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Effect of estradiol on endotoxin-induced changes in steroid hormone levels and lethality in male rats.

We examined the effect of exogenous estradiol on the changes in serum steroid hormone levels induced by a nonlethal dose of Escherichia coli endotoxin in male rats and the deaths due to nonlethal and lethal doses of endotoxin. Injection of estradiol 5 min before a nonlethal dose of endotoxin changed the serum sex steroid hormone response of male rats to endotoxin. The serum estrogen concentrations of estradiol + endotoxin-treated rats decreased by 50% (P < 0.001), while those of the endotoxin-treated rats increased (2- to 5-fold). The serum androgen concentrations of estradiol + endotoxin-treated rats did not change significantly, while those of endotoxin-treated rats dropped to 30-40%, P < 0.001. Exogenous estradiol also appeared to influence the percentage of endotoxin-induced deaths in a dose-dependent manner. It reduced the number of deaths induced by nonlethal (2 mg/kg) dose of endotoxin but increased the number of deaths induced by a highly lethal dose (8 mg/kg). These results, together with the known relationships between estrogen and the immune response, suggest that estrogens affect the course of septic shock in a complex fashion and may have either protective or deleterious effect.

Androgens↗

A clinical study on the effects of pulsatile cardiopulmonary bypass on the blood endotoxin levels.

Levels of endogenous endotoxins have been reported to increase after cardiopulmonary bypass. Endotoxin levels have also been implicated in multiple organ failure and may contribute to the immunocompromised state seen after bypass. We evaluated the effects of pulsatile cardiopulmonary bypass circulation on endogenous endotoxin levels. The study population consisted of 15 consecutive adult patients who underwent cardiac operations with cardiopulmonary bypass. Pulsatile flow was used during aortic crossclamping in eight patients (group I) and nonpulsatile flow was used in the remaining seven patients (group II). Changes in blood endotoxin levels were monitored during aortic crossclamping, after release of the clamp, and after weaning from bypass. The blood endotoxin level at each stage was expressed as a percentage of the level at the beginning of bypass. Group I patients a significantly lower blood endotoxin percentage than group II (from 20 to 120 minutes after the initiation of aortic crossclamping). In group I, the blood endotoxin percentage was nearly constant during aortic crossclamping. After release of aortic crossclamping, group I also had a lower blood endotoxin percentage than group II. Endogenous endotoxin levels appear to increase in the presence of intestinal congestion and ischemia. Improvement in intestinal circulation by pulsatile cardiopulmonary bypass may prevent increases in endogenous endotoxin levels by reducing these factors.

Adult↗

Monoclonal antibody against CD11b/CD18 inhibits endotoxin-induced uveitis.

PURPOSE: To examine the serial expression of cell adhesion molecules in C3H/HeN mice with endotoxin-induced uveitis, and to study the effect of treatment with a monoclonal antibody against Mac-1 on the development of endotoxin-induced uveitis. METHODS: Immunohistochemical staining was used to document the serial expression of Mac-1, intercellular adhesion molecule-1 (ICAM-1), and lymphocyte function-associated antigen-1 (LFA-1) in eyes of C3H/HeN mice with endotoxin-induced uveitis. Then, in two separate experiments, endotoxin-induced uveitis was produced in a total of 48 mice by injecting Salmonella typhimurium endotoxin into one hind footpad. At the time of endotoxin injection, 24 mice received an intraperitoneal injection of anti-Mac-1 antibody and 24 control mice received an intraperitoneal injection of rat IgG. Histopathologic sections of eyes taken 24 hours after endotoxin injection were graded by two masked observers on a scale of 0 to 4. RESULTS: Intercellular adhesion molecule-1 was first expressed on the ciliary body epithelium 6 hr after endotoxin injection and Mac-1 and LFA-1 were expressed on infiltrating inflammatory cells 12 hr after endotoxin injection. Treatment with anti-MAC-1 antibody significantly inhibited the development of ocular inflammation when compared with treatment with control IgG (P < 0.001). CONCLUSION: Intercellular adhesion molecule-1 is expressed in the eye before clinical or histologic signs of inflammation. Furthermore, treatment with antibody against Mac-1 significantly inhibits the development of endotoxin-induced uveitis in mice and suggests that anti-Mac-1 antibody may be useful for treating acute ocular inflammation.

Animals↗

Failure to inhibit endotoxin-induced uveitis with antibodies that neutralize tumor necrosis factor.

Many of the effects of bacterial endotoxin are attributed to the cytokines that it induces. Tumor necrosis factor alpha (TNF alpha) may be responsible for many of the pathophysiologic effects of endotoxin because antibodies that neutralize TNF alpha reduce endotoxin-induced mortality in experimental animals and many of the activities of endotoxin can be mimicked by the infusion of TNF alpha. Accordingly, we tested the ability of an antibody that neutralizes TNF alpha in a well characterized rat model, endotoxin-induced uveitis. Rats receiving subcutaneous endotoxin had a prompt rise in serum TNF alpha that was eliminated by the monoclonal antibody. Small quantities of TNF alpha were detectable in aqueous humor after either subcutaneous or intravitreal injection of endotoxin. Endotoxin-induced uveitis as quantitated by cells and protein in aqueous humor was, however, not affected by the antibody. Similarly, intraocular inflammation was not reduced by the intravitreal injection of the neutralizing antibody. Although TNF alpha may mediate many of the systemic effects of endotoxin, its role in the intraocular inflammatory effects of endotoxin should be questioned.

Animals↗

Effects of naloxone on glucagon and insulin concentrations after injection of endotoxin in rats.

OBJECTIVE: To find out how infusions of endotoxin and endotoxin plus naloxone affected glucose, glucagon, and insulin concentrations in rats. DESIGN: Random control study. SETTING: University hospital, Norway. MATERIAL: 27 Male Wistar rats. INTERVENTIONS: 8 Rats were given Escherichia coli endotoxin 0.25 mg in saline; 5 were given a naloxone infusion (0.4 ml of 0.04 mg/ml for the first half hour and continued at a rate of 0.4 ml/hour for a total of 80 minutes) starting 10 minutes before the same dose of endotoxin; 6 were given saline alone for 70 minutes, and 8 saline alone for 10 minutes. Blood was taken for analysis after 70 minutes in the first three groups and at the end of the infusion in the 10 minute group. MAIN OUTCOME MEASURES: Serum concentrations of glucose, glucagon, and insulin compared with baseline (10 min group). RESULTS: Median (interquartile) concentrations of all three substances rose significantly 70 minutes after the injection of endotoxin compared to basal values: 9.8 (8.2-10.9) compared with 6.0 (4.8-7.5) mmol/l for glucose (p < 0.01); 53.1 (44.6-56.0) compared with 3.6 (3.1-5.1) ng/l for glucagon; and 39.4 (38-50.4) compared with 16.7 (11.2-25.5) pmol/l for insulin. When naloxone was combined with endotoxin glucagon and insulin concentrations were significantly lower: 24.3 (23.9-37.5) ng/l (p < 0.01), and 30.6 (24.5-31.6 pmol/l (p < 0.05), respectively. The concentration of glucose in venous blood was unchanged. CONCLUSIONS: The rise in glucagon and insulin concentrations after endotoxin infusions may be partly mediated by opioids. Naloxone in the dose given did not abolish the increase in glucagon after endotoxin. The high glucagon:insulin ratio after both endotoxin alone and endotoxin plus naloxone may be important in the aetiology of the hyperglycaemia seen.

Animals↗

Effects of pentoxifylline infusion on response of horses to in vivo challenge exposure with endotoxin.

OBJECTIVE: To evaluate the effect of pentoxifylline on response of horses to in vivo challenge exposure with endotoxin. ANIMALS: 24 healthy horses in 3 treatment groups: pentoxifylline, endotoxin, or endotoxin and pentoxifylline. PROCEDURE: Horses of the pentoxifylline group were given a bolus of pentoxifylline (7.5 mg/kg of body weight, i.v.), followed by an infusion (3 mg/kg/h) over 3 hours, and those of the endotoxin group were given 20 ng of endotoxin/kg i.v. over 30 minutes. Those of the combination group were given both of the aforementioned compounds; pentoxifylline was administered immediately after endotoxin. Clinical (rectal temperature, heart and respiratory rates, blood pressure) and hematologic (WBC count; whole blood recalcification time; plasma fibrinogen, thromboxane B2, and 6-keto-prostaglandin F1 alpha concentrations; plasma plasminogen activator inhibitor activity; and serum tumor necrosis factor and interleukin 6 activities) variables were evaluated over 24 hours. RESULTS: Compared with baseline values, there were no significant changes in any variable over time in the horses receiving only pentoxifylline, with the exception of a significant increase in WBC count. Rectal temperature, heart rate, mean blood pressure, WBC count, whole blood recalcification time, fibrinogen concentration, plasminogen activator inhibitor activity, tumor necrosis factor and interleukin 6 activities, and plasma thromboxane B2 concentration changed significantly over time in horses of the endotoxin and endotoxin-pentoxifylline combination groups. Respiratory rate and plasma 6-keto-prostaglandin F1 alpha concentration changed significantly over time only in horses of the endotoxin group. Compared with values for the endotoxin group, rectal temperature and respiratory rate were significantly lower, and whole blood recalcification time was longer for the endotoxin/pentoxifylline group. CONCLUSION: Beneficial effects of pentoxifylline are limited when it is administered i.v. to horses after in vivo challenge exposure with endotoxin.

6-Ketoprostaglandin F1 alpha↗

L-arginine attenuates endothelial dysfunction in endotoxin-induced lung injury.

BACKGROUND: Pulmonary vasorelaxation to endothelium-dependent and independent agonists is dysfunctional in endotoxin-induced acute lung injury. L-arginine is the precursor to endothelial production of nitric oxide (NO), suggesting that arginine and NO are intimately linked. We hypothesized that L-arginine would attenuate endotoxin-induced dysfunction of guanosine 3',5'-cyclic monophosphate-mediated pulmonary vasorelaxation. METHODS: Concentration-response curves were generated for acetylcholine, calcium ionophore A23187, and sodium nitroprusside (SNP) in isolated phenylepherine-preconstricted pulmonary artery rings (10(-9) to 10(-6) mol/L) 4 hours after endotoxin (500 mg/kg intraperitoneal) or saline injection. The effect of L-arginine in vitro was determined with L- or D-arginine (50 mmol/L) 30 minutes before dose response. RESULTS: Endothelium-dependent pulmonary vasorelaxation was dysfunctional after endotoxin injection as demonstrated by impaired responses to acetylcholine and A23187 (P < .05 vs control). Endotoxin-induced dysfunction of these endothelium-dependent responses was attenuated by L-arginine (P < .05 vs endotoxin). Endothelium-independent vasorelaxation (SNP) was also dysfunctional after endotoxin treatment (P < .05 vs control). L-arginine failed to attenuate the endotoxin-induced dysfunction of the response to SNP. The concentration responses for endothelium-dependent and independent vasorelaxing agonists in endotoxin-treated rats were not influenced by D-arginine. CONCLUSION: L-arginine supplementation attenuates endotoxin-induced dysfunction of endothelium-dependent pulmonary vasorelaxation.

Acetylcholine↗

Protective effect of a lipoxygenase inhibitor, nordihydroguaretic acid, on the ileal motor disturbances induced by Serratia marcescens endotoxin in rats.

This study was conducted to examine the effects of peptidoleukotrienes on the ileal contractility disturbances induced by Serratia marcescens endotoxin in rats. Thirty-two male Wistar rats were divided into four groups (n = 8 each). The first group was given only an anesthetic agent (control group); the second group was given the endotoxin (endotoxin group); the third group was given a lipoxygenase inhibitor, nordihydroguaretic acid (NDGA); and the fourth group was given NDGA 10 min before administration of the endotoxin (NDGA+endotoxin group). The isolated ileum response was recorded in each group. Normal contractile activity was seen in the control group. After the endotoxin was given. the isolated ileum did not respond to 497acetylcholine (ACh) in the endotoxin group, but the contractile results of isolated ileum to ACh were similar to the control group results in both the NDGA and endotoxin+NDGA groups. The results of this study demostrate that leukotrienes may play a role in endotoxin-induced ileal contractility disturbances, and that the lipoxygenase inhibitor, NDGA, could be useful for the treatment of ileal motility disturbances induced by endotoxin.

Acetylcholine↗

Hyperinsulinism in endotoxin shock dogs.

Extreme hyperinsulinism was observed in endotoxin-shock dogs made hyperglycemic by glucose infusion. Qualitatively (at least in terms of gel filtration characteristics), the insulin secreted under these conditions was normal. Hyperinsulinism was not observed in endotoxin-shock dogs not given glucose. Thus hyperinsulinism does not explain the hypoglycemia so frequently observed in endotoxin-treated dogs. Hyperinsulinsm could not be impaired degradation of insulin as disappearance of labeled insulin as well as cold insulin was comparable in control and endotoxin-treated animals. An adrenergic mechanism (either beta receptor stimulation or postadrenergic hyperresponsiveness of the beta cells) probably does not explain the hyperinsulinism observed in endotoxin-shock dogs given glucose as beta blockade failed to inhibit the hyperinsulinsm. Hyperinsulinism was not observed in endotoxin-shock dogs given tolbuamide. A tenfold rise in plasma IRG was observed in endotoxin-treated dogs whether glucose was infused or not. The persistently low IRI levels in endotoxin-treated dogs not given glucose suggest that hyperresponsiveness of the beta cell to glucagon was not present in these animals. Extreme hyperinsulinsm in response to induced hyperglycemia in endotoxin-shock dogs is unexplained. Hyperresponsiveness of the beta cell to glucose during endotoxin shock seems likely.

Alloxan↗

Leptin expression in porcine adipose tissue is not increased by endotoxin but is reduced by growth hormone.

The physiologic response to infection includes reductions in tissue concentrations of anabolic growth factors as a means of reducing growth and conserving nutrients for immunologic processes. This repartitioning of nutrients is accompanied by anorexia, which has been linked to increased leptin expression. Furthermore, leptin and growth hormone (GH) concentrations are inversely related, with leptin being required for normal GH release. The objective of this study was to determine if pretreatment with GH would influence endotoxin-induced changes in leptin expression or attenuate endotoxin-induced reductions in serum insulin-like growth factor-1 (IGF-1) and IGF-1 expression in liver and longissimus muscle. In experiment 1, 40 pigs were assigned to four treatments (n = 10 per treatment) arranged as a 2x2 factorial with GH (s.c. injection, 2 mg 1 h before challenge and 2 mg 2 h after challenge) and endotoxin (single i.m. injection, 25 microg/kg body weight) as main effect variables. Pretreatment with GH resulted in a marked increase (p<0.001) in serum GH within 1 h that was sustained throughout the study. Endotoxin challenge reduced (p<0.003) serum IGF-1 independent of GH (GH x endotoxin, p>0.682), and reduced (p<0.05) IGF-1 expression in longissimus muscle but not liver. Leptin mRNA abundance was reduced 56% (p<0.005) by GH but was not affected by endotoxin (p>0.81). In experiment 2, 36 pigs (n = 12 per treatment) were either allowed ad libitum feed consumption with no injection or deprived of feed and injected twice with either saline or endotoxin 24 h apart. Feed deprivation reduced leptin expression (p<0.05). However, endotoxin did not change leptin expression but markedly increased (p<0.05) serum haptoglobin. These data indicate that changes in IGF-1 status in endotoxin-challenged pigs are independent of serum GH and that leptin expression is not increased by endotoxin challenge in the pig. These data also indicate a regulatory linkage between GH and leptin in vivo.

Adipose Tissue↗

Gabexate mesilate, a synthetic protease inhibitor, attenuates endotoxin-induced pulmonary vascular injury by inhibiting tumor necrosis factor production by monocytes.

OBJECTIVE: In order to determine whether gabexate mesilate, a synthetic protease inhibitor with anticoagulant properties, is useful for the treatment of adult respiratory distress syndrome, we examined its effect on endotoxin-induced pulmonary vascular injury in rats. DESIGN: Prospective, randomized, controlled study. SETTING: Research laboratory at a university medical center. SUBJECTS: Male Wistar rats (180 to 220 g.) INTERVENTIONS: Animals received intravenous infusions of endotoxin (5 mg/kg iv) or saline (control). Pulmonary vascular injury was assessed 6 hrs after administration of endotoxin in terms of the increase in vascular permeability. Rats received gabexate mesilate (10 mg/kg ip), heparin, antithrombin III, an inactive derivative of activated factor X (a selective inhibitor of thrombin generation), or N-[2-[4-(2,2-dimethyl-propionyloxy) phenylsulfonylamino] benzoyl] aminoacetic acid (ONO-5046) (a potent granulocyte elastase inhibitor) 30 mins before endotoxin administration. Leukocytopenia was induced by administration of methotrexate. The effects of the gabexate mesilate on the function of activated neutrophils and the production of tumor necrosis factor -alpha (TNF-alpha) by endotoxin-stimulated monocytes were examined in vitro using neutrophils and monocytes prepared from healthy human volunteers. MEASUREMENTS AND MAIN RESULTS: Pulmonary vascular permeability was determined by measuring the vascular leakage of intravenously administered 125I-labeled bovine serum albumin. Intravenous administration of endotoxin significantly increased pulmonary vascular permeability. Gabexate mesilate significantly inhibited pulmonary vascular injury observed 6 hrs after the administration of endotoxin. Pulmonary vascular injury was not attenuated by the administration of heparin, heparin plus antithrombin III, or the inactive derivative of activated factor X, but pulmonary vascular injury was significantly attenuated in animals with methotrexate-induced leukocytopenia and in those animals treated with N-[2-[4-(2,2-dimethyl-propionyloxy) phenylsulfonylamino] benzoyl] aminoacetic acid. Gabexate mesilate in concentrations of 10(-4) to 10(-3) M inhibited the release of granulocyte elastase and leukocyte aggregation stimulated by N-formyl-methionyl-leucyl-phenylalanine and the opsonized zymosan-activated production of superoxide radical by neutrophils in vitro. Gabexate mesilate significantly inhibited the endotoxin-induced increase in the serum concentration of TNF-alpha in vivo and, at a concentration of 10(-8) M, the production of TNF-alpha by endotoxin-stimulated monocytes in vitro. CONCLUSION: Our findings suggest that gabexate mesilate attenuated endotoxin-induced pulmonary vascular injury mainly by inhibiting TNF-alpha production by monocytes, which may play a central role in sepsis-related lung injury.

Animals↗

Peripheral neural modulation of endotoxin-induced hyperventilation.

OBJECTIVE: To delineate the role of the peripheral neural reflexes involved in modulating hyperventilation during endotoxemia. DESIGN: A prospective, randomized, controlled, multigroup study. SETTING: Research animal laboratory. SUBJECTS: Adult Sprague-Dawley rats (n=43; 354+/-24 g) of either gender. INTERVENTIONS: Eight rats received a sham operation on their vagus, carotid sinus, and aortic nerves before the administration of a saline vehicle to serve as the time control. In the endotoxin group, 11 rats received a sham operation before endotoxin challenge. The remaining 24 rats received bilateral vagotomy (n=8), perivagal capsaicin treatment (n=8), or denervation of peripheral chemoreceptors (n=8) before endotoxin challenge. After the breathing pattern returned to a steady state, endotoxin (L-4130, serotype 0111, B4 lipopolysaccharide; 50 mg/kg) was injected into the vein. The rat's respiration was then monitored continuously for 5 hrs or until the animal died. MEASUREMENTS AND MAIN RESULTS: The respiratory rate and tidal volume did not change over the 5-hr observation period in the time control group. In the endotoxin group, the respiratory rate increased significantly from baseline (135.4%) 2 hrs after endotoxin challenge and increased persistently until the rats died. The tidal volume increased gradually to < or =132.8% of baseline 4 hrs after endotoxin challenge. Bilateral cervical vagotomy and perineural capsaicin treatment of the vagus nerves eliminated the tachypnea response to endotoxin injection. Denervation of the peripheral chemoreceptor accentuated the hyperventilation response to endotoxin, and resulted in the shortest survival time. CONCLUSIONS: Both lung vagal C-fiber afferents and peripheral chemoreceptors are involved in modulating the hyperventilation response after endotoxin challenge in rat models. Stimulation of vagal C-fiber afferents increased the respiratory rate. Conversely, the role of peripheral chemoreceptors was to restrain the hyperventilatory response and these receptors may play a protective role during endotoxemia.

Animals↗

Role of tumor necrosis factor and interferon gamma in endotoxin-induced E-selectin expression.

Tumor necrosis factor-alpha (TNF-alpha) and interferon-gamma (IFN-gamma), potent inflammatory cytokines, are released by macrophages during endotoxin shock. However, the contribution of these cytokines to endotoxin-induced inflammation has not been defined. The expression of E-selectin, measured using the dual radiolabeled monoclonal antibody (mAb) technique, was monitored in different tissues of endotoxin-challenged wild-type and IFN-gamma-deficient mice receiving a mAb to TNF-alpha (TN3). A significant elevation in E-selectin expression occurred in all tissues of wild-type mice challenged with endotoxin. Injection of TN3 in wild-type mice significantly attenuated the endotoxin-induced up-regulation of E-selectin in all tissues (p < .05) except the pancreas. The level of reduction in endotoxin-induced E-selectin expression ranged between 30% in the stomach to 60% in the small intestine. E-selectin expression in endotoxin-challenged, IFN-gamma-deficient mice was significantly reduced in the small and large intestines, when compared with endotoxin-challenged wild-type mice. Although IFN-gamma deficiency had no effect on E-selectin expression in other tissues, administration of TN3 to endotoxin-challenged, IFN-gamma-deficient mice significantly reduced E-selectin expression to levels observed in endotoxin-challenged, wild-type mice that received TN3. These findings indicate that TNF-alpha is essential for achievement of maximal E-selectin expression in most vascular beds during endotoxemia, whereas the contribution of IFN-gamma is largely confined to the small intestine.

Animals↗

ACTH-mediated aldosterone hypersecretion during endotoxin-induced fever with apparent influence upon renal sodium excretion.

Febrile, endocrine, and renal responses to i.v. injection of endotoxin (E. coli lipopolysaccharide, 0.25 microgram kg-1) were studied in hyperhydrated goats without, and after dexamethasone pre-treatment, performed with the aim of inhibiting the adenohypophyseal secretion of ACTH. As expected from previous investigations, the administration solely of endotoxin induced biphasic fever, pronounced and long-lasting (less than 4 h) elevation of plasma cortisol (PC), and a prompt inhibition of the water diuresis. Apparently the observation that endotoxin also induced a pronounced biphasic elevation of plasma aldosterone (PA) where the two rising phases coincided with the early, and respectively the second elevation in rectal temperature is original. The endotoxin had no obvious influence upon the renal Na excretion for 3 h post-injection, and did not affect plasma renin activity (PRA). After dexamethasone pre-treatment (0.02 mg kg-1, i.v. 75 min prior to endotoxin) the endotoxin-induced rise in rectal temperature initially was less steep and no biphasic pattern of the fever was observed. The PC and antidiuretic responses became delayed for about 2 h and were then much attenuated. Endotoxin-induced rise in PA was no longer observed, and a conspicuous natriuresis developed within 90 min post-endotoxin. It is concluded that endotoxin at the dose used causes liberation of ACTH to such an extent that adrenocortical hypersecretion not only of glucocorticoids, but also of aldosterone occurs. The observed differences in Na excretion suggest that this aldosterone hypersecretion may be of pathophysiological importance as a protection against inappropriate renal waste of Na during the early phase of endotoxin-induced fever.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

Plasma endotoxin concentration in horses: a methods study.

BACKGROUND: Accurate determination of plasma endotoxin concentration is critical for ex vivo and in vitro cellular and molecular studies of endotoxemia in horses. However, reports are conflicting with respect to anticoagulant, handling, and sample preparation. OBJECTIVE: The purpose of this study was to determine the effect of blood sample fraction and handling time on measurement of endotoxin concentration in horses. METHODS: Whole blood, anticoagulated with 3.8% (0.12 M) sodium citrate (9:1), was collected from 5 healthy horses. Whole blood (WB), platelet-rich plasma (PRP), and platelet-poor plasma (PPP) were spiked with endotoxin (2 EU/mL). Endotoxin-spiked WB samples were centrifuged immediately to generate PRP for measurement. Endotoxin concentration was subsequently measured by Limulus amebocyte assay at 0, 15, 30, 45, and 60 minutes. Assays were performed in triplicate and results were analyzed using Student's t-test, with significance set at P <.05. RESULTS: Mean endotoxin concentrations in 2 EU/mL-spiked WB were significantly different from those in PPP at all time points tested. Recovery of endotoxin in PRP generated from WB was significantly diminished after just 15 minutes. CONCLUSION: PRP generated from WB is significantly more reliable than PPP in determining endotoxin concentration ex vivo. Measurement of endotoxin in PRP generated from WB was significantly diminished after 15 min, identifying a time frame within which to process blood samples for endotoxin analysis.

Animals↗

Potentiating Effect of Freund's Adjuvant on Interferon Production by Endotoxin or Poly rI*Poly rC.

Intraperitoneal injection of mice with mineral oil, incomplete (IFA) or complete Freund's adjuvant (CFA) increased the interferon response to endotoxin or (poly rI)*(poly rC) administered intravenously 2 days later. After endotoxin administration, circulating interferon titers were increased at several different times of sampling and with a variety of endotoxin dosages. When injection of endotoxin was delayed until 6 to 8 days after the administration of IFA or CFA, interferon production was markedly decreased. Mice treated with CFA and injected with endotoxin 2 days later became more resistant to intranasal vesicular stomatitis virus challenge than mice injected with endotoxin alone. Hyporeactivity to the interferon-inducing capacity of a second injection of endotoxin 2 days after the first injection could not be overcome by administering CFA simultaneously with the first dose. CFA treatment not only raised the serum interferon titers produced by endotoxin, but also increased the number of interferon-forming cells in the spleen after administration of endotoxin in vivo. In addition, CFA enhanced the intravascular clearance of (poly rI)*(poly rC). The possibility that Freund's adjuvant increased the interferon response to endotoxin and (poly rI)*(poly rC) by stimulating the uptake and processing of the interferon inducer by lymphoreticular cells is discussed.

Journal Article↗

Endotoxin-induced prostaglandin E and F release in dogs.

Prostaglandin E and F (PGE and PGF) levels in sequential blood samples obtained simultaneously from the renal and portal veins and aorta during endotoxin shock in dogs were determined by radioimmunoassay. Four groups of dogs were studied. In five control dogs in which no endotoxin was given, PGE and PGF levels did not change significantly at 0, 15, 30, 60, and 90 min. In eight dogs given endotoxin alone, PGE and PGF levels did not change in the aorta. In samples taken from the portal vein there was a significant rise in PGE and PGF 15 min after endotoxin, whereas renal vein PGE and PGF did not become significantly elevated until 60 and 90 min after endotoxin. In six dogs pretreated with acetylsalicylic acid and six dogs pretreated with indomethacin, PGE and PGF levels did not change after endotoxin. Indomethacin modified the delayed hemodynamic effects of endotoxin whereas acetylsalicylic acid did not. Neither drug blocked the immediate hemodynamic effects of endotoxin. Endotoxin-induced PGE and PGF release is probably due to increased synthesis. The mechanism whereby synthesis is stimulated and the extent to which vasomotor tone is influenced by PGE and PGF during endotoxin shock cannot be determined from our data.

Animals↗

The effects of recombinant human thrombomodulin on endotoxin-induced multiple-system organ failure in rats.

Activation of the coagulation system is postulated to play an important role in the pathogenesis of endotoxin-induced tissue injury. Thrombomodulin (TM) is an endothelial cell membrane glycoprotein receptor for thrombin. Once bound to TM, thrombin loses its procoagulant activity, which results in decreased clotting. In addition, the binding of thrombin to TM activates the endogenous anticoagulant pathway through protein C. We studied the effect of recombinant human TM (rh-TM) on endotoxin-induced multiple-system organ failure (MSOF) in Sprague-Dawley rats weighing 400 to 450 g: 2 mg/kg of rh-TM was injected (T1/2 = 4.5 h) 30 min prior to intravenous injection of 20 mg/kg of Escherichia coli endotoxin. The study presented here consisted of three separate experiments. Experiment 1: 24-h survival study. Experiment 2: multiple-system organ microthrombi study in which 125I-human fibrinogen was injected 30 min prior to an endotoxin or saline injection and tissue microthrombi formation was assessed by measuring the percentage of organ radioactivity (lung, heart, liver, and kidney) against total injected radioactivity (microthrombi index, MI) 2.25 h after an endotoxin or saline injection. Experiment 3: endotoxin-induced MSOF study in which 125I-rat albumin was injected 5 h after an endotoxin or saline injection, and endotoxin-induced organ injury was evaluated by measuring tissue wet-to-dry ratios (W/D) and tissue-to-plasma 125I-rat albumin concentration ratios (T/P) 8 h after the endotoxin or saline injection. Blood contamination in samples from Experiments 2 and 3 was corrected by using 131I-rat albumin measurements. Pretreatment with rh-TM improved the survival from 12 h through 23 h as compared with that of the endotoxin control group (p < 0.05). However, at 24 h, after essentially all injected rh-TM had been eliminated, there was no difference in survival. Significant reductions in MI, W/D, and T/P in the organs sampled were observed in the rh-TM pretreated groups (p < 0.05). In conclusion, rh-TM improved short-term but not overall survival and decreased MSOF in endotoxemic rats.

Albumins↗