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Biomedical subjects

S E Calvano

Publications and source records attributed to S E Calvano.

At least 37 records · Page 2Linked to original sources

Influence of IL-1 receptor blockade on the human response to endotoxemia.

Although the experimental administration of IL-1 induces several aspects of the inflammatory response, such as fever, tachycardia, and acute phase proteinemia, the contribution of IL-1 to the human responses to injury or infection remains unclear. A specific IL-1R antagonist (IL-1ra), which effectively blocks the actions of IL-1, was utilized to evaluate the influence of endogenous IL-1 during experimental human endotoxemia. Eighteen healthy volunteers each underwent one control study day, followed 3 days later by one of three randomly chosen treatments: a 6-h infusion of IL-1ra alone (133 mg/h), 20 U/kg national reference endotoxin alone, or both endotoxin and IL-1ra infusion. IL-1ra administration alone was not associated with any observable response. Despite achieving high circulating levels of IL-1ra (34 +/- 3 micrograms/ml), there were no significant differences in hemodynamic parameters, core temperature, or resting energy expenditure in those endotoxemic volunteers receiving IL-1ra when compared with those who did not. Furthermore, leukocyte kinetic and circulating cytokine, acute phase protein, and endocrine responses were similar in both endotoxemic groups. However, IL-1 blockade did significantly reduce the subjective severity of symptoms experienced by the endotoxemic volunteers (p < 0.05). This study demonstrates that an endogenous IL-1 response does not play a significant role in the hemodynamic, immunologic, and metabolic responses to mild endotoxemia in humans.

Adrenocorticotropic Hormone↗

Antimicrobial effects of granulocyte-macrophage colony-stimulating factor in protein-energy malnutrition.

OBJECTIVES: To evaluate, in a murine model of protein-energy malnutrition, whether granulocyte-macrophage colony-stimulating factor (GM-CSF) improves the host response to a septic challenge and to determine the potential mechanisms involved. DESIGN: Nonblinded study of GM-CSF in mice with protein-energy malnutrition. SETTING: A university-based surgical laboratory and animal facility. INTERVENTION: In study 1, malnourished mice were randomized to receive either GM-CSF (120 micrograms/kg subcutaneously to receive either GM-CSF (120 micrograms/kg subcutaneously from day 4 to 7 of the protein-free diet) or saline vehicle as a control. On day 7, all mice were given Candida albicans (5 x 10(5) organisms intravenously). In study 2, malnourished mice received the same dose of GM-CSF or saline vehicle for 7 days of the protein-free diet. MAIN OUTCOME MEASURES: In study 1 mice were followed up for survival. In study 2, after 7 days of diets, splenic macrophages were harvested and were assayed for interleukin-6, superoxide anion, and nitric oxide production. Splenocytes were stimulated with concanavalin A (5 micrograms/mL) for interleukin-4, interleukin-10, and interferon-gamma production. RESULTS: Treatment with GM-CSF significantly enhanced survival in malnourished mice infected with C albicans. Treatment with GM-CSF was associated with increased production from splenic macrophages of interleukin-6, superoxide anion, and nitric oxide as well as decreased interleukin-4 production from splenocytes. CONCLUSIONS: This study suggests a beneficial role for GM-CSF in the malnourished host predisposed to infection. The antimicrobial properties of GM-CSF may function through enhanced production of nitric oxide and superoxide anion.

Animals↗

The effect of granulocyte-macrophage colony-stimulating factor on myeloid cells and its clinical applications.

Granulocyte-macrophage colony-stimulating factor (GM-CSF) is a naturally occurring growth factor produced by several cell types in response to a variety of stimuli. GM-CSF has potent stimulatory effects on the growth and maturation of hematopoietic cells and has profound effects on mature circulating effector cells. Clinical applications of GM-CSF include ameliorating chemotherapy-induced neutropenia and enhancing hematopoietic recovery after bone marrow transplantation. This review evaluates the effect of GM-CSF on myeloid cells and its clinical applications.

Acquired Immunodeficiency Syndrome↗

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↗

Glucocorticoids mediate macrophage dysfunction in protein calorie malnutrition.

BACKGROUND: In hospitalized patients protein calorie malnutrition substantially increases the incidence of infection and death. Protein calorie malnutrition results in significant macrophage dysfunction. Whether a primary nutrient deficit or elevated glucocorticoids levels mediate this dysfunction is unclear. The aim of this study was to evaluate the neuroendocrine response to protein calorie malnutrition and its effects on macrophage function. METHODS: By use of a murine model of protein calorie malnutrition, mice were randomized to (1) a standard 24% casein diet (control), (2) protein-free diet (PFD), (3) PFD in adrenalectomized mice, (4) PFD plus the glucocorticoid receptor antagonist RU486 (10 mg/kg), or (5) a standard 24% casein diet plus a 50 mg corticosterone pellet implanted subcutaneously for 7 days. Mice were killed after 7 days, and body weight and serum albumin and corticosterone levels were measured. Peritoneal macrophages were obtained, and stimulated superoxide and interleukin-6 productions were measured. RESULTS: Protein calorie malnutrition significantly impaired macrophage function and elevated serum glucocorticoid levels. Blocking the stress corticosterone response with adrenalectomy or using RU486 to block corticosterone receptors prevented the impairment of macrophage function without restoring nutritional indexes (body weight and serum albumin level). Administration of glucocorticoids via a subcutaneous pellet reproduced macrophage impairment without leading to nutritional deficits. CONCLUSIONS: The neuroendocrine systemic response to protein calorie malnutrition with elevated serum corticosterone levels is a major determinant of macrophage dysfunction in protein calorie malnutrition.

Animal Nutritional Physiological Phenomena↗

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↗

A human tumor necrosis factor (TNF) alpha mutant that binds exclusively to the p55 TNF receptor produces toxicity in the baboon.

A number of recent studies have demonstrated that cellular responses to tumor necrosis factor (TNF) mediated by the p55 and the p75 TNF receptors are distinct. To evaluate the relative in vivo toxicities of wild-type TNF alpha (wtTNF alpha) and a novel p55 TNF selective receptor agonist, healthy, anesthetized baboons (Papio sp.) were infused with a near-lethal dose of either wtTNF alpha or a TNF alpha double mutant (dmTNF alpha) that binds specifically to the p55, but not to the p75, TNF receptor. Both wtTNF alpha and dmTNF alpha produced comparable acute hypotension, tachycardia, increased plasma lactate, and organ dysfunction in Papio. However, administration of wtTNF alpha produced a marked granulocytosis and loss of granulocyte TNF receptors, whereas little if any changes in neutrophil number or cell surface TNF receptor density were seen after dmTNF alpha mutant administration. Infusion of dmTNF alpha resulted in a plasma endogenous TNF alpha response that peaked after 90-120 min. We conclude that selective p55 TNF receptor activation is associated with early hemodynamic changes and the autocrine release of endogenous TNF alpha. Significant systemic toxicity results from p55 TNF receptor activation, but the role of the p75 TNF receptor in systemic TNF toxicity requires further study.

Adrenal Glands↗

Changes in polymorphonuclear leukocyte surface and plasma bactericidal/permeability-increasing protein and plasma lipopolysaccharide binding protein during endotoxemia or sepsis.

OBJECTIVE: To evaluate changes in levels of polymorphonuclear leukocyte surface bactericidal/permeability-increasing protein (BPI), plasma BPI, and plasma lipopolysaccharide (LPS) binding protein (LBP) in normal human volunteers administered Escherichia coli LPS and in patients with sepsis and gram-negative infections. DESIGN: Survey; case series. SETTING: Clinical research center and surgical intensive care unit of a medical school and an associated tertiary care hospital. PATIENTS OR OTHER PARTICIPANTS: Volunteers (n = 10) screened prior to study by history and physical examination to exclude those with underlying diseases or hematologic abnormalities. Consecutive sample of surgical intensive care unit patients (n = 10) meeting criteria for sepsis syndrome with gram-negative infection. An additional patient with systemic inflammatory response syndrome but no gram-negative infection. All patients were studied on meeting the criteria. Three of the patients with sepsis syndrome and the patient with systemic inflammatory response syndrome were evaluated on recovery (approximately 25 days after initial study). Because these studies in volunteers and patients overlapped temporally, the control values were those of volunteers evaluated prior to LPS administration. No matching was employed. MEASUREMENTS AND RESULTS: Compared with controls, LPS-challenged volunteers and patients with sepsis both exhibited significant granulocytosis (P < .01) and increased concentrations of polymorphonuclear leukocyte surface BPI (P < .01) and of plasma LBP (P < .01). Plasma BPI concentrations were increased (P < .01) in volunteers following LPS administration. There was a trend toward increased concentrations of plasma BPI in patients, but this was not significant relative to controls. Maximum concentrations of plasma LBP were approximately 250- and 3000-fold higher than plasma BPI concentrations in endotoxemic volunteers and in patients, respectively. CONCLUSIONS: Circulating polymorphonuclear leukocytes increase expression of BPI in response to LPS or gram-negative sepsis. Subsequently, concentrations of plasma BPI and LBP increase. Because both LBP and BPI bind to LPS, it is suggested that endogenously derived plasma levels of BPI are likely to be inadequate to compete for LPS binding to the much more abundant LBP in the circulation.

Acute-Phase Proteins↗

The role of bactericidal/permeability-increasing protein in the treatment of primate bacteremia and septic shock.

Human neutrophil azurophilic granules contain an approximately 55-kDa protein, known as bactericidal/permeability-increasing protein (BPI), which possesses a high-affinity binding domain for the lipid A component of lipopolysaccharide (LPS). The in vivo LPS neutralizing activity of exogenous BPI was studied in a model of lethal Escherichia coli bacteremia. Five baboons were treated with BPI (5 mg/kg bolus injection followed by a 95 micrograms/kg/min BPI infusion over 4 hr), while four additional animals received a genetically engineered variant of BPI (NCY103). Five animals received a placebo treatment and served as controls. Both wild-type rhBPI and NCY103 significantly (P < 0.05) decreased blood levels of LPS throughout an 8-hr evaluation period following live bacterial challenge. Two hours following E. coli administration, LPS levels peaked in the controls, at 6.86 +/- 3.22 ng/ml, whereas LPS levels were 3.39 +/- 2.1 ng/ml in the BPI group and 2.04 +/- 1.18 ng/ml in the NCY103 group. Tumor necrosis factor-alpha (TNF-alpha) and interleukin-6 levels likewise were attenuated in the treatment groups, whereas circulating sTNFR I was significantly (P < 0.05) reduced only in the BPI group. Leukocytopenia and granulocytopenia were significantly (P < 0.02) lessened in the BPI group, by an average of 59% leukocytopenia and 65% granulocytopenia, respectively. This study supports the concept of E. coli LPS neutralization by BPI in vivo and demonstrates that a moderate (70%) reduction in peak LPS-LAL activity is sufficient to alter some hematologic and cytokine manifestations of bacteremia.

Animals↗

Glucocorticoid therapy alters hormonal and cytokine responses to endotoxin in man.

Previous experimental data have demonstrated that steroid pretreatment regulates endotoxin-elicited cytokine production. The timing of such hypercortisolemia also appears to be a major determinant of both the systemic and the cytokine response to infectious stimuli. Our study was undertaken to further study the in vivo influence of glucocorticoid infusion concurrent with and before endotoxin exposure in man. A total of 23 normal human subjects were given endotoxin (LPS) alone or pretreated with hydrocortisone infusion for 6 h immediately before and concomitant to LPS administration; or rendered hypercortisolemic for a 6-h period waiting 6, 12, or 144 h before LPS administration. LPS administration was followed by significant elevations in temperature (1.9 +/- 0.3 degrees C), pulse (29 +/- 6 bpm), and resting energy expenditure (26.2 +/- 0.4 kcal/kg/day) as well as epinephrine (236 +/- 59 pg/ml), cortisol (296 +/- 29), and C-reactive protein (4.2 +/- .03 mg/dl) as compared with base-line values. Levels of TNF and IL-6 that were not detectable before LPS administration, peaked, respectively, at 90 and 120 min after LPS (155 +/- 4 pg/ml, 12 +/- 1 U/ml). Glucocorticoids when given immediately before and concomitant with LPS significantly attenuated the temperature (0.8 +/- 0.01 degrees C) and pulse rate response (10 +/- 3 bpm) seen after LPS alone as well as suppressing peak levels of epinephrine (78 +/- 14 pg/ml) and C-reactive protein (undetected). TNF remained undetectable in this group although the IL-6 response (14 +/- 1 U/ml) was unchanged. With a 6-h interval between hydrocortisone infusion and LPS challenge, changes in temperature, pulse, resting energy expenditure, and hormone levels were similar to those seen after LPS alone whereas TNF remained undetectable and IL-6 levels were similar to subjects receiving LPS alone. Subjects receiving LPS after 12 or 144 h after hydrocortisone infusion displayed hemodynamic and hormonal responses similar to the LPS alone group, yet mounted significantly greater circulating levels of both IL-6 (117 +/- 14 U/ml, 160 +/- 51 U/ml at 12 and 144 h) and TNF (609 +/- 173, 671 +/- 132 pg/ml at 12 and 144 h) to those observed after LPS alone. We conclude that antecedent periods of hypercortisolemia participate in regulation of the hemodynamic, hormonal, and cytokine responses to endotoxin and that a complex temporal relationship between hypercortisolemia and LPS induced cytokine and systemic responses exists.

Adult↗

Comparison of peripheral blood leukocyte kinetics after live Escherichia coli, endotoxin, or interleukin-1 alpha administration. Studies using a novel interleukin-1 receptor antagonist.

OBJECTIVE: This study was undertaken to evaluate whether hematologic and immunologic effects observed after bacteremia and endotoxemia in the host could be replicated by administration of recombinant human interleukin-1 alpha (IL-1 alpha) in a primate model. Furthermore, to determine whether endogenously produced interleukin-1 (IL-1) contributes to the changes observed during endotoxemia or gram-negative septic shock, a specific IL-1 receptor antagonist (IL-1 ra) was administered. SUMMARY BACKGROUND DATA: The lipopolysaccharide (LPS) component of the outer membrane of gram-negative bacteria initiates a constellation of metabolic and immunologic host responses. IL-1, a macrophage-derived cytokine, acts as a key mediator in the host response to infection and inflammation. METHODS: Baboons were randomly assigned to receive either recombinant human IL-1 alpha, LPS, or live Escherichia coli both with or without concomitant administration of IL-1ra. Blood was collected hourly and analyzed using flow cytometric techniques. RESULTS: Both endotoxemia and live E. coli bacteremia induced an acute granulocytopenia; however, the granulocytopenia gradually resolved in the endotoxemic group, but was sustained in the bacteremic group. An early lymphopenia and monocytopenia was elicited by LPS or E. coli and persisted throughout the experiment. Recombinant human IL-1 alpha induced the following: (1) an early, transient decline in granulocytes followed by a sustained granulocytosis; (2) a lymphopenia; and (3) a transient monocytopenia followed by a gradual return to baseline. Although IL-1ra had no effect on leukocyte kinetics with either live E. coli or LPS, the IL-1ra significantly abrogated the monocytopenia seen with recombinant human IL-1 alpha administration alone. CONCLUSIONS: These results suggest that administration of recombinant human IL-1 alpha can replicate some of the characteristic patterns of hematologic change associated with bacteremia and endotoxemia. However, an endogenous IL-1 response is not required for these changes to occur. Rather, the data suggest that other inflammatory mediators induced by endotoxemia or gram-negative bacteremia, such as tumor necrosis factor-alpha (TNF alpha), may be involved.

Animals↗

Effect of combined cortisol-endotoxin administration on peripheral blood leukocyte counts and phenotype in normal humans.

We studied the role of lipopolysaccharide and the associated hypercortisolemic response as mediators of leukocyte changes associated with endotoxemia. Normal human subjects were given continuous, 12-hour, intravenous infusions of cortisol. After 6 hours of cortisol infusion, lipopolysaccharide (20 U/kg) was administered in an intravenous bolus. Plasma cortisol and blood leukocyte counts and lymphocyte subset proportions were evaluated every hour throughout the 12-hour study period. After 6 hours of cortisol infusion, lymphocyte counts and proportions of CD4+ helper/inducer T cells had declined significantly. The fact that these cells did not decline further in response to lipopolysaccharide and continued cortisol infusion suggests that lipopolysaccharide-induced lymphocyte changes are cortisol dependent. In contrast, the granulocytosis normally observed after lipopolysaccharide administration was unaffected by cortisol infusion. Finally, the monocyte counts and proportions of B cells (HLA-DR+ or CD20+ cells) responded to cortisol infusion and LPS in a pattern distinct from that of lipopolysaccharide alone. These results indicate that lipopolysaccharide-induced hypercortisolemia plays a role in immune modulation during endotoxemia.

Adult↗

In vivo effects of the antiglucocorticoid RU 486 on glucocorticoid and cytokine responses to Escherichia coli endotoxin.

The endogenous adrenocortical response to sepsis is critical for host survival. The in vivo interactions among the endogenous glucocorticoid response, the induction of cytokines, and host survival during endotoxemia were explored in this study by use of the glucocorticoid receptor antagonist RU 486. Male Lewis rats underwent sterile insertion of a right jugular venous catheter. After a 72-h recovery period, animals received a 50% lethal dose of Escherichia coli endotoxin (2.5 mg/kg) via the catheter after pretreatment for 30 min prior to lipopolysaccharide (LPS) treatment with (i) vehicle alone intravenously (i.v.) (-corticosterone [-Cort]/-RU 486/+LPS) (n = 10), (ii) the antiglucocorticoid RU 486 (10 mg/kg) i.v. (-Cort/+RU 486/+LPS) (n = 11), or (iii) RU 486 (10 mg/kg) i.v. in animals that had undergone subcutaneous implantation of a corticosterone pellet at the time of catheter insertion (+Cort/+RU 486/+LPS) (n = 10). Except in animals receiving corticosterone pretreatment, baseline plasma corticosterone levels were low in all groups. Plasma corticosterone levels increased significantly (P less than 0.001) above the baseline following LPS administration. Animals in the -Cort/+RU 486/+LPS-treated group exhibited significantly increased mortality (P less than 0.001), with only 9% of the animals surviving at 72 h, as well as significantly increased plasma interleukin-6 levels, compared with animals receiving the vehicle alone (-Cort/-RU 486/+LPS), which showed 50% mortality. Pretreatment with corticosterone and RU 486 (+Cort/+RU 486/+LPS) significantly (P less than 0.001) reversed the mortality observed with RU 486 pretreatment alone (-Cort/+RU 486/+LPS), with 70% of the animals surviving at 72 h, and significantly attenuated the peak plasma tumor necrosis factor and interleukin-6 responses to LPS, compared with those in the animals treated with vehicle alone. These data demonstrate that the blockade of glucocorticoid binding by RU 486 increases LPS-induced mortality. The reversal of this effect by the induction of hypercorticosteronemia prior to RU 486 and LPS exposure (+Cort/+RU 486/+LPS) improves survival and is further associated with significant attenuation of cytokine production. Therefore, these data suggest that the protective effect of the endogenous glucocorticoid response to acute endotoxemia may result from the down-regulation of a potentially lethal cytokine response.

Animals↗

Pathophysiologic glucocorticoid levels and survival of translocating bacteria.

Burn wound sepsis in rats results in sustained corticosterone elevations and the prolonged presence of translocated bacteria in the mesenteric lymph nodes (MLNs). To determine if survival of bacteria in the MLNs may be influenced by pathophysiologic corticosterone levels, MLNs were quantitatively analyzed from rats randomized to the following groups: burn wound sepsis (BI); BI with adrenocortical response attenuated by cyclosporine (cyclosporine/BI); or cyclosporine/BI with corticosterone replacement (cyclosporine/BI + P). Although rates of bacterial translocation were similar, corticosterone levels were significantly different among the three groups and correlated with the number of lymphocytes and the number of enteric bacteria present per gram of MLN. Thus, pathophysiologic elevations of corticosterone levels during sepsis may exert an effect that allows survival of translocated bacteria in the MLNs of rats, perhaps due to glucocorticoid-associated alterations in regional immunity.

Administration, Cutaneous↗

Myocardial reperfusion injury. Platelet-activating factor stimulates polymorphonuclear leukocyte hydrogen peroxide production during myocardial reperfusion.

To study the roles of platelet-activating factor, polymorphonuclear leukocytes, and oxygen free radicals in myocardial reperfusion injury, we subjected 10 sheep to 90 minutes of mid-left anterior descending coronary artery followed by 6 hours of reperfusion. Stainings with gentian violet and tetratriphenyl ammonium chloride demonstrated 20% +/- 3% of the left ventricular mass at risk for ischemia, of which 75% +/- 10% underwent infarction. Coronary sinus blood was assayed for platelet-activating factor and neutrophil hydrogen peroxide production before and during coronary occlusion and during reperfusion. Platelet-activating factor was isolated by column chromatography and lipid extraction and quantified by radioimmunoassay. Neutrophil hydrogen peroxide production was measured by a 2',7'-dichlorofluorescein flow-cytometric assay. Platelet-activating factor was elevated to 899 +/- 210 pg/ml at 15 minutes of reperfusion, compared with the preocclusion level of 271 +/- 55 pg/ml and coronary occlusion level of 359 +/- 64 pg/ml (p less than 0.05; analysis of variance). Neutrophil hydrogen peroxide production, measured on a relative fluorescence scale, was also elevated to a level of 141 +/- 27 at 1 hour of reperfusion, compared with the preocclusion level of 103 +/- 6 and the coronary occlusion level of 114 +/- 13 (p less than 0.01; analysis of variance). Both of these parameters returned toward baselines at the end of 6 hours of reperfusion. Histologic examination revealed infiltration of polymorphonuclear leukocytes into the interstitium of the reperfused myocardium. Neutrophils isolated from unoperated and healthy sheep demonstrated a graded dose response in hydrogen peroxide production when stimulated by purified platelet-activating factor in vitro. These findings suggest that platelet-activating factor is released in the coronary circulation and is a mediator of oxygen free radical production in polymorphonuclear leukocytes during myocardial reperfusion.

Animals↗

Increased neutrophil mobilization and decreased chemotaxis during cortisol and epinephrine infusions.

Although hormones are putative mediators of neutrophil changes after injury, the effects of trauma-induced levels of plasma cortisol and epinephrine on circulating neutrophils have not been reported in humans. The dynamics of PMN mobilization and chemotaxis were evaluated during 19 infusions of epinephrine or cortisol or a combined infusion of both hormones in ten normal volunteers. Basal levels of epinephrine and cortisol increased during infusions to levels consistent with those reported following severe injury. Circulating neutrophil counts increased in parallel with plasma cortisol levels. Epinephrine mobilized the entire marginated pool of neutrophils, and the neutrophil half-life was extended from a normal of 6.6 hours to 10.4 hours by cortisol. Chemotaxis after six hours of epinephrine infusion was reduced compared with baseline chemotaxis. In four volunteers who had a second infusion of cortisol, chemotaxis was significantly depressed ten days after the infusion compared with baseline. From these data we conclude that stress levels of epinephrine mobilize the marginated pool of granulocytes into the circulating pool in a linear fashion, and cortisol raises the half-life of circulating neutrophils. Reduced neutrophil chemotaxis seen as a consequence of these infusions could account for some of the increased susceptibility to infection that occurs after major trauma.

Chemotaxis, Leukocyte↗

Lymphomas in dogs. A morphologic, immunologic, and clinical study.

One hundred seventy-six canine lymphomas were classified morphologically using four of the major human lymphoma classification schemes (Rappaport, Lukes-Collins, Kiel, and the Working Formulation). All 176 dogs received the same chemotherapeutic protocol. Sixty-two of these lymphomas had their immunophenotypes established by examination of cell surface markers by automated cytofluorography. Several different morphologic types of canine lymphoma were identified and these were comparable to morphologic categories in human classification schemes. Follicular and low grade lymphomas were rare. The two most common morphologic types were diffuse large cell (centroblastic) and immunoblastic. The Kiel classification appeared to be the most useful human scheme for classifying the canine lymphomas. Cytofluorographic analysis was generally straightforward, and 60 of the 62 lymphomas were placed into one of three immunophenotypic categories: 27 pan-T(LQ1)+SIg+, 21 pan-T(LQ1)-SIg+, and 12 pan-T(LQ1)+SIg-. Two of the lymphomas could not be characterized immunologically because a pre-existing or reactive non-neoplastic population of lymphocytes made interpretation of single cell suspension analysis difficult. The authors identified correlations between morphology and survival and disease-free remission; dogs with high-grade tumors generally survived the longest and had the longest remissions. No correlations were identified between high concentrations of serum lactate dehydrogenase, age, sex, or stage of disease, and morphology, immunophenotype, remission, or survival times. A significant correlation between clinical illness and survival time was documented. The median age of the dogs was nine years, no significant effect of sex on prevalence was observed, and some breeds were significantly overrepresented. Significant morphologic-immunophenotypic correlations included shorter remission and survival times for T-cell tumors than B-cell tumors, and a highly significant correlation between the pan-T(LQ1)+SIg-"T cell" phenotype and hypercalcemia.

Animals↗

Interleukin 1 receptor blockade attenuates the host inflammatory response.

Cytokines, including interleukin 1 (IL-1), tumor necrosis factor alpha, and interleukin 6, are often produced in response to tissue injury and contribute to several host responses such as weight loss, anorexia, and acute-phase protein synthesis. However, the role of IL-1 in specific tissue responses is unclear. To test our hypothesis that specific in vivo blockade of IL-1's action might inhibit the catabolic host changes associated with inflammation, mice were passively immunized with a monoclonal antibody directed against the murine IL-1 receptor prior to initiation of a turpentine-induced sterile abscess. This antibody prevents IL-1-mediated proliferation of murine thymocytes in vitro by inhibiting IL-1 alpha and IL-1 beta by way of competition for a common receptor. Weight loss following turpentine challenge was prevented by daily injections of anti-IL-1 receptor monoclonal IgG. Body composition analysis confirmed that lean tissue and fat were preserved by passive immunization. Furthermore, pretreatment with an anti-IL-1 receptor monoclonal antibody significantly attenuated the plasma amyloid P and interleukin 6 responses but did not affect the decline in plasma albumin or the increase in circulating corticosterone. Passive immunization of similar mice with polyclonal antisera against another cytokine, tumor necrosis factor alpha, failed to prevent either the weight loss or hepatic acute-phase protein changes observed in this inflammatory model. These findings suggest that IL-1 orchestrates weight loss and body compositional changes during inflammation and contributes to the induction of interleukin 6 and acute-phase protein synthesis.

Acute-Phase Proteins↗