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Inhibition of ascorbic acid uptake by endotoxin: evidence of mediation by serum factor(s).

The effect of bacterial endotoxin on the ascorbic acid uptake by 3T6 fibroblasts was studied. Endotoxin inhibited ascorbic acid uptake by fibroblasts in a dose dependent manner. The inhibition by endotoxin takes place only in the presence of unheated serum; decomplementing serum by heat inactivation at 56 degrees C for 30 minutes eliminates endotoxin's inhibitory effect on ascorbic acid uptake. The effect of endotoxin appears to be instantaneous since the inhibition seen in the cells without any preexposure was similar to the cells preexposed to endotoxin for up to 6 hours. Polymyxin B sulfate which is known to bind the lipid A portion of endotoxin did not reverse the inhibition of ascorbic acid uptake caused by endotoxin.

Animals↗

Endotoxin activation of macrophages does not induce ATP release and autocrine stimulation of P2 nucleotide receptors.

Receptors for extracellular nucleotides (P2, or purinergic receptors) have previously been implicated in the transduction of endotoxin signaling in macrophages. The most compelling evidence has been the observation that inhibitors of ionotropic nucleotide (P2X) receptors, including periodate-oxidized ATP (oATP), attenuate a subset of endotoxin-induced effects such as activation of NF-kappaB and up-regulation of inducible NO synthase. We investigated whether endotoxin induces ATP release from a murine macrophage cell line (BAC1.2F5) using sensitive on-line assays for extracellular ATP. These cells constitutively released ATP, producing steady-state extracellular concentrations of approximately 1 nM when assayed as monolayers of 10(6) adherent cells bathed in 1 ml of medium. However, the macrophages did not release additional ATP during either acute or prolonged endotoxin stimulation. In addition, cellular ecto-ATPase activities were measured following prolonged endotoxin activation and were found not to be significantly altered. Although oATP treatment significantly attenuated the endotoxin-induced production of NO, this inhibitory effect was not reproduced when the cells were coincubated with apyrase, a highly effective ATP scavenger. These results indicate that activation of macrophages by endotoxin does not induce autocrine stimulation of P2 nucleotide receptors by endogenous ATP released to extracellular compartments. Moreover, the data suggest that the ability of oATP to interfere with endotoxin signaling is due to its interaction with molecular species other than ATP-binding P2 receptors.

Adenosine Diphosphate↗

Endotoxins of enteric pathogens are chemotactic factors for human neutrophils.

Early activation of human peripheral blood polymorphonuclear neutrophils is characterized by their morphological changes from spherical to polarized shapes. The endotoxins from enteric pathogens (S. dysenteriae type 1, V. cholerae Inaba 569B, S. typhimurium, and K. pneumoniae) were assessed by their ability to induce morphological polarization of the neutrophils as measures of early activation. Phagocytic activity, adhesion, chemokinetic locomotion, and nitroblue tetrazolium (NBT) dye-reduction ability measured the later activation of the cells. Neutrophils showed distinct morphological polarization in suspension over a wide range of concentrations of these endotoxins when were compared with those that were induced by the standard chemotactic factor, N-formyl-L-methionyl-L-leucyl-L-phenylalanine (FMLP). It was discovered that all of the endotoxins induced locomotor responses in neutrophils in suspension that were dose- and time-dependent. The optimum concentration for the endotoxins of S. dysenteriae, V. cholerae, and K. pneumoniae was 1 mg/ml in which 71, 69, and 66% of the neutrophils were polarized. However, the S. typhimurium dose was 2 mg/ml in which 50% of the cells responded. Neutrophils that were stimulated with endotoxins also showed increased random locomotion (p<0.005) through cellulose nitrate filters, but an enhanced adhesion of the cells to glass surfaces (p<0.03). These are important functions of these cells to reach and phagocytose damaged cells, as well as invading microorganisms. Interestingly, the endotoxins had a highly-significant inhibitory effect upon the proportions of neutrophils phagocytosing opsonized yeast (p<0.01) with a small number of yeast that were engulfed by the cells (p<0.02). Further, endotoxin-treated cells showed an enhanced ability to reduce NBT dye (p<0.03). Therefore, we concluded that endotoxins of enteric pathogens are neutrophil chemotactic factors.

Cell Adhesion↗

Enhancement by lead acetate of body weight-decreasing activity of endotoxin: quantitative comparisons of some administration methods of lead acetate.

The body weight-decreasing effect of sublethal doses of endotoxin was enhanced in mice administered with such an amount of lead acetate that had no effect by itself on body weight. The enhancing effects of administration of lead acetate prior to, simultaneously with and after endotoxin administration were analyzed and compared by statistical methods. Linear dose-response relation between logarithmic doses of endotoxin and body weight-decreasing responses was obtained over a wide range of endotoxin doses with a constant dose of lead acetate. The non-parallelism between two dose-response lines obtained in lead acetate-treated and control mice was not denied. The relation of the two lines indicated that the more minute the dose of endotoxin, the more intense the enhancing effect of lead acetate appearing in the treated mice within certain limits of minute doses of endotoxin. These results were common in the three administration methods of lead acetate and can be applied to detection of minute doses of endotoxin. It was suggested that the pre-administration method of lead acetate was more suitable for detection of endotoxin than the other methods.

Animals↗

Effect of acute ethanol administration on the intestinal absorption of endotoxin in rats.

BACKGROUND: Endotoxin has been implicated in the pathogenesis and progression of alcoholic liver disease. Not only inactivation of reticuloendothelial function, which reduces clearance of endotoxin, but also an increase in absorption of endotoxin from the intestine may be involved in mechanisms of ethanol-induced endotoxemia. However, it is unclear how ethanol affects absorption of endotoxin from the intestine in vivo. METHODS: We gave 10 mg/kg of lipopolysaccharides to rats with water (group 1), 5% ethanol (group 2), or 20% ethanol (group 3) using an intubation tube to the stomach. Blood samples were collected and plasma endotoxin levels were measured. We used fluorescence spectrophotometer to examine permeability of the gut to macromolecules (fluorescein isothiocyanate-dextran; 4,000 Da [FD4] or 20,000 Da [FD20]). RESULTS: Plasma endotoxin levels were not different between group 1 (9 +/- 2 pg/ml) and group 2 (14 +/-3 pg/ml), whereas they significantly increased in group 3 with a peak at 60 min (87 +/- 35 pg/ml). Acute ethanol administration did not affect clearance of endotoxin in rats. Hemorrhagic erosions of the proximal small intestine with epithelial cell loss were observed in group 3 at 4 hr, but no significant histological change was observed at 30 min by light microscopy. Acute ethanol administration (20%) increased the permeability of the small intestine to FD4 and FD20 in 30 min when no hemorrhagic erosions of the proximal small intestine with epithelial cell loss were observed. CONCLUSIONS: Acute ethanol administration increases intestinal permeability before pathological changes are revealed by light microscopy. Acute ethanol ingestion, especially at high concentrations, facilitates the absorption of endotoxin from rats' small intestine via an increase in intestinal permeability, which may play an important role in endotoxemia observed in alcoholic liver injury.

Animals↗

Multi-cellular activation in vivo by endotoxin in humans--limited protection by adenosine infusion.

The influence of adenosine infusion (40 microg/kg/min for 4 h) on inflammatory and hemostatic parameters was investigated in healthy males without (n = 10) or with (n = 11) intravenous endotoxin injection (4 ng/kg). Without endotoxin, adenosine elevated circulating leukocytes and circulating platelet-leukocyte aggregates. Endotoxin activated platelets and leukocytes in vivo. Platelet activation was seen as slightly increased platelet P-selectin expression, decreased platelet counts, and elevated plasma soluble P-selectin (from 39.6 +/- 3.4 to 68.9 +/- 6.6 ng/ml, P<0.01). Leukocyte activation was evidenced by increased CD1 lb expression (from MFI of 0.54 +/- 0.02 to 2.21 +/- 0.17; P<0.01) and plasma elastase levels (from 25.3 +/- 2.5 to 169.3 +/- 22.5 ng/ml: P <0.01). Endotoxin also enhanced platelet and leukocyte responsiveness to in vitro stimulation. Endotoxin induced von Willebrand factor secretion (from 92 +/- 8 units to 265 +/- 19 units at 4 h; P <0.001) and enhanced thrombin generation in vivo. Endotoxin induced leukocytosis and thus increased circulating platelet-leukocyte, mainly platelet-neutrophil, aggregates. Adenosine caused slight attenuation of platelet reactivity to agonist stimulation, enhanced the endotoxin-induced leukocytosis, and detained more platelet-leukocyte aggregates in circulation, but did not attenuate endotoxin-induced neutrophil elastase secretion, von Willebrand factor secretion, or thrombin generation. Thus, endotoxemia induces multi-cellular activation in vivo. Adenosine inhibits leukocyte adhesion and extravasation, and mildly attenuates platelet responsiveness and soluble P-selectin release. Adenosine has the potential of becoming a therapeutic antiinflammatory drug, but an optimal treatment strategy needs to be developed.

Adenosine↗

The interaction between Newcastle disease virus and Escherichia coli endotoxin in chickens.

The interaction between Newcastle disease virus (NDV) and Escherichia coli endotoxin was studied in cell cultures, embryonated chicken eggs, and 8-wk-old chickens. These interactions were evaluated according to the induction of specific or nonspecific resistance in the host system and the virus titer produced in both chicken embryos and chickens. The endotoxin of E. coli induced a decrease in the size of the bursa of Fabricius in live chickens. Escherichia coli endotoxin given intravenously induced plasma antiviral activity in chickens that was interpreted to be interferon, as detected in a vesicular stomatitis virus plaque reduction assay. Endotoxin failed to produced toxic effects in the chicken embryo fibroblasts (CEFs) or to result in any antiviral effect because no change was noted in the number of NDV plaques formed in CEF cultures. When endotoxin was given 3 days before NDV exposure in chickens, the virus titers were significantly (P < 0.05) decreased from a peak of 10(2) to 10(0.18), 10(2.5) to 10(0.18), and 10(2.5) to 0 in the spleens, lungs, and kidneys, respectively, at 72 hr post-NDV inoculation. When endotoxin was given 24 hr after NDV inoculation, the NDV titer significantly (P < 0.05) increased from 10(2.0) to 10(3.5), 10(2.5) to 10(6.5), 10(2.5) to 10(4.5), 0 to 10(2.5) in the spleen, lungs, kidneys, and liver, respectively, at 72 hr after NDV inoculation. In chicken sera, hemagglutination inhibition (HI) titer to NDV was significantly (P < 0.05) enhanced from 1164 to 3127 when endotoxin was given prior to virus inoculation. However, there was a decrease in HI to NDV from 1164 to 727 without a significant difference in chicken sera when NDV was given prior to endotoxin inoculation.

Animals↗

[The time course and tissue distribution of endotoxin in rats after thermal injury].

OBJECTIVE: To observe the time course and tissue distribution of endotoxin, and to evaluate the potential role of local endotoxin in mediating multiple organ damage following burns. METHODS: Wistar rats were subjected to a 35 percent full-thickness scald injury. They were grouped according to time of sacrifice: no burn, and 12, 24, 48, 72 hours postburn. Tissue specimens from liver, kidneys, lungs and intestine were aseptically harvested to determine tissue endotoxin levels. In addition, blood samples were obtained for measurement of organ function parameters. RESULTS: It was found that endotoxin levels in liver, spleen and lungs increased markedly after thermal injury, with the highest level in liver. Meanwhile, serum GPT, GOT, CK-MB levels, and pulmonary myeloperoxidase(MPO) activities markedly elevated after scald injury, reaching a maximum between 12 and 24 hours. Intestinal diamine oxidase(DAO) activities tended to decrease at various time points postburn. In addition, there were highly positive correlations between pulmonary endotoxin levels and MPO activities, and also between renal endotoxin levels and serum Cr values. CONCLUSION: Burn injury per se can result in gut-derived endotoxin translocation which is mainly distributed to the liver, spleen and lungs. Endotoxin accumulated in local sites may play an important role in mediating multiple organ damage secondary to major burns.

Animals↗

A quantitative in vitro assay for detecting biological activity of endotoxin using rabbit peripheral blood.

The pyrogen test or the endotoxin test has been playing a crucial role in detecting endotoxin in parenteral drugs. The current test methods, however, have disadvantages such as requiring a relatively high number of animals or an inadequacy in direct evaluation of in vivo activity. We made an attempt to establish a new in vitro assay method that can overcome the shortcomings of the current assay methods. We standardized the system of tumor necrosis factor-alpha (TNF-alpha) induction from the peripheral blood of rabbits for assaying endotoxin activity. This in vitro assay showed a linear dose-response regression between 0.1 and 5.0 endotoxin units per milliliter of endotoxin and a definite homogeneity of variance by logarithmically transforming the endotoxin and TNF-alpha concentrations in the reaction mixtures at 5 h of incubation at 37 degrees C. The assay showed a definite correlation with the pyrogen test but not with the endotoxin test when endotoxins from various bacteria were tested.

Animals↗

The effects of infusion of thrombin or endotoxin in rabbits treated with cortisone.

Rabbits treated for 4 days with cortisone to prepare for the generalized Shwartzman reaction (GSR) were infused with thrombin or endotoxin. Whereas endotoxin induced the GSR, infusion of from 120--400 U/kg of thrombin over 1 to 2 1/2 hr failed to induce the GSR. Mean values for fibrinogen consumption after thrombin or endotoxin, calculated from changes in plasma fibrinogen concentration and plasma 125I-fibrinogen radioactivity, were as follows: for rabbits infused with thrombin, from 43 to 61 mg/kg over a 3 hr period; for rabbits infused with endotoxin, 58.5 mg/kg over a 6 hr period. A small peak of non-clottable protein radioactivity, indicative of secondary fibrinolysis, was found in animals infused with thrombin but not in animals infused with endotoxin. A striking late rise in plasma fibrinogen levels was noted in animals infused with endotoxin. It was not noted in animals infused with thrombin. This observation provides further evidence that endotoxin stimulates fibrinogen synthesis by mechanisms independent of intravascular clotting or fibrinolysis. The failure to produce the GSR with thrombin in cortisone-treated rabbits leads us to conclude that depression of reticuloendothelial cell clearance of fibrin can not account for the preparatory effect of cortisone for the GSR after endotoxin.

Animals↗

Cardiovascular actions of NG-methyl-L-arginine are abolished in a canine shock model using high-dose endotoxin.

This study was designed to test the hypothesis that endotoxin-induced hypotension is caused, in part, by increased endothelial synthesis of nitric oxide and that inhibition of nitric oxide synthesis with NG-monomethyl-L-arginine (NMA) would reverse the cardiovascular actions of endotoxin. A high dose of endotoxin (1.5 mg/kg, i.v.) was administered by rapid intravenous infusion to pentobarbital-anesthetized dogs. Endotoxin caused rapid and profound reductions in cardiac output and mean arterial pressure; systemic vascular resistance, however, was unaltered except for a transient increase. Coronary and mesenteric blood flows were reduced. NMA (30 mg/kg, i.v.) given 60 min after endotoxin administration, had no significant effect on cardiac function or systemic vascular function except for a transient increase in cardiac output and decrease in systemic vascular resistance. This same dose of NMA given to dogs not receiving endotoxin caused systemic vasoconstriction, increased arterial pressure and decreased cardiac output. These results suggest that increased nitric oxide production is not a primary factor causing endotoxin-induced hypotension and that nitric oxide does not modulate vascular tone following administration of high doses of endotoxin.

Animals↗

[Dynamic variability of intestinal flora and endotoxin in rat with fulminate hepatic failure].

OBJECTIVE: To investigate the dynamic variability of intestinal flora and endotoxins in rats with fulminate hepatic failure. METHODS: Establishing the fulminate hepatic failure models by intraperitoneal injection of Galactosamine. Forty Sprague-Dawley rats were divided into three groups: group A (n=10) were killed at the beginning of the experiment as control; while Group B (n=12) and C (n=18), the fulminate hepatic failure models, were killed 24 and 48 hours respectively after successful induction. Then, the contents of the jejunum, ileum and colon descendents were collected and a quantitative analysis was made about intestinal flora. Meanwhile, the concentrations of endotoxin in portal vein and right ventricle were determined and so were those in contents of ileums and colons. RESULTS: Our experiments showed that the livers of rats in group B were injured most seriously among three groups, and a minor recovery of hepatic function was observed in group C with the decrease of total bile acids (P< 0.05). Analysis on intestinal flora show: the intestinal enterobacteriacea increase and the lactobacillus decrease in group B (P< 0.01 in jejunum and ileum and P<0.05 in colon). The comparisons between group C and B showed that the enterobacteriacea in the former decreased in both jejunum and colon (P< 0.05) while the number of lactobacillus recovered in the jejunum of group C (P<0.05). Quantitative analysis on endotoxins showed that the ileum endotoxin increased in group B (P< 0.05) and in group C, endotoxins in ileum and colons also increased (vs. control, P<0.01); portal endotoxin in group B showed higher level than that in group A and C (P< 0.01). CONCLUSION: The alteration of intestinal flora was observed in fulminate hepatic failure rats. Abnormal intestinal flora might lead to incline of endotoxin in ileum, colon and portal vein, while the recovery of normal intestinal flora would decrease the level of portal endotoxin.

Animals↗

Inhibition of biological effects of endotoxins by phenothiazines.

The importance of change transfer reaction involving endotoxins of bacteria and interactions between endotoxin-induced tumor necrosis factor (TNF) were investigated both in vitro and in vivo in the presence of several phenothiazines. Complex formation between endotoxins and ring-substituted phenothiazines, benzodiazepines, amantadine and promethazine was measured using spectrophotometric methods. The endotoxin-induced hypotensive effect was prevented by phenothiazine pretreatment of the dogs; however, the endotoxin-phenothiazine complex had the same effect as the endotoxin itself. The tumor necrosis factor-inducing ability of endotoxin in human monocytes was prevented by promethazine. The TNF induction by endotoxin was inhibited by promethazine in vivo.

Amantadine↗

Bacteriologic and endotoxin analysis of salvaged blood used in autologous transfusions during cardiac operations.

Autologous blood transfusion is a common method of reducing the need for heterologous blood transfusion during cardiac operations. Recently we investigated an outbreak of severe, nonsurgical postoperative bleeding among patients undergoing heart operations and receiving intraoperative transfusion of blood from a cell conservation device (Cell Saver System, Haemonetics Corp., Braintree, Mass.). As a result of this investigation, we conducted a prospective study to determine if bacterial or endotoxin contamination of the blood collected in the Cell Saver System and used for reinfusion during heart operations contributes to postoperative bleeding complications. Patients' blood samples were collected immediately before operation, at the end of cardiopulmonary bypass, 1 hour postoperatively, and from the Cell Saver System. All blood samples were cultured for bacteria, and all plasma samples were assayed for endotoxin. Preoperatively all patients having heart operations were without signs of infection, 33 of 37 blood cultures taken were negative, and none of the plasma samples had detectable endotoxin. After discontinuance of cardiopulmonary bypass but before delivery of blood from the Cell Saver System, bacteria and endotoxin were detected in 11 of 36 (30.6%) and five of 35 (14.3%) of the patients' blood samples, respectively. The blood aspirated from the open chest and collected by the Cell Saver System was culture positive in 30 of 31 (96.8%) samples, and seven of 29 (24.1%) contained endotoxin. One of 28 blood samples collected 1 hour postoperatively was culture positive, and five of 25 samples contained endotoxin. Of 61 total microorganisms isolated, 50 (82%) were coagulase-negative staphylococci, four (6.6%) aerobic diphtheroids, five (8.2%) anaerobic "diphtheroids" (Propionibacterium acnes), and two (3.2%) gram-negative bacilli. Plasma endotoxin concentrations ranged from 10 to 765 pg/ml. No signs of endotoxemia or unusual bleeding were observed intraoperatively or postoperatively in any of the 38 patients. Although blood collected in the Cell Saver System and used for reinfusion during heart operations often was contaminated with gram-positive bacterial commensals of the skin and low concentrations of endotoxin, no adverse effects were noted in the patients.

Bacteria↗

Vaccination of turkeys with cell-free culture filtrate of Pasteurella multocida: effects of ultrafiltration and endotoxin removal.

Cell-free culture filtrate (CCF) of Pasteurella multocida strain R44/6 (serotype 3/4/9/12) was fractionated by ultrafiltration into fractions of less than 10,000, greater than 10,000, greater than 30,000, and 10,000 to 30,000 molecular weight (MW). The less-than-10,000-MW fraction contained little endotoxin comparable to bacteriologic medium; the 10,000-to-30,000-MW fraction had a moderate amount of endotoxin, whereas the greater-than-10,000- and greater-than-30,000-MW fractions contained high levels of endotoxin. Following ultrafiltration, each fraction, except the less-than-10,000-MW fraction, was divided into two equal parts, and endotoxin was removed from one part. Turkeys were vaccinated with the various MW fractions of CCF, with and without endotoxin, via the air sacs at 6 and 9 weeks of age and compared with negative controls given bacteriologic medium and positive controls vaccinated with a commercial bacterin. Before oral challenge with strain P-1059 (serotype 3) at 12 weeks of age, antibody titers were detected only in positive control turkeys. Protection against challenge, as measured by post-challenge mortality and body-weight gain, was provided by the greater-than-10,000-, greater-than-30,000-, and 10,000-to-30,000-MW fractions containing endotoxin and the commercial bacterin. Turkeys that had been vaccinated with bacteriologic medium and the four different fractions without endotoxin were not protected. Results indicated that endotoxin in CCF of P. multocida is critical in protecting turkeys from pasteurellosis.

Air Sacs↗

Airborne endotoxin in different background environments and seasons.

Endotoxin is a cell wall component from Gram-negative bacteria, and inhaled endotoxin contributes significantly to the induction of airway inflammation and dysfunction. Background levels of endotoxin have not yet been extensively described. In this study, airborne endotoxin was measured with a standardized protocol in 5 types of background environment (169 samples) in Denmark from October to May. Endotoxin levels in a greenhouse (median = 13.2 EU/m3) were significantly higher than in the other environments. The air from biofuel plants (median = 5.3 EU/m3), the air on congested streets (median = 4.4 EU/m3) and on an agricultural field (median = 2.9 EU/m3) had higher endotoxin contents than the air in industrial areas (median = 1.3 EU/m3) or in towns (median = 0.33 EU/m3). Levels in industrial areas were significantly higher than in towns. A literature study revealed background levels of endotoxin on different continents between 0.063-410 EU/m3, with median or mean values between 0.063-3.6 EU/m3. Endotoxin concentrations in towns and industrial areas were higher in April and May than in autumn and winter, and were higher in October than in winter. These data of exposure in background environments and of seasonal variation are helpful for public health practitioners, epidemiologists and industrial hygienists.

Agriculture↗

Endotoxin enhances the expression of monocyte prothrombinase activity.

Thrombin is generated on the surface of mononuclear cells (MNCs) through the assembly and function of the prothrombinase complex consisting of the enzyme factor Xa, the cofactor/factor Va, calcium ions, and an appropriate membrane surface for proper assembly of the protein constituents. Assays performed in the presence of factors Va and Xa indicated that endotoxin significantly enhanced the prothrombinase activity (1.5- to 2.5-fold; P less than .001) expressed by MNCs in a dose- and time-dependent manner. Monocytes present in the MNC suspensions were responsible for this increased activity through processes resulting in both enhanced cellular activity and the enhanced release of membranous vesicles. Endotoxin was without effect on the expression of lymphocyte prothrombinase activity. Scanning electron microscopy techniques indicated that endotoxin resulted in extensive membrane blebbing of the monocytes present in the MNC suspensions with no effect on the morphology of the lymphocytes. Within 5 hours, endotoxin maximally enhanced the prothrombinase activity expressed by the monocyte membrane surface 2.8-fold, whereas 8 hours was required to maximally enhance the activity associated with the released vesicles by twofold. The observed increase in activity expressed by the monocyte membrane surface was due solely to endotoxin, since the activity expressed by the unstimulated monocyte membrane surface remained unaltered over time. In contrast, cell vesiculation, which occurred in the absence of any stimulus, was further enhanced by endotoxin. The increase in activity associated with the released vesicles from both stimulated and unstimulated cells paralleled an increase in the vesicle number as determined by flow cytometric analyses. The vesicle released from both unstimulated and stimulated monocytes were indistinguishable in size as determined by image analysis and ranged between 0.05 and 0.3 microns in diameter. 2-Deoxy-D-glucose (2DG) significantly enhanced the prothrombinase activity expressed by the monocyte membrane surface, as well as the released vesicle fraction, when used alone or in addition to endotoxin. The enhanced activity associated with the vesicle fraction again was attributed to the release of more vesicles. In contrast, cycloheximide decreased the prothrombinase activity expressed by the monocyte membrane surface, as well as the activity associated with vesicles released from both stimulated and unstimulated cells. These data suggest that the expression of monocyte prothrombinase activity can be significantly enhanced by endotoxin through processes that alter the monocyte membrane surface and augment the vesiculation process. Both processes appear to be regulated by protein synthesis and adenosine triphosphate (ATP)-dependent mechanisms.

Blood Proteins↗

Detection of endotoxin in triglyceride-rich lipoproteins in vitro.

Numerous investigations have been performed in which volunteers have received infusions of triglyceride-rich lipoproteins without apparent screening of the infusates for bacterial endotoxin. This study was designed to examine the capacity of triglyceride-rich lipoproteins to mask their endotoxin content in vitro as measured by a chromogenic modification of the standard Limulus assay. Lipoproteins and lipoprotein-deficient plasma were isolated from normal human plasma by sequential ultracentrifugation under apyrogenic conditions. Individual lipoproteins and a synthetic lipid emulsion were suspended in 10% lipoprotein-deficient plasma. Samples were then incubated at 37 degrees C for 4 hours with increasing concentrations of E. coli (055:B5) endotoxin and assayed for detectable endotoxin activity. The capacity to inhibit detection of endotoxin in 10% lipoprotein-deficient plasma was significantly increased (10 to 100 times) by the addition of VLDL (1.0 mg triglyceride/ml), chylomicrons (1.0 mg triglyceride/ml), or the synthetic lipid emulsion (2.5 mg triglycerides/ml). These data demonstrate that triglyceride-rich lipoproteins, and the synthetic lipid emulsion, can markedly inhibit the detection of endotoxin by the Limulus assay in vitro. In addition to the potential of harm to experimental subjects, infusion of endotoxin could vitiate kinetic studies by direct alteration of lipoprotein metabolism and by inducing changes in hepatic blood flow. Thus experimental protocols that involve the infusion of humans with triglyceride-rich lipoproteins should include detailed testing for the presence of endotoxin.

Chylomicrons↗