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Biomedical subjects

T van der Poll

Publications and source records attributed to T van der Poll.

At least 127 records · Page 7Linked to original sources

Soluble tumor necrosis factor receptors as surrogate markers for the assessment of zidovudine treatment in asymptomatic HIV-1 infection.

In untreated, asymptomatic human immunodeficiency virus type 1 (HIV-1) infection, elevated serum concentrations of soluble receptors for tumor necrosis factor (sTNFR) types I and II are associated with progression to AIDS. To assess the utility of sTNFRs as markers for the assessment of antiretroviral treatment, sTNFRs were sequentially determined in 47 asymptomatic HIV-1-infected men, who participated in a double-blind, randomized, placebo-controlled study. Progression to AIDS or severe AIDS-related complex occurred in six zidovudine (ZDV)- and six placebo-treated subjects. During ZDV treatment (n = 28) both types of sTNFRs declined compared with baseline and placebo, whereas they increased during placebo treatment (n = 19). A sustained decline of sTNFRs occurred only in subjects who experienced no disease progression. During the first 3 months of ZDV treatment, the hazard ratio for disease progression when sTNFR type II rose above the baseline value plus 5% was significantly increased (hazard ratio: approximately 25; 95% confidence interval: approximately 1.5-400; p < 0.03). Simultaneously determined CD4+ counts and serum neopterin levels showed a similar pattern in progressors and nonprogressors. Thus, in contrast to CD4+ counts and neopterin levels, sTNFR concentrations, especially those of the type II STNFR, appear to be valuable surrogate markers for monitoring the efficacy of ZDV treatment in asymptomatic HIV-1 infection.

AIDS-Related Complex↗

Endogenous IL-10 protects mice from death during septic peritonitis.

IL-10 production during endotoxic shock is part of a protective mechanism that involves IL-10-induced inhibition of TNF synthesis. We sought to determine the role of IL-10 in septic peritonitis induced by cecal ligation and puncture (CLP). CLP led to a rapid induction of IL-10 mRNA in various organs of C57BI/6 mice. In liver, IL-10 mRNA was detectable within 1 h following CLP, while in spleen and lungs, IL-10 mRNA was detected from 2 to 4 h and onward. IL-10 protein became detectable in plasma 2 h after CLP, reaching peak concentrations after 12 h (12.7 +/- 5.7 ng/ml). Pretreatment (-2 h) with anti-IL-10 mAb resulted in higher plasma TNF levels following CLP when compared with mice treated with control mAb. Plasma IL-1 activity and IFN-gamma remained undetectable in virtually all mice. Anti-IL-10 enhanced mortality after CLP (p < 0.05 by log-rank test). Addition of anti-TNF mAb did not influence the increased mortality associated with anti-IL-10 treatment. Septic peritonitis is associated with sustained production of IL-10 in various organs, which serves to protect the host against lethality.

Animals↗

Endotoxin induces downregulation of tumor necrosis factor receptors on circulating monocytes and granulocytes in humans.

Leukocytes rapidly lose their surface receptors for tumor necrosis factor (TNF) after exposure to various stimuli in vitro. To assess the effect of endotoxin on cellular TNF receptors in humans in vivo, binding of biotinylated TNF to circulating monocytes and granulocytes was determined by fluorescence-activated cell sorter analysis in six healthy subjects after intravenous injection of endotoxin (lot EC-5, 20 U/kg). Endotoxin administration was associated with a transient decrease in monocyte TNF receptors, reaching a nadir after 2 hours (P < .0001), and a more sustained decrease in granulocyte TNF receptors (P < .001). Although the decrease in cellular TNF receptors coincided with increases in soluble TNF receptors types I and II, no correlations were observed between trough monocyte or granulocyte TNF receptors and peak plasma concentrations of soluble TNF receptors. Stimulation of human whole blood with endotoxin resulted in reduced expression of both type I and type II TNF receptors on monocytes and granulocytes. Endotoxin induces downmodulation of monocyte and granulocyte TNF surface receptors in humans in vivo, which may represent a mechanism to reduce excessive activity of TNF during systemic infection.

Adult↗

Contribution of interleukin-1 to activation of coagulation and fibrinolysis, neutrophil degranulation, and the release of secretory-type phospholipase A2 in sepsis: studies in nonhuman primates after interleukin-1 alpha administration and during lethal bacteremia.

Although studies with interleukin-1 receptor antagonist (IL-1ra) in animal models have shown that IL-1 contributes to mortality in sepsis, the mechanisms whereby IL-1 mediates lethal effects are not well established. A possible mechanism is that IL-1 enhances the activation and release of other inflammatory mediator systems such as coagulation, fibrinolysis, neutrophils, and secretory-type phospholipase A2 (sPLA2). We investigated this possibility by assessing the effect of intravenously injected recombinant human IL-1 alpha (rhIL-1 alpha) on these plasma parameters in baboons. In addition, we examined the course of these inflammatory parameters in baboons after a challenge with a lethal dose of Escherichia coli and while receiving a 24-hour constant infusion of IL-1ra or placebo. Intravenous administration of IL-1 alpha (10 micrograms/kg) induced the formation of thrombin, as evidenced by the appearance of thrombin-antithrombin III (TAT) complexes into the circulation (peak levels, 188 +/- 92 ng/mL at 2 hours), as well as the activation of fibrinolysis, assessed by circulating plasmin-alpha 2-antiplasmin complexes (PAP complexes; peak levels, 0.4% +/- 0.03% of fully activated plasma at 1 hour), the release of tissue-type plasminogen activator (t-PA; peak levels, 6 +/- 2 ng/mL at 2 hours), and its inhibitor, plasminogen activator inhibitor (PAI; peak levels, 724 +/- 246 ng/mL at 4 hours). Il-1 alpha administration also induced the release of sPLA2 (maximal levels, 336 +/- 185 ng/mL at 8 hours), but not degranulation of neutrophils. In the septic baboons, a significant reduction of the formation of thrombin (peak TAT levels decreased from 582 +/- 78 ng/mL to 219 +/- 106 ng/mL; P < .005), the release of t-PA (peak levels decreased from 37 +/- 11 ng/mL to 17 +/- 2 ng/mL; P < .001), and its inhibitor, PAI (peak levels decreased from 2,639 +/- 974 ng/mL to 1,110 +/- 153 ng/mL; P <.001), was observed in the group receiving IL-1ra compared to that receiving placebo. The release of neutrophilic elastase was also significantly attenuated in IL-1a-treated animals (peak levels, 1,024 +/- 393 and 655 +/- 104 ng/mL in control and treatment groups, respectively; P < .05). The difference between sPLA2 levels in both groups, although higher in the controls (maximal levels, 3,140 +/- 1,435 ng/mL in control v 2,217 +/- 1,375 ng/mL in IL-1ra-treated group), was not significant. Thus, IL-1 contributes to activation of various other mediator systems in severe sepsis in nonhuman primates. We propose that these effects may explain the lethal actions of IL-1 in this sepsis model and suggest a similar role for IL-1 in severe human sepsis.

Animals↗

Parenteral nutrition alters monocyte TNF receptor activity.

The route of nutrient provision has been reported to influence some aspects of the host inflammatory response in both patient populations and normal subjects. The tumor necrosis factor receptor system is a complex regulatory mechanism that modulates the bioavailability of tumor necrosis factor (TNF). We sought to determine whether maintenance on total parenteral nutrition (TPN) can alter host response to endotoxin challenge, specifically as it relates to the TNF receptor system. Seventeen healthy men were randomized to receive either TPN (n = 8) or a defined formula enteral diet (ENT, n = 9) prior to intravenous infusion of endotoxin (Lot EC-5, 20 U/kg). The subjects that received 1 week of antecedent TPN exhibited an increased heart rate and temperature and decreased mean arterial pressure post-LPS compared to those subjects maintained on enteral nutritional support. The TPN subjects also exhibited comparatively higher TNF and interleukin-6 levels in response to endotoxin. Monocyte TNF receptor levels decreased in both groups post-LPS, but TPN subjects exhibited consistently greater expression of this functional membrane-associated TNF receptor. After LPS, soluble tumor necrosis factor receptor II (sTNFr II, p75) peaked three times higher in TPN subjects than in ENT subjects. Conversely, sTNFr I (p55) was higher in the enterally fed group. From these studies it appears that antecedent TPN not only influences clinical manifestations of endotoxin but also modulates the regulation of all associated TNF receptors and shedding of soluble receptors.

Adolescent↗

Inhibition of the release of soluble tumor necrosis factor receptors in experimental endotoxemia by an anti-tumor necrosis factor-alpha antibody.

The role of tumor necrosis factor-alpha in the shedding of soluble tumor necrosis factor receptors in endotoxemia was investigated. The appearance of the soluble tumor necrosis factor receptors was assessed in four healthy volunteers following an intravenous injection of tumor necrosis factor-alpha and in eight chimpanzees after intravenous administration of endotoxin in the absence or presence of concurrent treatment with a neutralizing anti-tumor necrosis factor-alpha monoclonal antibody. Injection of tumor necrosis factor-alpha in humans elicited a significant, instantaneous (after 15 min) increase in the plasma concentrations of both types of soluble tumor necrosis factor receptors. In chimpanzees, treatment with the anti-tumor necrosis factor-alpha antibody completely neutralized endotoxin-induced tumor necrosis factor-alpha activity. The release of soluble tumor necrosis factor receptors was strongly (80-90%) inhibited in the presence of the neutralizing antibody. Our results indicate that tumor necrosis factor-alpha is a prime mediator of endotoxin-induced release of its own soluble receptors.

Adult↗

Soluble receptors for tumor necrosis factor are markers for clinical course but not for major metabolic changes in human immunodeficiency virus infection.

Tumor necrosis factor alpha (TNF) is a potential mediator of the metabolic changes in human immunodeficiency virus type 1 (HIV) infection. Soluble TNF receptor types I and II (sTNFR-I and -II) presumably reflect TNF activity. To examine the relationship between s TNFRs and host metabolism, resting energy expenditure (REE), body composition, and transferrin, albumin, triglyceride, retinol-binding protein, and sTNFR concentrations were measured in 12 asymptomatic and 18 symptomatic HIV-infected male subjects and 15 male control subjects. sTNFRs were increased in parallel with disease severity. REE was elevated approximately 8% in HIV-infected subjects (P = .005). REE correlated positively with fat free mass (FFM) and the presence of HIV infection, but not with sTNFRs. Inverse correlations existed between sTNFR-I or -II and albumin concentration (r = -.48, P = .007, and r = -.49, P = .006, respectively), between sTNFR-II and transferrin concentration (r = -.53, P = .003), and between In(sTNFR-II) and percent body fat (r = -.37, P < .05), but not between sTNFRs and triglyceride or retinol-binding protein. Thus, sTNFRs are markers for clinical course but not for major metabolic changes in HIV infection.

Adult↗

Interleukin 6 during active visceral leishmaniasis and after treatment.

To determine the utility of the serum concentrations of interleukin 6 (IL-6) as a marker of disease activity and therapeutic efficacy in visceral leishmaniasis (VL), IL-6 levels were measured in 19 patients with active VL from Sudan before and after treatment. IL-6 levels were 30 +/- 6 pg/ml during the active phase of the disease, decreased to levels around the detection limit of the assay (2 pg/ml) directly after successful antimony therapy, and remained low or undetectable for up to 6 months in persistently cured patients (P < 0.005 versus baseline). In 2 patients who had a relapse of VL, IL-6 was elevated at the time the relapse was diagnosed. Two patients with post-kala-azar dermal leishmaniasis did not have detectable IL-6 in their circulation. Sequential measurements of serum IL-6 levels may be useful for monitoring therapeutic efficacy in patients with VL.

Acute Disease↗

Influence of hypercortisolemia on soluble tumor necrosis factor receptor II and interleukin-1 receptor antagonist responses to endotoxin in human beings.

BACKGROUND: We have previously reported that the antecedent administration of glucocorticoids altered both the hormonal and proinflammatory cytokine responses to lipopolysaccharide (LPS) when administered to human volunteers. In that study, subjects with vastly exaggerated levels of tumor necrosis factor (TNF) and interleukin (IL)-6 12 and 144 hours after cortisol infusion exhibited hemodynamic and hormonal responses no different from those of untreated subjects after endotoxin. The current study examined levels of the antiinflammatory cytokines interleukin-1 receptor antagonist (IL-1ra) and soluble receptors to tumor necrosis factor (sTNF-R) in the same setting of the previous report. METHODS: Hydrocortisone succinate was infused into healthy volunteers. LPS was then injected immediately or was delayed by 6, 12, or 144 hours (C, C-6, C-12, and C-144, respectively). Subjects receiving LPS alone served as controls. Plasma was analyzed to determine levels of TNF, sTNF-R and IL-1ra by enzyme-linked immunosorbent assay before administration of LPS and at 30-minute intervals after administration of LPS for 6 hours. RESULTS: Levels of sTNF-R increased after LPS administration in all groups (p < 0.05 versus baseline) with a significantly higher level recorded in the subjects having received hydrocortisone 144 hours before (C-144, p < 0.05 versus all other groups). TNF levels remained undetectable in association with immediate infusion of LPS (C) and the relatively short delay group (C6). This cytokine peaked 90 minutes after LPS in all other groups, with a significantly higher peak in the C-144 subjects when compared with controls. IL-1ra levels rose in all groups but to a lesser extent in the C group (p < 0.05). CONCLUSIONS: These data confirm that glucocorticoids influence the production of both sTNF-R and IL-1ra. The potential for an exaggerated response of sTNF-R exists for an extended period of time after exposure to glucocorticoids.

Adult↗

Soluble receptors for tumor necrosis factor as markers of disease activity in visceral leishmaniasis.

Serum concentrations of soluble receptors for tumor necrosis factor (sTNFRs) were measured before and after antimony therapy in 25 Sudanese patients with active visceral leishmaniasis (VL). Both sTNFR types I and II were significantly elevated in patients with VL compared with healthy controls from the same region and from the Netherlands (P < .01). In all 23 patients who initially responded to therapy, both sTNFR types decreased sharply, reaching and remaining at levels similar to those found in normal controls; 2 relapsed after an initial response to therapy, and their sTNFR concentrations had increased at the time of relapse. The 2 patients who did not respond to therapy had persistently elevated sTNFR levels. Tumor necrosis factor was detectable in only 16% of patients with VL. Hence, the serum concentrations of sTNFRs may be useful for monitoring therapeutic efficacy in patients with VL.

Adolescent↗

Interleukin-1 contributes to increased concentrations of soluble tumor necrosis factor receptor type I in sepsis.

Studies were done in baboons and humans to assess the role of interleukin (IL)-1 on the release of soluble tumor necrosis factor receptors (sTNFRs) during sepsis. In baboons, IL-1 alpha induced increased levels of sTNFR types I and II. Infusion of Escherichia coli into baboons also led to higher sTNFR levels. Treatment with IL-1 receptor antagonist (ra) attenuated the rise in sTNFR-I, which was positively correlated with a partial preservation of renal function by IL-1ra. In patients with sepsis, treatment with IL-1ra also was associated with lower levels of sTNFR-1 but did not influence plasma creatinine levels. IL-1ra did not affect sTNFR-II in baboons or humans. These data suggest that IL-1 produced during sepsis is involved in increases in sTNFR-I. Such increases during rapidly fatal septic shock may in part be explained by an effect on the renal clearance of sTNFR-I.

Aged↗

Tumor necrosis factor in sepsis: mediator of multiple organ failure or essential part of host defense?

Tumor necrosis factor-alpha (TNF) exerts numerous influences which, in association with severe infection, subserve both detrimental as well as beneficial host responses. The current review addresses recent insights into the structure and function of this pleiotropic cytokine, with a particular emphasis upon cellular and organ system consequences of sepsis-induced TNF activity. A comparison of responses elicited by endotoxin or TNF administration are discussed as are mechanisms of endogenous TNF regulation, such as soluble receptors, anti-inflammatory cytokines, and counter-regulatory responses. A review of past and future clinical strategies for altering TNF activity during sepsis is also provided.

Animals↗

Effect of postponed treatment with an anti-tumour necrosis factor (TNF) F(ab')2 fragment on endotoxin-induced cytokine and neutrophil responses in chimpanzees.

TNF is considered to be an intermediate factor in endotoxin-induced release of other cytokines and endotoxin-induced neutrophil degranulation. Little is known about the effect of postponed treatment with anti-TNF in primate endotoxin models. To assess the effect of delayed treatment with anti-TNF in endotoxaemia, six healthy adult chimpanzees were intravenously injected with Escherichia coli endotoxin (4 ng/kg). In three of these animals the administration of endotoxin was followed after 30 min by a bolus i.v. injection of the anti-TNF F(ab')2 fragment MAK 195F (0.1 mg/kg). Post-treatment with MAK 195F completely prevented the appearance of TNF activity in serum elicited by endotoxin, and markedly reduced the rises in the serum concentrations of IL-6 and IL-8. In addition, the endotoxin-induced increases in the type I and type II soluble TNF receptors were also profoundly inhibited by MAK 195F, suggesting that TNF is involved in the release of its own soluble receptors in endotoxaemia. Neutrophilic leucocytosis was not affected by MAK 195F. In contrast, MAK 195F did significantly abrogate neutrophil degranulation, as measured by the plasma concentrations of lactoferrin. These results indicate that treatment with anti-TNF 30 min after the administration of endotoxin is still effective in attenuating the induction of the cytokine network and of neutrophil degranulation.

Animals↗

Effect of hypertriglyceridemia on endotoxin responsiveness in humans.

Triglyceride-rich lipoproteins can inhibit endotoxin activity in vitro and in rodents. We sought to determine whether Intralipid, a triglyceride-rich fat emulsion which in contact with plasma functions similarly to endogenous lipoproteins, can alter the human response to endotoxin. Intralipid inhibited endotoxin-induced cytokine production in human whole blood in vitro in a dose-dependent manner, with maximal inhibition (up to 70%) being achieved at a concentration of 10 g/liter. In healthy men, a bolus intravenous injection of endotoxin (lot EC-5; 20 U/kg of body weight) was given midway through a 4-h infusion (125 ml/h) of either 5% glucose (n = 5) or 20% Intralipid (n = 5). The infusion of Intralipid led to an increase in triglyceride levels in serum from 95 +/- 16 to 818 +/- 135 mg/dl prior to endotoxin administration, i.e., levels that importantly reduced cytokine production in endotoxin-stimulated whole blood. However, in vivo hypertriglyceridemia did not influence inflammatory responses to endotoxin (fever, release of tumor necrosis factor and soluble tumor necrosis factor receptors, and leukocytosis) or even potentiated endotoxin responses (release of interleukins 6 and 8 and neutrophil degranulation). Hypertriglyceridemia does not inhibit the in vivo responses to endotoxin in humans.

Adult↗

Interleukin-1 receptor blockade does not affect endotoxin-induced changes in plasma thyroid hormone and thyrotropin concentrations in man.

Interleukin-1 (IL-1) has been implicated as a mediator of the euthyroid sick syndrome. The effects of IL-1 can be blocked by the naturally occurring IL-1 receptor antagonist (IL-1ra). In the present study, iv administration of endotoxin was used as a human model of the euthyroid sick syndrome. To assess the role of endogenous IL-1 in endotoxin-induced changes in plasma thyroid hormone and TSH concentrations, 18 healthy postabsorptive humans were studied on a control study day, followed 3 days later by a study day on which they were randomly assigned to one of three treatments: a 6-h infusion of recombinant human IL-1ra alone (133 mg/h), endotoxin alone (lot EC-5; 20 U/kg), or both endotoxin and IL-1ra. Administration of IL-1ra alone did not affect the plasma concentrations of thyroid hormones or TSH compared with those on the control day. Endotoxin injection was associated with decreases in T4 (P = 0.06 vs. the control day), free T4 (P = 0.02), T3 (P < 0.001), and TSH (P < 0.0001) and a rise in rT3 (P < 0.001), reproducing the major features of the euthyroid sick syndrome. Coinfusion of IL-1ra did not influence these endotoxin-induced changes. Our results suggest that endogenous IL-1 does not play an important role in the alterations in plasma thyroid hormone and TSH concentrations induced by mild endotoxemia in healthy humans.

Adult↗

Complete inhibition of endotoxin-induced coagulation activation in chimpanzees with a monoclonal Fab fragment against factor VII/VIIa.

Gram-negative sepsis is oftentimes complicated by activation of coagulation with disseminated intravascular coagulation and microthrombosis. This may contribute to the associated morbidity, multiple organ failure and death. Recent studies have established that the tissue factor-dependent pathway of blood coagulation has a significant participatory role in the initial endotoxin-induced activation of coagulation. Tissue factor (TF), expressed on the surface of activated monocytes and endothelial cells forms cell surface complexes with free circulating factors VII and VIIa. The latter complex proteolytically activates factors X and IX. Recent in vivo experiments have shown that a rapidly neutralizing TF monoclonal antibody prevents and arrests the endotoxin-induced activation of coagulation and similar studies have shown to reduce mortality in baboons. In this study we describe the preparation of a factor VII/VIIa neutralizing monoclonal Fab fragment and characterize its effect on in vivo activation of coagulation during experimental endotoxemia in chimpanzees. Four chimpanzees received a bolus intravenous injection of 4 ng/kg endotoxin in combination with Fab fragments of a factor VII/VIIa neutralizing murine monoclonal antibody (12D10) at a dose of either 50 micrograms/kg (n = 2) or 100 micrograms/kg (n = 2). Four control animals received a bolus injection of endotoxin alone. Administration of the 12D10 Fab fragments, immediately preceding the endotoxin bolus injection, effectively blocked the endotoxin-induced activation of coagulation. Plasma levels of products of in vivo activation, namely F1 + 2, TAT complexes and FpA remained at baseline values. The administration of 12D10 resulted in a rapid decline in factor VII/VIIa antigen levels which remained below 5 ng/ml for 180-240 min, followed by a rapid return to baseline levels.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Regulation of interleukin 10 release by tumor necrosis factor in humans and chimpanzees.

Interleukin 10 (IL-10) has been shown to inhibit endotoxin-induced tumor necrosis factor (TNF) production. To assess the role of TNF in the induction of IL-10 in endotoxemia, four healthy men were studied after a bolus intravenous injection of recombinant human TNF (50 micrograms/m2). In addition, 13 healthy chimpanzees were investigated after a bolus intravenous injection of Escherichia coli endotoxin (4 ng/kg), 6 animals received endotoxin only, 4 animals received a simultaneous intravenous injection of a monoclonal anti-TNF antibody, whereas 3 chimpanzees were treated with an anti-TNF F(ab')2 fragment 30 min after the administration of endotoxin. TNF induced a modest rise in IL-10 concentrations peaking after 45 min (47 +/- 32 pg/ml; p < 0.05). IL-10 peaked 2 h after injection of endotoxin (202 +/- 61 pg/ml; p < 0.005). In both anti-TNF-treated groups, the early endotoxin-induced TNF activity was completely neutralized. Simultaneous anti-TNF treatment attenuated endotoxin-induced IL-10 release (73 +/- 13 pg/ml; p < 0.01 versus endotoxin alone), whereas postponed anti-TNF treatment did not significantly affect this response (p = 0.21). These results indicate that TNF, in part, mediates the induction of IL-10 in endotoxemia, resulting in an autoregulatory feedback loop.

Adult↗

Elimination of interleukin 6 attenuates coagulation activation in experimental endotoxemia in chimpanzees.

The role of interleukin 6 (IL-6) in the toxic sequelae of sepsis is controversial. To assess the part of IL-6 in inflammatory responses to endotoxin, we investigated eight chimpanzees after either a bolus intravenous injection of Escherichia coli endotoxin (n = 4; 4 ng/kg) or after the same dose of endotoxin with a simultaneous bolus intravenous injection of an anti-IL-6 mAb (30 mg; n = 4). Anti-IL-6 did not affect the induction of the cytokine network (tumor necrosis factor [TNF], soluble TNF receptors types I and II, and IL-8) by endotoxin, nor did it influence the occurrence of a neutrophilic leukocytosis and neutrophil degranulation, as monitored by the measurement of elastase-alpha 1-antitrypsin complexes. In contrast, anti-IL-6 markedly attenuated endotoxin-induced activation of coagulation, monitored with the plasma levels of the prothrombin fragment F1+2 and thrombin-antithrombin III complexes, whereas activation of fibrinolysis, determined with the plasma concentrations of plasmin-alpha 2-antiplasmin complexes, remained unaltered. We conclude that IL-6 does not have a feedback effect on the release of other cytokines after injection of endotoxin, and that it is not involved in endotoxin-induced neutrophilia or neutrophil degranulation. IL-6 is, however, an important intermediate factor in activation of coagulation in low grade endotoxemia in chimpanzees.

Animals↗