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Towards a rational development of anti-endotoxin agents: novel approaches to sequestration of bacterial endotoxins with small molecules.

Endotoxins, or lipopolysaccharides (LPS), present on the surface of Gram-negative bacteria, play a key role in the pathogenesis of septic shock, a common clinical problem and a leading cause of mortality in critically ill patients, for which no specific therapeutic modalities are available at the present time. The toxic moiety of LPS is a glycolipid called 'lipid A', which is composed of a bisphosphorylated diglucosamine backbone bearing up to seven acyl chains in ester and amide linkages. Lipid A is structurally highly conserved in Gram-negative bacteria, and is therefore an attractive target for developing anti-endotoxin molecules designed to sequester, and thereby neutralize, the deleterious effects of endotoxins. The anionic and amphipathic nature of lipid A enables the interaction of a wide variety of cationic amphiphiles with the toxin. This review describes the systematic evaluation of several structural classes of cationic amphiphiles, both peptides and non-peptidic small molecules, in the broader context of recent efforts aimed at developing novel anti-endotoxin strategies. The derivation of a pharmacophore for LPS recognition has led to the identification of novel, nontoxic, structurally simple small molecules, the lipopolyamines. The lipopolyamines bind and neutralize LPS in in vitro experiments as well as in animal models of endotoxicity, and thus present novel and exciting leads for rational, structure-based development of LPS-sequestering agents of potential clinical value.

Animals↗

Outcome following femur fracture and subsequent cecal ligation and puncture in endotoxin-sensitive (C3H/HeN) and endotoxin-resistant (C3H/HeJ) mice.

This study examined the effect of sepsis following trauma in a reproducible model of sepsis--cecal ligation and puncture (CLP)--in endotoxin-sensitive (C3H/HeN) and endotoxin-resistant (CeH/HeJ) mice. Studies used CLP with a 25-gauge needle at different time intervals following injury, as induced by femur fracture (FF), to determine the effects of sublethal sepsis on survival after trauma. There was a 3% mortality for FF alone in both groups. Mortality in C3H/HeJ mice was not significantly increased over FF alone except when CLP followed FF by 3 days (45%, P less than 0.02, Chi-square). In contrast, C3H/HeN mice had significantly increased mortality rates (75 to 90%, P less than 0.001) versus FF alone at all intervals between FF and CLP. Mortality for FF plus CLP was significantly greater for C3H/HeN compared to C3H/HeJ (P less than 0.001) for all time intervals between FF and CLP. In conclusion, animals exposed to a septic episode following FF had significantly greater mortality than FF animals without a septic challenge. Endotoxin-sensitive mice had significantly higher mortality after CLP and significantly increased mortality when CLP followed FF (regardless of timing) compared to endotoxin-resistant mice.

Animals↗

Effects of perioperative parenteral glutamine-dipeptide supplementation on plasma endotoxin level, plasma endotoxin inactivation capacity and clinical outcome.

BACKGROUND & AIMS: We evaluated perioperative plasma endotoxin, plasma soluble CD14 molecule (sCD14), plasma endotoxin inactivation capacity (EIC) changes and clinical outcome after glutamine was provided in parenteral feedings to patients on whom gastrointestinal operations were performed using a prospective, randomized, double-blind study design. METHODS: Forty patients undergoing gastrointestinal operations were randomized into two groups, each had 20 patients. One group received standard parenteral nutrition and the other received the same formulation but supplemented with the dipeptide alanyl-glutamine, the two groups were isonitrogenous. The infusion was started from 1 day before operation to the 3rd day after operation for 5 days. Blood samples were collected on the morning of 1 day before operation, 3h after operation, and on the morning of 1, 4 and 7 days after operation and analyzed for plasma endotoxin level, plasma sCD14 level and EIC. RESULTS: There were no differences between the two groups on plasma endotoxin level. After surgery a rapid reduction in plasma EIC was observed in both groups, a significant restoration of the plasma EIC was observed on the morning of 1 and 4 days after surgery in the study group (0.12+/-0.02 and 0.078+/-0.022 EU/mL, respectively, P < 0.01). A significant rise in plasma sCD14 level was found in the study group on the morning of 1 and 4 days after surgery (14.32+/-1.69 and 10.34+/-1.14 microg/mL, respectively, P < 0.01). Shortened hospital stay was observed in the study group (11.7+/-2.0 days in the control group and 10.6+/-1.2 days on the study group respectively, P = 0.03). CONCLUSION: Perioperative parenteral nutrition supplemented with dipeptide alanyl-glutamine ameliorated postoperative immunodepression without direct effect on endotoxemia.

Adult↗

Inactivation of endotoxin by a humoral component. II. Interaction of endotoxin with serum and plasma.

A humoral substance which inactivates endotoxin in vitro has been shown to be clearly distinguishable from complement, properdin, and specific antibody. For the present, it is designated "endotoxin-detoxifying component" or EDC. Animal species could be grouped in three categories with regard to the EDC activity of their sera; rat serum was highly potent; chimpanzee, dog, horse, and guinea pig sera were much less active; mouse, rabbit, and sheep sera exhibited no activity. The EDC potency of human sera varied widely, ranging from high to barely discernible activity. In contrast to the variations of EDC potency in serum, citrated plasma from all species manifested high potency of about the same magnitude. The influence of time, temperature, pH, and concentration of reactants on the inactivation of endotoxin by EDC was examined. EDC activity in plasma and serum was found to be labile to beating at 56 degrees C. for 1 hour. Bacterial endotoxins, derived by different isolation procedures from smooth and rough Gram-negative species, varied considerably in susceptibility to EDC action.

Animals↗

Comparison of a recombinant endotoxin-neutralizing protein with a human monoclonal antibody to endotoxin for the treatment of Escherichia coli sepsis in rats.

A recombinant endotoxin-neutralizing protein (ENP) from Limulus polyphemus and a monoclonal IgM anti-lipid A antibody (HA-1A) were compared in a rat model of Escherichia coli sepsis. One hour after intraperitoneal challenge with 10(6) cfu of E. coli O18ac K1, animals were sensitized to endotoxin with lead acetate and treated with ENP, HA-1A, or saline, followed by ceftriaxone and gentamicin. Before treatment, 95% of rats had high-grade bacteremia and high serum endotoxin concentrations, which were similar in all treatment groups (P > .60). One hour after treatment, there was no bacterial growth in any blood sample, and endotoxin concentrations were significantly lower in the ENP group than in the HA-1A and saline groups (P < .01). At 24 h after challenge, survival in the ENP group was significantly higher than in the HA-1A saline group (P < .001). ENP improved survival in a rat model of E. coli sepsis with high mortality despite effective antibiotic therapy.

Animals↗

Magnolol alters the course of endotoxin tolerance and provides early protection against endotoxin challenge following sublethal hemorrhage in rats.

The endotoxin tolerance induced by sublethal hemorrhage (SLH) is associated with an initial surge of proinflammatory cytokines such as TNF-alpha. Magnolol, a potent antioxidative herb, is hypothesized to suppress TNF-alpha production after SLH and to alter or attenuate subsequent endotoxin tolerance. A prospective, randomized experimental study was performed. Male Sprague-Dawley rats were randomly segregated into one of four groups. Rats in the Sham/Veh and Sham/Mag groups received a sham operation for SLH and treatment with vehicle or magnolol, respectively. Rats in the SLH/Veh and SLH/Mag groups received SLH and treatment with vehicle or magnolol, respectively. Animals were subjected to endotoxin challenge (EC) at 12, 24, or 36 h after these procedures. Cytokines (TNF-alpha and IL-10), lipid peroxidation, and superoxide dismutase (SOD) activity were measured in lung tissue following SLH. Plasma cytokines were assessed after SLH or EC at different time points, and survival analyses were performed after EC. Plasma and tissue TNF-alpha increased after SLH; this increase was significantly suppressed by magnolol. Additionally, a significant increase in plasma and tissue IL-10 after SLH was observed in the SLH/Mag group. Lipid peroxidation and SOD activity increased after SLH; magnolol suppressed the lipid peroxidation but not the SOD activity. If EC was performed 12 or 24 h after SLH, greater survival with decreased TNF-alpha and increased IL-10 in plasma was observed in the SLH/Mag group. If EC was performed 24 or 36 h after SLH, greater survival with decreased plasma TNF-alpha was observed in the SLH/Veh group. In conclusion, magnolol induces an antiinflammatory response and provides early protection against EC following SLH; however, magnolol attenuates the protraction of endotoxin tolerance and inhibits late protection against EC following SLH.

Animals↗

Gonococcal infection in endotoxin-resistant and endotoxin-susceptible mice.

The role of endotoxin responsiveness in defense against gonococcal infection was studied in endotoxin-resistant (C3H/HeJ) and endotoxin-susceptible (C3H/HeN) mice by using a model of disseminated gonococcal infection (DGI) and a model of gonococcal survival in the female genital tract to determine the ability of the mice to eliminate gonococci. The 50% lethal dose in the DGI model was 10(9.6) for C3H/HeJ mice and 10(5.2) for C3H/HeN mice. Levels of bacteremia during infection indicated the C3H/HeJ mice cleared large numbers of gonococci from their peripheral blood by 24 h post-inoculation but that C3H/HeN mice did not. Additionally, the peritoneal leukocyte response after intraperitoneal inoculation of gonococci was greater in C3H/HeJ mice than in C3H/HeN mice, which suggested that the ability to mount an inflammatory response to endotoxin may be important in defense against DGI. Besides being different in susceptibility to DGI, C3H/HeJ mice were found to be more resistant then C3H/HeN mice to genital colonization by gonococci. The resistance of C3H/HeJ mice to genital colonization by gonococci appeared to be due to both the high numbers of polymorphonuclear leukocytes in the genital secretion and the predominance of inhibitory gram-negative genital flora in that mouse strain.

Animals↗

Detoxified bacterial endotoxins. I. Preparation and biological properties of an acetylated crude endotoxin from Salmonella typhimurium.

Martin, William J. (University of Utah, Salt Lake City), and Stanley Marcus. Detoxified bacterial endotoxins. I. Preparation and biological properties of an acetylated crude endotoxin from Salmonella typhimurium. J. Bacteriol. 91:1453-1459. 1966.-Acetylation of a crude endotoxin prepared by the Roschka-Edwards (RE) procedure from a strain of Salmonella typhimurium yields a product with reduced pyrogenicity in rabbits as well as one which is nontoxic in mice. A reduction in pyrogenicity of approximately 100 times was noted with this acetylated crude endotoxin when compared with the parent RE preparation. A comparison was made of immunogenicity with mice of Boivin, RE, and acetylated Roschka-Edwards (Acet-RE) preparations with a heat-killed, phenol-preserved (HP) vaccine prepared from the same strain of S. typhimurium. Less than pyrogenic doses of all vaccines were not protective. The least pyrogenic preparation (Acet-RE) was immunogenically effective in about five times the minimal pyrogenic dose. The data suggest that the Acet-RE preparation should be considered further in the search for enteric fever vaccines with lowered potential for undesirable systemic responses.

Alkylation↗

Extracellular ubiquitin inhibits the TNF-alpha response to endotoxin in peripheral blood mononuclear cells and regulates endotoxin hyporesponsiveness in critical illness.

Ubiquitin is suggested to play a key role in essential intracellular functions, such as heat shock response, protein breakdown, and regulation of immune responses. Ubiquitin has also been detected in the extracellular space, but the function and biologic significance is unclear. We describe a new function of extracellular ubiquitin and show that extracellular ubiquitin specifically inhibits ex vivo secretion of tumor necrosis factor-alpha (TNF-alpha) and TNF-alpha mRNA expression from peripheral blood mononuclear cells (PBMNCs) in response to endotoxin in a dose-dependent manner. In contrast, the TNF-alpha response to zymosan or Staphylococcus aureus as well as the interleukin-6 (IL-6) and IL-8 responses to endotoxin were unaffected by ubiquitin. Measurement of serum ubiquitin levels showed a significant 5- to 7-fold increase in sepsis and trauma patients, to the level required for inhibition of the PBMNC TNF-alpha response to endotoxin by ubiquitin. Elevated ubiquitin levels in serum were significantly correlated with a reduced TNF-alpha production. Antibodies to ubiquitin were able to (1) significantly increase (2- to 5-fold) the TNF-alpha response to endotoxin in whole blood from trauma and sepsis patients, (2) completely neutralize the inhibitory effect of trauma patients' serum on healthy donors' TNF-alpha production, and (3) partially neutralize the inhibitory effect of sepsis patients' serum on healthy donors' TNF-alpha production. Ubiquitin-depleted serum from trauma patients lost the inhibitory activity for TNF-alpha production, whereas extracted endogenous ubiquitin exerts the inhibitory activity. The results demonstrate that extracellular ubiquitin acts as a cytokinelike protein with anti-inflammatory properties and indicate that extracellular ubiquitin is involved in the regulation of immunodepression in critical illness.

Adult↗

Polymorphonuclear activation in leprosy. I. Spontaneous and endotoxin-stimulated reduction of nitroblue tetrazolium: effects of serum and plasma on endotoxin-induced activation.

Spontaneous nitroblue tetrazolium (NBT) reduction was evaluated in neutrophils from patients with the different types and forms of leprosy, and compared with reduction obtained form cells from normal controls. Leucocytes from the same subjects were stimulated in vitro by endotoxin, and the rise in percentage of cells reducing NBT was determined. Patients of all groups, with the exception of those with reactional lepromatous leprosy (RLL) had an essentially normal proportion of reducing cells. Neutrophils were normally activated by endotoxin. This indicates that while Mycobacterium leprae does not by itself stimulate leucocytes from leprosy patients, there is no overall anergy of neutrophils in lepromatous or other forms of leprosy. In RLL the proportion of reducing cells was significantly raised. Stimulation with endotoxin was able further to enhance this proportion, but not above levels reached by stimulation of normal cells. Neutrophil activation could not be reproduced by mixing serum from highly activated RLL patients with normal leucocytes. An inhibitory effect of serum and plasma over in vitro endotoxin activation of neutrophils was found.

Endotoxins↗

Endotoxin and anti-endotoxin antibodies in the prognosis of acute pancreatitis.

AIMS: We investigate the behaviour of endotoxin in patients with acute pancreatitis and its relationship with the development of complications. EXPERIMENTAL DESIGN: Prospective study. PATIENTS: We assessed plasmatic endotoxin and anti-core endotoxin antibodies (EndoCab IgG and IgM) levels on first and third days from admission in patients with acute pancreatitis episodes, classifying them as mild or severe according to Atlanta's criteria. RESULTS: Nineteen patients were included, seven with severe pancretitis (36.8%) and twelve with mild pancreatitis (63.2%). Endotoxin levels were similar on first day in both mild and severe pancreatitis, and higher in the latter on third day (p > 0.05). Patients with severe pancretitis had lower EndoCab IgM levels on first and third days from admission (day 1: 18.3 vs 33.3 MU/ml, p < 0.01; day 3: 18.4 vs 33.4 MU/ml, p < 0.05). When analysed separately systemic and local complications, we observed, in the same days, a decrease of EndoCab IgM levels in patients who developed systemic complications (day 1: 18.3 vs 32.7 MU/ml, p = 0.01; day 3: 18.3 vs 35.1 MU/ml, p < 0.01). EndoCab IgG levels were also lower in severe acute pancreatitis in both determinations, but differences weren't significant. CONCLUSIONS: EndoCab levels decrease early in severe acute pancreatitis, mainly if systemic complications are present. This antibody depletion is greater for IgM than IgG, and seems to occur earlier than an increase in endotoxemia.

Acute Disease↗

Measurement of endotoxin. I. Fundamental studies of radioimmunoassay of endotoxin.

A method for estimating endotoxin by radioimmunoassay was recently introduced. The present paper describes improvements in the speed and sensitivity on this endotoxin measurement. Antigen was purified from E. coli O111: B4 (B) lipopolysaccharide by centrifugation and dialysis. Purified anti-endotoxin antibody was prepared from immunized rabbit serum. A radioimmunoassay system was established with the antigen and antibody. Dextran-coated charcoal was used to separate the antibody-bound antigen from free antigen. Experimental studies were also performed on possible factors related to the antigen-antibody reaction. Accurate measurements on quantities as low as 100 pg/ml (10ng/ml in the plasma) were performed by the dextran-coated charcoal method, and the reaction time was reduced to 2 hr at 4 degrees C. This new method does not require strict sterilization or aseptic handling, and therefore is quite practical for quantitative measurements of endotoxin.

Animals↗

Endotoxin receptor site. I. Binding of endotoxin to platelets.

Binding of bacterial endotoxin to platelets, erythrocytes, lymphocytes and granulocytes was examined by using diffusion dialysis. Platelets, erythrocytes, lymphocytes and granulocytes were fractionated from normal human blood and the binding of endotoxin (LPS: Lipopolysaccharide of E. coli) to each cell fraction was measured at 4 degrees C and the binding efficiency was expressed as a binding index (%d4degreesC +/- SD). The binding index for each cell fraction was as follows; 10.2 +/- 1.6 for platelets, 1.0 +/- 0.9 for erythrocytes, 4.3 +/- 1.6 for lymphocytes and 10.0 +/- 1.5 for granulocytes (n = 11) respectively. Since a platelet possesses a small cell surface area compared with other cells, it was clear that the endotoxin bound preferentially to platelets in vitro. The binding mechanism to the platelet cell surface was suggested to be direct binding of endotoxin to the receptor on platelet cell membrane rather than through an immunologically activated mechanism.

Blood Platelets↗

[Detection of endotoxins in radiopharmaceutical preparations--I. Comparison of rabbit hyperthermia after intravenous or intrathecal administration of reference endotoxin preparations].

The rise of the rabbit internal temperature after endotoxin injection is related to the route of administration. A rise of 1.71 +/- 0.411 degrees C is obtained after i.v. injection of 1 ng/kg Escherichia coli 0111.B.4 endotoxin. An increase of 1.93 +/- 0.236 degrees C is obtained after suboccipital intrathecal injection of 0.1 ng/kg of the same endotoxin; with the intrathecal route, the hyperthermia is induced by E. coli endotoxin after a dose ten times lower than with i.v. injection as shown by statistical analysis.

Animals↗

Effect of endotoxin and radio-detoxified endotoxin on cell membranes in vitro.

The effect of parent lipopolysaccharide (LPS) and radio-detoxified endotoxin (rdLPS) on various human blood cell membranes proved to be different as detected by 3H-concanavalin A-binding technique in vitro. The lectin-binding ability of erythrocyte membranes did not change upon treatment by either endotoxin, whereas that of lymphocytes was stimulated by LPS at 10-50 micrograms/ml concentration as well as by rdLPS at the lowest dose applied, i.e. 0.1 micrograms/ml. The LPS-treated platelets bound 3H-concanavalin A less than did the untreated controls; on the other hand, the rdLPS did not change the lectin-binding surface of these cells. The affection by radiation of cell membranes could be prevented by pretreatment with endotoxins. This fact, however, could not be considered a radioprotective effect. The micromorphological investigations by scanning electron microscopy (SEM) support our data concerning the functional alterations of plasma membranes of platelets and lymphocytes after LPS and rdLPS treatment as well as after the combined effect of endotoxin pretreatment and X-irradiation, since a severe smoothening of the cell surface could be observed.

Blood Platelets↗

Effect of endotoxin on rat liver. Analysis of acid phosphatase isozymes in the liver of normal and endotoxin-treated rats.

Lysosomal enzymes in parenchymal and sinusoidal cells in rat liver were sequentially studied following administration of endotoxin and correlated with fine structural changes in liver cells. In normal rat liver, there are three types of acid phosphatase isozymes, two present only in parenchymal cells and the other specifically in sinusoidal cells. The parenchymal acid phosphatase isozymes hydrolyze preferentially AMP and CMP, while the sinusoidal isozyme hydrolyzes phenylphosphate. After an intraperitoneal injection of an LD50 dose of endotoxin, the activity of the sinusoidal acid phosphatase isozyme reached a maximum at 1 hour, and was followed by an elevation of the activity of the isozymes derived from parenchymal cells. Within 1 hour after the injection, morphologic changes were most prominent within sinusoids, including swelling of the Kupffer cells and accumulation of polymorphonuclear leukocytes, platelets, and fibrin clumps on and around the Kupffer cells. Degenerative changes in parenchymal cells were observed following the initial reactions within sinusoids. The results of the present study are compatible with the hypothesis that the hepatic parenchymal cell damage induced by endotoxin is mediated by the initial changes within sinusoids, rather than by the direct aciton of endotoxin on the parenchymal cells.

Acid Phosphatase↗

[The Endotoxin Reference Standard of the National Institute of Health Sciences (the Japanese Pharmacopoeia Endotoxin Reference Standard) (Control 971)].

The third lot (Control 971) of the Endotoxin Reference Standard of the National Institute of Health Sciences (the Japanese Pharmacopoeia Endotoxin Reference Standard) was prepared. The potency of the new lot was assayed against USP Endotoxin Reference Standard (EC-6) and defined as containing 13,000 endotoxin units (EU) per vial by a collaborative study of 7 laboratories.

Endotoxins↗

Effect of endotoxin-induced shock on the reticuloendothelial system. Phagocytic activity and DNA-synthesis of reticuloendothelial cells following endotoxin treatment.

There was a marked decrease in the RES phagocytic activity during the first 12 hours after injection of high concentrations of endotoxin in rats. Phagocytic activity then increased considerably, reaching maximum values on days 3 to 5 and it was still higher than in control animals 20 days later. Parallel studies on 3H thymidine incorporation showed a significant increase in the rate of DNA-synthesis of reticulum cells of the liver during the 5 days period following endotoxin injection. Peak values were obtained on day 2 when the number of labelled cell were 50 times higher than in the controls. A likely reason for the increased DNA-synthesis is a repair of RES following endotoxin induced damage but it may also represent an endotoxin induced proliferation of reticulum cells that may at least partly account for the enhanced phagocytic activity.

Animals↗