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Sublethal endotoxin administration evokes super-resistance to systemic hypoxia in rats.

BACKGROUND: Systemic hypoxia following surgical injury modulates cytokine and catecholamine responses. Endotoxin tolerance develops after pretreatment of animals with sublethal endotoxin doses and is characterized by a reduced inflammatory cytokine response to subsequent endotoxin challenges. The administration of endotoxin also attenuates ischemic injury of rat myocardial tissue following hypoxia, a phenomenon described as cross-tolerance. The objectives of this study were: 1) to determine whether endotoxin evokes a cross-tolerance to systemic hypoxia in rats; and 2) to estimate circulatory and pulmonary performance in rats with systemic hypoxia after endotoxin pretreatment. METHODS: Seventy-two hours before the experiment, Wistar rats were given an intraperitoneal injection of endotoxin at a dose of 10 microg/kg. Polyethylene catheters were inserted into the femoral vein for infusion, and into the femoral artery for blood sampling and blood pressure monitoring. Systemic hypoxia was achieved by continuous inhalation of a modified gas mixture (9% oxygen+ 91% N2) for 4 hours. Plasma TNF-alpha and IL-6 were measured by ELISA, and norepinephrine (NE) by HPLC. RESULTS: The hypoxic rats that were pretreated with saline showed a significant decrease in mean arterial blood and base excess, as compared with the normoxic rats. Endotoxin pretreatment prevented the drop in mean arterial pressure during hypoxia and reduced the decrease in base excess. Hypoxic conditions markedly stimulated TNF-alpha and IL-6 release and increased NE levels, compared to the normoxic rats. Pretreatment with endotoxin suppressed the hypoxia-induced cytokine production as well as attenuating the increase in NE levels CONCLUSIONS: In this rat hypoxia model, endotoxin pretreatment ameliorated the hypoxia-induced inflammatory response as well as suppressing the effects on arterial oxygenation, anaerobic metabolism and NE stimulation.

Adaptation, Physiological↗

Quantification of endotoxins in necrotic root canals from symptomatic and asymptomatic teeth.

The purpose of this investigation was to quantify the concentration of endotoxin in necrotic root canals and investigate the possible relationship between the concentration of endotoxin and endodontic signs and symptoms. Samples were collected from root canals of 50 patients requiring endodontic treatment due to necrosis of the pulpal tissue. Anaerobic techniques were used to determine the number of c.f.u. in each sample. A quantitative chromogenic Limulus amoebocyte lysate assay was used to measure the concentration of endotoxin in each sample. The presence of c.f.u. was detected by culture in all samples (range 10(2)-5x10(6)). In samples from cases of patients with spontaneous pain, the mean c.f.u. was 1.43x10(6) while in asymptomatic cases it was 9.1x10(4). Endotoxin was present in all the samples studied [range 2390.0-22100.0 endotoxin units (EU) ml-1]. The mean concentration of endotoxin in samples from patients with spontaneous pain was 18540.0 EU ml-1 while in asymptomatic cases it was 12030.0 EU ml-1. Asymptomatic cases generally had lower levels of endotoxin (i.e. a negative association). A positive association was found between endotoxin and symptomatic cases (e.g. spontaneous pain, tenderness to percussion, pain on palpation, swelling and purulent exudates). This study showed that endotoxin is present in high concentrations in root canals of symptomatic teeth. There was a positive correlation between the concentration of endotoxin in the root canal and the presence of endodontic signs and symptoms.

Bacteria, Anaerobic↗

Effect of lead acetate on superoxide anion generation and its scavengers in mice given endotoxin.

The administration of endotoxin to mice rendered hypersensitive by lead acetate resulted in profound lipid peroxide formation in the liver 6 hr postintoxication. Endotoxin plus lead acetate administration depressed glutathione peroxidase and superoxide dismutase activities in mouse liver, whereas superoxide anion generation significantly increased in the livers of endotoxin plus lead acetate-treated mice compared with that in mice treated with endotoxin alone. Serum acid phosphatase and lactate dehydrogenase isozyme exhibited much more leakage in endotoxin plus lead acetate-injected mice than in sera of mice given endotoxin alone. Nonprotein SH level in the liver was reduced markedly in endotoxin-lead treated mice compared with those receiving endotoxin alone. The plasma vitamin E level was found to decline by 6 hr postintoxication in both endotoxin-lead and endotoxin alone-treated mice, and the transient elevation of the plasma level at 18 hr may be considered to indicate mobilization from other tissues into the blood.

Acid Phosphatase↗

Inhaled nitric oxide does not prevent endotoxin-induced lung injury in rabbits.

BACKGROUND: Neutrophils, platelets, and cytokines are thought to play a pivotal role in the pathogenesis of endotoxin-induced lung injury which resembles features of acute respiratory distress syndrome (ARDS). For initiation of this pathological process, neutrophils and platelets are activated and adhere to pulmonary endothelium. Nitric oxide (NO) inhibits adhesion and activation of these cells and decreases the cytokine level in bronchoalveolar lavage (BAL) fluid obtained from patients with ARDS. Limited data are available on the effect of NO treatment before and after endotoxin on the development and advance of ARDS. The aim of the current study was to determine whether NO inhalation prevents acute lung injury. METHODS: Thirty-two male anaesthetized rabbits were randomly assigned to receive one of four treatments (n = 8 each); Group S-N received saline with nitrogen (N2), Group S-NO received saline infusion with NO (20 p.p.m.) inhalation, Group E-N received an infusion of Escherichia coli endotoxin 100 micrograms/ kg over 60 min with inhalation of N2, and Group E-NO received endotoxin with NO (20 p.p.m.) inhalation. The lungs of the rabbits were ventilated with 40% oxygen until 6 h after the start of endotoxin or saline administration. Haemodynamics and PaO2 were recorded during the ventilation period. After observation, the lung wet-to dry-(W/D) weight ratio, lung mechanics, and cell fraction, activated complements, cytokines, arachidonic acid metabolites, and albumin concentrations in the BAL fluid were measured and analysed. Light microscopic findings were compared among the four groups. RESULTS: Pulmonary hypertension and deterioration of oxygenation by endotoxin were less pronounced in rabbits receiving NO. The lung compliance after endotoxin was similar in Groups E-NO and E-N. The W/D weight ratio and neutrophils and albumin concentrations in the BAL fluid increased in Groups E-NO and E-N. The BAL fluid concentrations of interleukin-8, thromboxane A2, and prostacyclin were similar in the two endotoxin-treated groups. Endotoxin caused extensive morphologic lung damage regardless of NO inhalation. CONCLUSIONS: The increase in pulmonary arterial pressure and deterioration of oxygenation were less in endotoxin-exposed rabbits receiving NO inhalation compared with those receiving N2. Accumulation of neutrophils and platelets in the lung, morphological lung damage, and the release of cytokines and prostanoids were observed in the E-NO group. However, we are unable to extrapolate these results directly to the human clinical setting because of the short observation period, the use of only one dose of NO, and the species difference.

Administration, Inhalation↗

Interaction of Kupffer cells to splenic macrophages and hepatocytes in endotoxin clearance: effect of alcohol.

An additional administration of high dose ethanol to chronic alcohol-fed rats led to a decrease in endotoxin clearance and an increase in endotoxin accumulation in the spleen accompanied by an elevation of tumour necrosis factor (TNF) levels in the portal vein. Endotoxin uptake and TNF production by Kupffer cells (KC) and splenic macrophages in the chronic ethanol load rats were significantly greater than those in the control rats. When these cells were precultured in the medium containing 10 to 100 mmol/L ethanol, the endotoxin uptake and TNF production of KC were decreased. However, this did not affect the endotoxin uptake and TNF production of splenic macrophages. The hepatic production of endotoxin binding protein was increased when KC were preincubated in the medium containing ethanol and the resultant culture supernatant was added to the hepatocyte culture system. This endotoxin binding protein was proved to enhance the uptake of endotoxin and suppressed the production of TNF in the KC. When KC and hepatocytes were isolated from chronically alcohol-fed rats, further addition of ethanol to the culture medium of KC did not affect the hepatic production of endotoxin binding protein. The increase in hepatic production of endotoxin binding protein may serve as a defence mechanism against endotoxicity. There is a possibility that an impairment of this defence mechanism has a pivotal role in the development of endotoxaemia and endotoxicity in chronic alcoholics.

Animals↗

In vivo and in vitro studies of bacterial endotoxin-membrane interactions and the effects of membrane-active agents.

The characteristics of 51Cr-labelled E. coli endotoxin binding to human erythrocyte membranes in vitro have been investigated. A saturable component of binding was apparent at low endotoxin concentrations (less than 50 micrograms ml-1) relevant to its in vivo actions, while at higher concentrations binding was non-saturable and increased in linear fashion. Experiments examining the ability of unlabelled endotoxin to antagonize the binding of labelled toxin provided further evidence for these specific and non-specific modes of endotoxin-membrane interaction. Membrane-active agents previously shown to reduce endotoxin toxicity in vivo decreased endotoxin binding to erythrocyte membranes in vitro, with propranolol and pranolium being the most effective in this regard. Tissue distribution studies following administration of radiolabelled endotoxin to guinea-pigs showed a positive correlation between the accumulation of 51Cr-endotoxin in lung and elevations in plasma acid phosphatase activity, a measure of in vivo endotoxin toxicity. The in vivo accumulation of 51Cr-endotoxin in guinea-pig lung was reduced by prior treatment with (+)-propranolol or pranolium, paralleling the results of the in vitro binding studies. Our results suggest that membrane-active agents such as (+)-propranolol may be useful adjuncts to antimicrobial drugs in the therapy of gram-negative endotoxaemia.

Acid Phosphatase↗

Levels and predictors of endotoxin in mattress dust samples from East and West German homes.

UNLABELLED: East-West differences in prevalence of asthma and allergies were suggested to be associated with lifestyle factors. To describe endotoxin levels in mattress dust samples from East and West German homes collected approximately 10 years after reunification. To identify factors that may account for an East-West difference. Dust was collected from mattresses of 2157 infants and 2108 mothers living in Leipzig (former East Germany) and Munich (West Germany). Endotoxin was measured using a chromogenic kinetic Limulus amoebocyte lysate test. Data on bedding, dwelling, and housing characteristics, and occupants' behavior were collected using a self-administered questionnaire. Endotoxin levels were significantly higher in Leipzig compared with Munich for the infants' mattresses but not for the mothers' mattresses. Apart from this, predictors for the mothers' and the infants' mattresses were very similar. Pet-ownership and contact with animals outside the home were most influential. Endotoxin levels in mattress dust were highest in summer and increased with the number of persons living in the household. The overall percentage of variability in endotoxin levels explained by these factors was low. Endotoxin levels were associated with lifestyle factors discussed within the framework of the hygiene hypothesis. None of these factors explains the difference in infant's mattress dust endotoxin between Leipzig and Munich or could be used as a surrogate for endotoxin. PRACTICAL IMPLICATIONS: Endotoxin levels in mattress dust are associated with a number of factors discussed in the framework of the hygiene hypothesis; among other things they are associated with pet-ownership, contact with pets and number of persons living in the home. However, none of these factors and not even a combination of factors explains the variability of endotoxin levels between homes.

Adult↗

Fungal and endotoxin measurements in dust associated with respiratory symptoms in a water-damaged office building.

UNLABELLED: We investigated the associations of fungal and endotoxin levels in office dust with respiratory health in 888 (67% participation) occupants of a water-damaged building. We analyzed floor and chair dusts from 338 workstations for culturable fungi and endotoxin. Based on averages, we ranked each floor of the building as low, medium, or high for occupants' exposure to each of these agents. Multivariate logistic regression models for building-related symptoms included this ranking of fungi and endotoxin, age, gender, race, smoking status, and duration of occupancy. Using floor dust measures, we found significantly increased odds for lower respiratory symptoms [wheeze, chest tightness, attacks of shortness of breath, and attacks of cough: odds ratios (OR) = 1.7 (95% confidence interval (CI): 1.02-2.77) to 2.4 (95% CI: 1.29-4.59)], throat irritation [OR = 1.7, (95% CI: 1.06-2.82)], and rash/itchy skin [OR = 3.0, (95% CI: 1.47-6.19)] in the highest fungal exposure group compared to the lowest, with generally linear exposure-response relationships. Nonlinear relationships were observed for many of these symptoms and endotoxin in floor dust. Interaction models showed that endotoxin modified effects of fungi on respiratory symptoms. Our findings of exposure interactions and exposure-response relationships of fungal and endotoxin with increased risk of building-related symptoms contribute to an understanding of the role of microbial agents in building-related asthma and respiratory and systemic symptoms. PRACTICAL IMPLICATIONS: Our demonstration of exposure-response relationships between measurements of fungi and/or endotoxin in floor dusts and building-related symptoms implies that microbial agents in floor dust may be a good surrogate measure for dampness-related bioaerosol exposure, considering that measurements of microbial agents in air often fail to demonstrate the associations between exposure and health. In addition, our finding that endotoxin exposure may change the effect of fungal exposure (and vice versa) on respiratory heath suggests that exposure to both fungi and endotoxin should be assessed in epidemiological investigations examining the effect of fungal or endotoxin exposure on respiratory health in indoor environments.

Air Pollution, Indoor↗

Endotoxin inactivating action of plasma in patients with liver cirrhosis.

The endotoxin inactivating action of plasma was evaluated in 62 patients with cirrhosis and 10 healthy subjects. Endotoxin from E. coli 0111:B4 was added to each plasma sample to a final concentration of 250 pg/ml and the percentage loss of endotoxin activity by incubation (37 degrees C for 1 h) was calculated as the endotoxin inactivating rate. The plasma endotoxin inactivating rate in cirrhotics was significantly greater than that in healthy subjects, although patients with Child C cirrhosis and marked hyperbilirubinemia had a significantly lower endotoxin inactivating rate than other cirrhotics. The plasma endotoxin inactivating rate was positively correlated to serum HDL-cholesterol levels. In patients with Child A and Child B cirrhosis, the endotoxin inactivating rate was positively correlated to the endotoxin binding capacity of plasma albumin. The present results support the assumption that the plasma of cirrhotics has a high endotoxin inactivating capacity. Its decrease may augment endotoxicity in patients with advanced liver cirrhosis.

Albumins↗

Enhanced toxicity for mice of vincristine and other chemotherapeutic agents with Salmonella typhosa endotoxin and Pseudomonas aeruginosa.

The toxicity of Salmonella typhosa 0901 W endotoxin for BALB/c mice was potentiated by the administration of 375 mg of cyclophosphamide per kg, 16 mg of daunomycin per kg, 80 mg of methotrexate per kg, 8 mg of pactamycin per kg, 20 mg of polyinosinic-polycytidylic acid per kg, 1,000 mg of procarbazine per kg, and 1 or 4 mg of vincristine per kg. l-Asparaginase (20,000 units per kg) failed to potentiate endotoxin. Sedation following administration of 45 mg of pentobarbital per kg was prolonged in mice that had received 20,000 units of l-asparaginase per kg, 4 mg of daunomycin per kg, 120 mg of methotrexate per kg, 8 mg of pactamycin per kg, 10 mg of polyinosinic-polycytidylic acid per kg, 500 mg of procarbazine per kg, 2 mg of vincristine per kg, 2 mg of endotoxin per kg, or multiple doses of endotoxin. Mice pretreated with multiple endotoxin doses experienced a significant reduction in their lethal responses due to vincristine-endotoxin combinations; however, endotoxin-pretreated mice were more susceptible to vincristine alone than were normal mice. Simultaneous administration of 1 or 2 mg of vincristine per kg and 1 mg of endotoxin per kg produced greater lethality than sequential regimens. Pretreatment of mice with 65 mg of phenobarbital per kg on 4 consecutive days protected against vincristine-endotoxin combinations. Liver homogenates prepared from mice exposed previously to vincristine were capable of inactivating endotoxin. Vincristine lethality was increased by simultaneous administration of heat-killed cells of Pseudomonas aeruginosa isolated from mouse feces.

Animals↗

Biological characterization of endotoxins released from antibiotic-treated Pseudomonas aeruginosa and Escherichia coli.

The supernatants taken from Pseudomonas aeruginosa and Escherichia coli cultures in human sera or chemically defined M9 medium in the presence of ceftazidime (CAZ) contained high levels of endotoxin, while those taken from the same cultures in the presence of imipenem (IPM) yielded a very low level of endotoxin. The biological activities of endotoxin in the supernatants were compared with those of phenol water-extracted lipopolysaccharide (LPS). The endotoxin released from the organisms as a result of CAZ treatment (CAZ-released endotoxin) contained a large amount of protein. The protein, however, lacked endotoxic activity, since the endotoxin did not show any in vivo toxic effects in LPS-hyporesponsive C3H/HeJ mice sensitized with D-(+)-galactosamine (GalN) or any activation of C3H/HeJ mouse macrophages in vitro. The activities of CAZ- and IPM-released endotoxin (as assessed by a chromogenic Limulus test) were fundamentally the same as those of P. aeruginosa LPS, since their regression lines were parallel. The CAZ-released endotoxin was similar to purified LPS with respect to the following biological activities in LPS-responsive C3H/HeN mice and LPS-hyporesponsive C3H/HeJ mice: lethal toxicity in GalN-sensitized mice, in vitro induction of tumor necrosis factor- and NO production by macrophages, and mitogen-activated protein kinase activation in macrophages. The macrophage activation by CAZ-released endotoxin as well as LPS was mainly dependent on the presence of serum factor and CD14 antigen. Polymyxin B blocked the activity. These findings indicate that the endotoxic activity of CAZ-released endotoxin is due primarily to LPS (lipid A).

Animals↗

Rapid detection of bacterial endotoxins in drinking water and renovated wastewater.

A pilot study was conducted to determine the feasibility of using the Limulus endotoxin assay to detect endotoxins in potable waters and from reclaimed advanced waste treatment (AWT) plant effluents. Water samples were tested using both Limulus lysates prepared in our laboratory and a commercial product, Difco Pyrotest. The Limulus assay procedure was easily adapted to the testing of water samples for endotoxin. Measured endotoxin concentrations varied from 0.78 ng/ml to 1,250 ng/ml. Levels of endotoxin were not predictable based on whether the water was drinking water or AWT water, i.e., some AWT water samples had less endotoxin activity than some samples of drinking water, and some AWT waters had greater endotoxin activity than drinking water. Only three of the water samples tested were free of any detectable endotoxin. Breakpoint chlorination procedures seemed to reduce measurable endotoxin content, whereas passage through activated carbon columns was associated with greater final endotoxin concentrations in test waters.

Biological Assay↗

Determining endotoxin content of ground beef by the Limulus amoebocyte lysate test as a rapid indicator of microbial quality.

Eighty-four samples of ground beef were placed into five half-log cycle groups based upon aerobic plate count (APC) results. Endotoxins were determined by the Limulus amoebocyte lysate test (LAL), and gram-negative viable counts were determined by a violet red bile agar overlay method. Ten samples with a log of APC of less than 5.50 had an APC mean of less than 5.24 and mean endotoxin content by the LAL of 51 ng/g. The 15 samples with APCs between a log of 5.50 and 5.99 had an APC mean of 5.79/g and an endotoxin mean of 103.8 ng/g. Twenty-eight samples had APCs between a log of 6.00 and 6.49 with a mean of 5.28/g and an endotoxin mean of 1106.4 ng/g. The 20 samples with APCs between a log of 6.50 and 7.00 had a mean of 6.77/g and an endotoxin mean of 5067.6 ng/g, while 11 samples had a log of APCs of greater than 7.00 with a mean of 7.53 and an endotoxin mean of 7,472 ng/g. Correlation of half-log cycle mean APC and violet red bile agar counts with mean endotoxin content were both highly significant, indicating that LAL-determined endotoxin content can be used to make a rapid approximation of viable plate counts. Because results can be obtained by LAL in 1 h, the finding of low levels of endotoxins can be taken to indicate low-count meat. The use of additional tests of microbial quality may be necessary when high endotoxin levels are found because the LAL detects both viable and nonviable cells.

Aerobiosis↗

Toxic interactions of benzyl alcohol with bacterial endotoxin.

Acute toxic interactions of intravenously administered benzyl alcohol and Escherichia coli O55:B5 (Boivin preparation) endotoxin were examined in rodents. Lethality studies in male CD-1 mice demonstrated that these agents were more toxic when administered in combination than when either was administered alone. Prophylactic treatment with diazepam (5 mg/kg intraperitoneally) protected against lethality induced by either the combination or the endotoxin yet offered little, if any, protection against the lethal effects of benzyl alcohol. Similar treatments with naloxone (5 mg/kg intraperitoneally) failed to protect against either endotoxin-induced or benzyl alcohol-induced lethality, but they significantly protected against the lethal effects of the combination. Although hexobarbital-induced sleeping time was prolonged in endotoxin-treated mice (but was normal in benzyl alcohol-treated mice), a more protracted effect on sleeping time was observed in mice treated with both benzyl alcohol and endotoxin. Moreover, male Wistar rats treated with benzyl alcohol (40 mg) showed no evidence of hepatic lesions, but rats treated in combination with sublethal doses of the alcohol (40 mg) and the endotoxin (0.4 mg) developed hepatic lesions which were severe than those observed in rats treated with endotoxin (0.4 mg) alone. A correlation between altered blood chemistry values and severity of hepatic lesions was demonstrated. These data show in vivo toxic interactions between benzyl alcohol and bacterial endotoxin. In addition, our results indicate that the toxic effects induced by the benzyl alcohol-endotoxin combination are due to an enhancement of the lethal properties of bacterial endotoxin.

Animals↗

Physiology of the potentiation of lethal endotoxin shock by streptococcal pyrogenic exotoxin in rabbits.

Streptococcal pyrogenic exotoxin (SPE) dramatically potentiates the lethal shock induced by gram-negative bacterial endotoxin. To provide further understanding of the mechanism underlying the potentiating effect, the physiological basis for the toxic synergism of the two toxins was investigated. Pretreatment of rabbits with an intravenous (i.v.) dose (10 micrograms/kg of body weight) of SPE greatly enhanced the endotoxin lethality and reduced the 50% lethal dose to less than 5 micrograms of endotoxin per kg. The SPE pretreatment dose caused severe pathophysiological changes in combination with a small i.v. dose of endotoxin (1 microgram/kg). These changes included transient hyperglycemia followed by profound hypoglycemia, elevation of the blood lipoperoxide level, and an acute increase in plasma beta-glucuronidase activity. These changes were comparable with those in animals given a large i.v. dose of endotoxin (100 micrograms/kg) alone. An injection of SPE alone did not alter any of the parameters described above. These results suggest that SPE renders rabbits more sensitive to extensive pathophysiologic effects of endotoxin, and the potentiating effect on endotoxin lethality may thus involve a general potentiation of physiologic failures. The SPE pretreatment depressed the vascular clearance of a large dose of endotoxin (100 micrograms/kg) but failed to affect that of a small dose of endotoxin (1 microgram/kg). The data suggest that the potentiating effect is not readily explained solely on the basis of the decreased clearance of endotoxin.

Animals↗

Inhibition of chemotaxis of neutrophil leukocytes to interleukin-8 by endotoxins of various bacteria.

The effects of endotoxins from various bacteria (Escherichia coli, Klebsiella pneumoniae, Vibrio cholerae, Shigella flexneri, Salmonella typhosa, and Pseudomonas aeruginosa) on chemotaxis of neutrophil leukocytes to formyl peptide and interleukin-8 were tested in an improved chemotaxis assay involving a "sparse-pore" polycarbonate (Nuclepore) membrane in a Boyden-type chamber. The possible chemotactic activity of the endotoxins themselves were tested by the same technique. In addition, the effects of these substances on random motility of neutrophils were tested with a corresponding assay involving similar chambers fitted with membranes of standard pore density. Possible activation of the complement system of serum by each endotoxin was tested with sheep erythrocyte assays and the maximum endotoxin concentration (100 micrograms/ml) used in the chemotaxis and motility assays. All endotoxins inhibited chemotaxis of neutrophils to interleukin-8. No endotoxin affected chemotaxis to formyl peptide or was itself chemotactic for neutrophils. Endotoxin of S. flexneri inhibited random motility of neutrophils, while the others had no such effect. Endotoxins of K. pneumoniae and of P. aeruginosa produced moderate and marked inhibition, respectively, of total complement, as measured by hemolysis of sheep erythrocytes, without affecting the levels of C3c and C4 in these assays. Endotoxins of the other bacteria had no demonstrable effect in any of these assays of complement activation. These results suggest that chemotaxis to interleukin-8 may be mediated by cellular mechanisms different from those involved in chemotaxis to formyl peptide. Furthermore, the presence of these endotoxins could be significant for the suppression of neutrophil accumulation in inflammatory lesions mediated by interleukin-8.

Bacterial Toxins↗

Endotoxin contamination of enzyme conjugates used in enzyme-linked immunosorbent assays.

The specificity of the enzyme-linked immunosorbent assay(s) is thought to depend on the specificity of the antibody used in the assay system. Therefore, the association of broadly reactive antigens like endotoxin with enzyme conjugates or other enzyme-linked immunosorbent assay reagents has the potential of altering the specificity of reactions in the enzyme-linked immunosorbent assay. Using the Limulus amoebocyte lysate assay, we demonstrated that commercially prepared conjugates of goat anti-human immunoglobulin G peroxidase, goat anti-rabbit immunoglobulin G alkaline phosphatase, rabbit anti-human immunoglobulin G, and other enzyme conjugates contained endotoxin. Furthermore, the staphylococcal protein A, horseradish peroxidase, and bovine alkaline phosphatase used to prepare enzyme conjugates also contained endotoxin. Commercially obtained bovine alkaline phosphatase contained as much as 1.0 microgram of endotoxin per ml of enzyme solution. Both commercially prepared enzyme conjugates and those prepared by us contained endotoxin as determined by their absorption to immobilized monoclonal antibody to lipid A or to immobilized Limulus amoebocyte lysate. The results of this study further suggest that the endotoxin was associated with the enzyme component of the conjugate. In a competitive inhibition enzyme immunoassay, 10 micrograms of lipid A per ml inhibited binding of the enzyme conjugate to adsorbed Limulus amoebocyte lysate, thereby confirming that endotoxin mediated the binding of the conjugate in that system. The potential significance of endotoxin bound to enzyme conjugates may be far reaching because of the ubiquity of endotoxin in conjugates and the prevalence of antibodies to endotoxin in mammalian serum.

Alkaline Phosphatase↗

Lactulose inhibits endotoxin induced tumour necrosis factor production by monocytes. An in vitro study.

Preoperative oral treatment with lactulose is used to prevent complications after surgery in patients with obstructive jaundice. The effect is perhaps the result of an inactivation of gut derived endotoxins but the exact mechanism of action is, however, unknown. Tumour necrosis factor is an important mediator of endotoxin toxicity. The cytokine tumour necrosis factor is mainly produced by mononuclear phagocytes. In this study, the effect of lactulose on the endotoxin induced tumour necrosis factor release by monocytes was investigated. The direct effect of lactulose on endotoxin was tested in a chromogenic limulus amoebocyte lysate assay. Polymyxin B a known inactivator of endotoxin was used as control in both experiments. Lactulose has a limited capacity to inactivate endotoxin as measured in the endotoxin assay. In contrast lactulose significantly reduced endotoxin induced tumour necrosis factor production by monocytes. In conclusion lactulose inhibits tumour necrosis factor production by a direct inhibitory effect on monocytes, rather than by inactivation of endotoxin. Because tumour necrosis factor is an important mediator of endotoxin toxicity, this inhibitory effect could explain the beneficial effect of lactulose in obstructive jaundice.

Cells, Cultured↗