesis of either nitric oxide or a nitroso compound in cultured endothelial cells. Bovine aortic endothelial cells were grown on microcarrier beads and either exposed acutely (30 min) to E. coli endotoxin or incubated with endotoxin for 1 h followed by a 1-h wash (prolonged exposure). EDRF bioactivity was measured under basal, bradykinin-stimulated, and A23187-stimulated conditions using standard isometric tension recordings. EDRF-derived nitric oxide was quantitated using a specific chemiluminescence technique. Endotoxin (0.005-5 micrograms/ml) decreased EDRF bioactivity and nitric oxide production under both basal and bradykinin-stimulated conditions after prolonged, but not acute, exposure. A23187-stimulated EDRF bioactivity and nitric oxide production were minimally, albeit significantly, reduced after endotoxin. The present results demonstrate that EDRF activity and nitric oxide production are decreased in vascular endothelial cells exposed to endotoxin. Endotoxin itself failed to directly stimulate EDRF release from endothelium. Alternative sources of nitrovasodilators, endothelium-independent effects, or release of other vasoactive mediators by endotoxin may be responsible for systemic hypotension during in vivo endotoxemia.

Animals↗

Bioassay of endotoxin clearance in vivo and by perfused rat liver.

Endotoxin clearances in vivo and by the isolated perfused rat liver were evaluated via bioassay in lead-sensitized rats. A linear relationship between the probit of shock lethality and the endotoxin dose in the probit range of 4-6 was validated. Endotoxin clearance in normal, fed rats displayed a linear relationship between the logarithm of the blood endotoxin concentration and time throughout the period of 15-240 min at doses of 500 and 1,000 mug/ rat; the half-time values were 58-63 min. Decreasing the endotoxin dose to 250 mug resulted in multiphasic clearance curves. Induction of tolerance to endotoxin resulted in marked acceleration of endotoxin clearance. Endotoxin clearance from the isolated perfused rat liver was not influenced by serum or rat blood as compared to clearance from a balanced salt solution. These data suggest that a physiologically stressful dose of endotoxin is slowly cleared from the blood and, therefore, circulates for prolonged periods.

Animals↗

Alteration of adipocyte calcium homeostasis by Escherichia coli endotoxin.

The present study evaluated calcium homeostasis in rat adipocytes after either in vivo or in vitro exposure to Escherichia coli endotoxin. Fat cells from endotoxin-treated rats showed an enhanced uptake of 45Ca. In an attempt to differentiate between 45Ca binding to the cell surface and intracellular 45Ca accumulation, adipocytes were exposed to 5 mM LaCl3. The amount of 45Ca remaining associated with lanthanum-treated adipocytes was taken to be located intracellularly and was increased in adipocytes from endotoxin-treated rats. The amount of 45Ca displaced by lanthanum was also increased in adipocytes from endotoxin-treated rats. This suggested that the endotoxin-induced increase of 45Ca accumulation included both cell surface and intracellular binding sites. Compartmental analysis of the exchange kinetics of cell-associated 45Ca with 40Ca in the medium indicated a 77% increase in the size of the cell surface compartment of adipocytes from endotoxin-treated rats compared with controls. In addition, endotoxin treatment altered the flux of calcium from the cells to the medium. In vitro exposure of freshly prepared adipocytes to 250 or 750 micrograms endotoxin/ml did not produce a perturbation of adipocyte calcium homeostasis. The results indicate that endotoxin induces alterations in the ability of adipocytes to regulate calcium translocations, suggesting that some metabolic and hormonal aspects of endotoxins' actions may be mediated through perturbation of cellular calcium homeostasis.

Adipose Tissue↗

Escherichia coli endotoxin injections potentiate experimental ischemic renal injury.

UNLABELLED: The purpose of this study was to assess the influence of Escherichia coli endotoxin on the evolution of ischemic acute renal failure (ARF). Rats were subjected to 25 min of bilateral renal artery occlusion (RAO) plus subcutaneous/intraperitoneal injections of either boiled E. coli or purified E. coli endotoxin (1.5 mg). Boiling the E. coli renders them nonviable but leaves endotoxin intact. Ischemic controls were injected with saline. The E. coli injections exacerbated ischemic ARF, doubling the degree of azotemia and increasing the extent of tubular necrosis and cast formation. This occurred without an adverse effect on renal blood flow or blood pressure during the initiation phase or maintenance phase of the ARF. Endotoxin tolerant rats were totally protected against the E. coli-ARF potentiating effect. Neither Staphylococcus aureus nor E. coli with denatured endotoxin adversely affected ischemic injury. Purified E. coli endotoxin reproduced the E. coli-ARF potentiating action. Neither E. coli nor purified endotoxin induced azotemia in the absence of renal ischemia. CONCLUSION: E. coli endotoxin can exacerbate ischemic renal injury without compromising renal hemodynamics. This action appears to be mediated by an adverse effect of endotoxin on critical subcellular determinants of ischemic tissue injury.

Acute Kidney Injury↗

Role of bacterial endotoxins of intestinal origin in rat heat stress mortality.

Using unanesthetized rats, the effect on heat stress mortality of endotoxin tolerance or zymosan treatment was determined. In addition, the incidence of invasion by gram-negative bacteria and their endotoxins was studied to evaluate the role of gut-derived bacterial endotoxins after heat stress. Endotoxin tolerance resulted in heat stress resistance. The estimated mean total thermal area, which induced an LD50 in endotoxin-tolerant rats (61.85 degrees C . min) was significantly greater (P less than 0.001) than that for non-tolerant rats (44.03 degrees C . min). Rats were significantly (P less than 0.005) more sensitive to endotoxin after zymosan treatment, but this treatment did not alter the heat stress mortality rate. The Limulus amoebocyte lysate test indicated that endotoxemia did not occur as a result of heat stress. Though a significantly increased incidence of high gram-negative bacterial count in the duodenum was noted, extraintestinal invasion was not found. It was concluded that resistance to heat stress may not be due to protection from gut-derived bacterial endotoxins, but resistance may possibly be associated with the ability of endotoxin tolerance to protect from shock syndromes. Thus bacterial endotoxins of intestinal origin did not appear to have a significant role in rat heat stress mortality.

Animals↗

Antioxidants protect cultured bovine lung endothelial cells from injury by endotoxin.

Endotoxin injures bovine pulmonary endothelial cells in culture but the cytotoxicity is unaffected by a host of antiinflammatory drugs. We hypothesized that agents which could decrease intracellular concentrations of toxic metabolites of O2 would prevent endotoxin effects on cultured pulmonary artery endothelial cells. We measured endotoxin-induced release of lactate dehydrogenase (LDH) from and production of prostanoids by cultured bovine pulmonary endothelial cells in the presence and absence of dimethyl sulfoxide (DMSO) and the xanthine oxidase inhibitor allopurinol. Escherichia coli endotoxin (0.001-10 micrograms/ml) caused a dose-related release of LDH and stimulated production of both prostacyclin [measured as 6-ketoprostaglandin F1 alpha (6-keto-PGF1 alpha)] and prostaglandin E2 (PGE2). Both DMSO and allopurinol decreased endotoxin-induced LDH release; this effect was related to concentration of the drugs (0-2% for DMSO and 0-0.3 mg/ml for allopurinol). Both drugs also prevented endotoxin-induced changes in endothelial morphology. Endotoxin increased intracellular reduction of the redox dye nitro blue tetrazolium, caused intracellular oxidation of 2',7'-dichlorofluorescein diacetate and caused release of conjugated dienes from endothelial cells; both DMSO and allopurinol inhibited those responses. DMSO, but not allopurinol, prevented endotoxin-induced production of prostacyclin and PGE2 by endothelium. Direct injury of pulmonary endothelium by endotoxin is inhibited by two chemically dissimilar drugs which have a common potential for decreasing intracellular concentrations of toxic metabolites of O2; indirect evidence suggests that potential as a mechanism for the protective effects of the drugs.

Allopurinol↗

Dimethylthiourea attenuates endotoxin-induced acute respiratory failure in pigs.

We hypothesized that toxic O2 radicals might be important mediators of endotoxin-induced acute respiratory failure in pigs. As a relatively specific scavenger of .OH, we infused dimethylthiourea (DMTU, 1 g/kg) before endotoxemia. Escherichia coli endotoxin (055-B5) was infused intravenously into anesthetized 10- to 14-wk-old pigs at 5 micrograms/kg the 1st h, followed by 2 micrograms.kg-1.h-1 for 3.5 h. During phase 1 (i.e., 0-2 h) and phase 2 (i.e., 2-4.5 h), endotoxin decreased cardiac index (CI) and increased mean pulmonary arterial pressure (Ppa), pulmonary vascular resistance (PVR), alveolar-arterial O2 gradient (AaDo2), and hematocrit (Hct). Endotoxemia also caused leukopenia and increased the postmortem bronchoalveolar lavage fluid (BALF) albumin concentration and wet weight-to-dry weight ratio of bloodless lung. Dimethylthiourea did not significantly modify the phase 1 response. However, during phase 2, DMTU attenuated the endotoxin-induced decrease in CI and increases in Ppa, PVR, Hct, AaDo2, lung water, and BALF albumin concentration. In separate groups of endotoxin- and DMTU + endotoxin-treated pigs, lung microvascular hydrostatic pressure was increased to approximately 16 Torr (by fluid overload) to assess alveolar-capillary membrane permeability. Under these conditions, DMTU markedly attenuated the endotoxin-induced increase in alveolar-capillary membrane permeability. Under these conditions, DMTU markedly attenuated the endotoxin-induced induced increase in alveolar-capillary membrane permeability. We conclude that .OH (and possibly H2O2) significantly contributes to endotoxin-induced lung injury in anesthetized pigs.

Acute Disease↗

Antiproteinases protect cultured lung endothelial cells from endotoxin injury.

To determine whether the effects of endotoxin on cultured lung endothelium involve proteolytic mechanisms, we incubated bovine pulmonary arterial endothelial cells with endotoxin in medium 199 + 10% fetal bovine serum (FBS) in the presence and absence of several proteinase inhibitors. Three chloromethyl ketone (CK) derivatives [N-tosyl-L-lysine (CK)-(TLCK), N-tosyl-L-phenylalanine CK(TPCK), methoxysuccinyl-Ala-Ala-Pro-Val CK(SPCK)] and a single synthetic proteinase substrate [N-alpha-p-tosyl-L-arginine methyl ester hydrochloride (TAME)] attenuated endotoxin-induced cytotoxicity (lactate dehydrogenase release) and prostacyclin production in a dose-related fashion. The most effective inhibitors of endotoxin-induced cytotoxicity were TLCK and TPCK. TLCK and TAME most effectively attenuated endotoxin-stimulated prostacyclin production. Two chemically unrelated substances, soybean trypsin inhibitor and alpha 1 proteinase inhibitor also attenuated the endotoxin response. In the absence of FBS or in the presence of 10% heat-inactivated FBS, antiproteases attenuated endotoxin-induced prostacyclin production but had less effect on cytotoxicity than with 10% FBS. We also measured the capacity of the CK inhibitors to scavenge superoxide radicals generated in a cell-free xanthine/xanthine oxidase system by measuring inhibition of cytochrome c reduction. Percent scavenging of superoxide by these inhibitors was as follows: TLCK, 62.7 +/- 5.8 (SE); TPCK, 83.9 +/- 7.7; TAME, 24.5 +/- 6.4; SPCK, 0. We conclude that certain proteinase inhibitors attenuate endotoxin-induced endothelial cytotoxicity and prostacyclin production and that direct scavenging of superoxide radicals fails to explain the protective effects of proteinase inhibition. We speculate that the effects of endotoxin on lung endothelium may involve proteolytic mechanisms even in the absence of neutrophils.

6-Ketoprostaglandin F1 alpha↗

Effect of endotoxin on systemic and skeletal muscle O2 extraction.

Patients with the adult respiratory distress syndrome (ARDS) show a pathological dependence of O2 consumption (VO2) on O2 delivery (QO2, blood flow X arterial O2 content). In these patients, a defect in tissues' ability to extract O2 from blood can leave tissue O2 needs unmet, even at a normal QO2. Endotoxin administration produces a similar state in dogs, and we used this model to study mechanisms that may contribute to human pathology. We measured systemic and hindlimb VO2 and QO2 while reducing cardiac output by blood withdrawal. At the onset of supply dependence, the systemic QO2 was 11.4 +/- 2.7 ml.kg-1.min-1 in the endotoxin group vs. 8.0 +/- 0.7 in controls (P less than 0.05). At this point, the endotoxin-treated animals extracted only 61 +/- 11% of the arterial O2, whereas control animals extracted 70 +/- 7% (P less than 0.05). Systemic VO2 rose by 15% after endotoxin (P less than 0.05) but did not change in controls. Despite this poorer systemic ability to extract O2 by the endotoxin-treated dogs, isolated hindlimb O2 extraction at the onset of supply dependence was the same in endotoxin-treated and control dogs. At normal levels of QO2, hindlimb VO2 in endotoxin-treated dogs was 23% higher than in controls (P less than 0.05). Fractional blood flow to skeletal muscle did not differ between control and endotoxin-treated dogs. Thus skeletal muscle was not overperfused in endotoxemia and did not contribute to a systemic extraction defect by stealing blood flow from other tissues. Skeletal muscle in endotoxin-treated dogs demonstrated an increase in VO2 but no defect in O2 extraction, differing in both respects from the intestine.

Animals↗