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Biomedical subjects

S F Lowry

Publications and source records attributed to S F Lowry.

At least 19 recordsLinked to original sources

Tumor necrosis factor soluble receptors circulate during experimental and clinical inflammation and can protect against excessive tumor necrosis factor alpha in vitro and in vivo.

Tumor necrosis factor alpha (TNF alpha), a primary mediator of systemic responses to sepsis and infection, can be injurious to the organism when present in excessive quantities. Here we report that two types of naturally occurring soluble TNF receptors (sTNFR-I and sTNFR-II) circulate in human experimental endotoxemia and in critically ill patients and demonstrate that they neutralize TNF alpha-induced cytotoxicity and immunoreactivity in vitro. Utilizing immunoassays that discriminate between total sTNFR-I and sTNFR-I not bound to TNF alpha, we show that sTNFR-I-TNF alpha complexes may circulate even in the absence of detectable free TNF alpha. To investigate the therapeutic possibilities of sTNFR-I, recombinant protein was administered to nonhuman primates with lethal bacteremia and found to attenuate hemodynamic collapse and cytokine induction. We conclude that soluble receptors for TNF alpha are inducible in inflammation and circulate at levels sufficient to block the in vitro cytotoxicity associated with TNF alpha levels observed in nonlethal infection. Administration of sTNFR-I can prevent the adverse pathologic sequelae caused by the exaggerated TNF alpha production observed in lethal sepsis.

Animals

Interleukin-1 receptor antagonist circulates in experimental inflammation and in human disease.

Interleukin-1 receptor antagonist (IL-1ra) is a 22-Kd protein that shares homology with IL-1 beta, binds to the IL-1 receptor, but has no known agonist properties. This inhibitor appears to be the first cytokine whose sole function is to block the actions of another cytokine. Exogenous IL-1ra administration has been shown to reduce mortality in experimental septic shock. We now report that IL-1ra is endogenously produced and circulates in experimental inflammation and in clinical disease. After experimental endotoxemia in human volunteers, IL-1ra concentrations increase from a baseline concentration of 460 +/- 200 pg mL-1 to 14,870 +/- 290 pg mL-1 at 3 hours (P less than .05). IL-1ra is also detectable in all plasma samples from critically ill patients with a mean concentration of 8,680 +/- 2,060 pg mL-1 (range 320 to 55,370 pgs mL-1). In nonhuman primates, Escherichia coli septic shock induces elevated plasma levels of IL-4ra (P less than .05). However, in animals that eventually succumb to septic shock, Il-1ra appears in quantities presumed inadequate to block the pathologic sequelae associated with high IL-1 beta levels. The findings suggest that IL-1ra may play a role in modulating the systemic host responses to a variety of nonlethal disease states by altering the balance between cytokines and their antagonists.

Adult

Effects of intravenous IL-8 administration in nonhuman primates.

IL-8, a cytokine known for its potent and specific neutrophil activation and chemoattractant properties, has been recently detected in the circulation during septic shock, endotoxemia, and after IL-1 alpha administration. Because of its observed in vitro actions, it has been hypothesized that IL-8 may contribute to the dynamics of circulating granulocytes and to the pathologic sequelae seen in sepsis. Here, human rIL-8 is administered to healthy nonhuman primates as a single i.v. injection or as a continuous 8-h i.v. infusion. We demonstrate that both methods of i.v. administration result in a rapid but transient, severe granulocytopenia, followed by a granulocytosis that persists as long as IL-8 levels are detectable in the circulation. There were no hemodynamic changes after IL-8 administration, and animals remained clinically stable during the 24-h observation period. No detectable circulating TNF-alpha, IL-1 beta, or IL-6 response was induced by either IL-8 administration regimen. Histopathologic examination revealed mild to moderate neutrophilic margination in lung, liver, and spleen, of greater severity in baboons receiving the 8-h infusion. There was no associated neutrophilic infiltration or tissue injury. Thus, IL-8 modulates circulating granulocyte dynamics and likely directs their actions, but when administered i.v. to healthy animals, either as a bolus dose or as a continuous infusion for up to 8 h, does not induce the hemodynamic and metabolic aberrations or the acute organ damage seen during sepsis.

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

Tumour location influences local cytokine production and host metabolism.

To determine whether the location of tumour growth influences host cytokine and metabolic responses, experimental subcutaneous (SQ) and liver (LIV) tumours were compared in Buffalo rats. An LIV tumour that was only 1 +/- 1% (P < 0.05 versus SQ) of body weight produced similar anorexia, weight loss, acute phase response, and systemic cytokine responses as are SQ tumour that was 10 +/- 2% of body weight. Neither tumour-bearing group had abnormal liver function tests or evidence of obstructive biliary pathology. Tumour necrosis factor (TNF) was detected by western analysis in both tumour as well as histologically normal liver remote from the tumour in the LIV group but not in livers of animals in freely fed and SQ groups. The proximity of the tumour to competent tissue macrophage populations, such as hepatic Kupffer cells, may be sufficient to induce cachexia. Hence, tumour location may be as important as tumour burden in determining the host's response to cancer.

Animals

Tolerance to endotoxin prevents mortality in infected thermal injury: association with attenuated cytokine responses.

Endotoxin, a lipopolysaccharide (LPS), is a bacterial cell wall product instrumental in producing deleterious host responses to infection. This LPS appears to act, in part, by triggering release of endogenous mediators such as cytokines. Repeated exposures to endotoxin produce attenuated responses to this molecule. To examine the mechanisms and biologic consequences of this tolerance to LPS, Wistar rats were subjected to a 14-day course of LPS administration. Tolerance to LPS with regard to anorexia, weight loss, and acute-phase responses was noted. Attenuation of these physiologic responses was accompanied by abrogation of circulating cytokine appearance in response to endotoxin, suggesting that tolerance to LPS is in part due to a decreased production of cytokines. Tolerance to LPS also diminished the response to a subsequent infected thermal injury, as measured by food intake, body weight, fibrinogen levels, and mortality. Thus, clinical conditions involving repeated exposure to LPS may modify the host's responses to subsequent injury. The attenuated responses to injury accompanying the decreased production of cytokines further implicate cytokines in the pathogenesis of injury and disease.

Acute-Phase Reaction

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

Insulin-like growth factor I preserves host lean tissue mass in cancer cachexia.

Insulin-like growth factor I (IGF-I) has been implicated in the regulation and maintenance of skeletal muscle protein balance and thus may be of potential benefit in attenuating the cancer-cachectic process. To examine this hypothesis, 47 sham or tumor-implanted Fischer 344 rats were randomized to receive either continuous subcutaneous IGF-I (220 or 400 micrograms/day) or saline as control. In the tumor-bearing (TB) population, IGF-I-treated groups showed a dose-dependent increase in host weight gain (P less than 0.05), final carcass weight (P less than 0.05), and gastrocnemius muscle weights (P less than 0.05) and protein contents (0.50 +/- 0.02, 0.40 +/- 0.01, and 0.52 +/- 0.03 g/100 g host wt, for non-TB saline, TB saline, and TB 400 mg IGF-I groups, respectively; P less than 0.01, IGF-I vs. saline). Similar increases in muscle RNA and DNA contents (P less than 0.01) were induced by IGF-I treatment (P less than 0.05). IGF-I treatment in this rat sarcoma model significantly reduced the proportion of aneuploid cells in the tumor (aneuploid-to-diploid ratio: TB saline 1.1 +/- 0.2 vs. TB IGF-I 0.5 +/- 0.1; P less than 0.05). IGF-I treatment attenuated host muscle protein and lean tissue depletion without stimulation of tumor growth. The tumor aneuploid population was reduced in response to IGF-I treatment. Thus IGF-I may be a potential therapeutic agent in cancer-induced cachexia.

Analysis of Variance

Recombinant human growth hormone enhances the metabolic efficacy of parenteral nutrition: a double-blind, randomized controlled study.

This multicenter, randomized, double-blind study was performed to investigate whether recombinant GH improves the efficacy of total parenteral nutrition (TPN). Fifteen stable patients requiring parenteral feeding due to gastrointestinal/pancreatic disease were studied. Constant maintenance TPN providing approximately 30 kcal/kg day and approximately 1.6 g protein/kg.day was administered during an initial 7-day baseline period. After randomization, daily sc injections of saline (control, n = 9) or GH (10 mg/day, n = 6) were administered a 14-day treatment period as nutrient intake remained constant. Elemental balances for nitrogen (N), potassium (K), phosphorus (P), and sodium (Na) were determined daily and serial blood indices, vital signs, and other clinical parameters were monitored. Nutrient balances approached equilibrium during the baseline week in both groups. With GH administration, a significant increase in N, K, and P balance occurred; in contrast, nutrient balances did not change significantly from baseline values in control patients. The cumulative change (delta) in nutrient balances from the baseline week was also significantly greater in the GH-treated patients (delta N: control+2 +/- 7 g vs. GH+36 +/- 6. g, P less than 0.005; delta K:+57 +/- 45 mmol vs.+199 +/- 19 mmol, P less than 0.03; delta P: -27 +/- 30 mmol vs. +91 +/- 69 mmol, P less than 0.02). Plasma insulin-like growth factor-I concentrations rose 5-fold and serum cholesterol rose slightly with GH; no other significant change in group mean blood values occurred. One patient receiving GH and chronic prednisone therapy developed moderate hyperglycemia and mild peripheral edema; no other deleterious effects attributable to GH were observed. GH was well tolerated and significantly enhanced nutrient retention compared to standard parenteral feeding alone. GH improves the efficacy of parenteral nutrient utilization in patients requiring TPN.

Adolescent

Influence of hypercortisolemia on the acute-phase protein response to endotoxin in humans.

BACKGROUND: The response to systemic infection includes the coordinated appearance of hepatic acute-phase proteins, the production of which may be influenced by a counterregulatory hormonal background. This study sought to assess the potential for hypercortisolemic conditions to influence fibrinogen kinetics and other acute-phase protein responses in humans with endotoxemia. METHODS: Eleven hospitalized healthy male volunteers underwent two separate determinations of fibrinogen kinetics, one baseline and one after administration of endotoxin (2 ng/kg intravenously; lot EC-5). Seven volunteers were studied without hormonal manipulation and four in the presence of a hypercortisolemic background (hydrocortisone infusion, 3 micrograms/kg/min). Fibrinogen fractional synthetic rates were estimated from the incorporation of orally administered 15N-glycine, and fibrinogen, C-reactive protein, cortisol, tumor necrosis factor-alpha, and interleukin-6 levels were also determined. RESULTS: The presence of an antecedent hypercortisolemic background resulted in an attenuated interleukin-6 response, as well as decreased fibrinogen synthesis and C-reactive protein appearance. CONCLUSIONS: The current data suggest that glucocorticoid hormonal influences are of importance in the regulation of endotoxin-induced cytokine and acute-phase protein responses.

Acute-Phase Proteins

IL-8 in septic shock, endotoxemia, and after IL-1 administration.

Much effort has been directed toward elucidating the host response to sepsis and inflammation, resulting in the definition of a cascade of endogenous mediators that direct metabolic and immunological responses. Here we report that IL-8, a novel cytokine produced by a variety of cells in vitro in response to stimulation with bacterial LPS and the proinflammatory cytokines, appears in the circulation of primates in vivo during septic shock, sublethal endotoxemia, and after the administration of IL-1 alpha. The magnitude of the IL-8 response correlates with the severity of the insult, and levels of IL-8 peak relatively late, after those of TNF-alpha and IL-1 beta, and simultaneously with those of IL-6. IL-8 has been primarily defined as a selective activator and chemoattractant of neutrophils, and we demonstrate that after LPS or IL-1 alpha infusion, circulating neutrophil numbers rapidly recover from an initial neutropenia while IL-8 concentrations are maximal, supporting the hypothesis that IL-8 influences circulating leukocyte populations in vivo. We conclude that IL-8 is another participant in the cytokine cascade elicited by sepsis and inflammation and, as such, may play a significant role in host defense and disease.

Animals

Bacterial overgrowth and intestinal atrophy in the etiology of gut barrier failure in the rat.

Bacterial translocation occurs in animal models of shock, trauma, sepsis, and parenteral or elemental enteral alimentation. Bowel atrophy and cecal bacterial overgrowth have both been implicated in the pathophysiology of bacterial translocation in many of these models. To further define the etiology of bacterial translocation resulting from dietary manipulations, rats were fed a elemental/defined-formula diet (DFD) for 2 weeks ad libitum and then randomized to either intestinal decontamination with a nonabsorbable antibiotic (neomycin) or no antibiotic treatment. Neomycin treatment significantly (p less than 0.01) reduced the incidence of bacterial translocation after DFD, in association with a significant reduction in the number of cecal gram-negative bacteria. Neither loss of bowel mass after DFD nor bowel composition was affected by oral neomycin. Bacterial translocation after DFD would thus appear to be the result of cecal bacterial overgrowth rather than a loss of a physical intestinal barrier due to atrophy.

Animals

Impact of exogenous growth hormone on host preservation and tumor cell-cycle distribution in a rat sarcoma model.

Growth hormone (hGH) has been reported to improve nitrogen balances and accrue lean mass tissue in stable subjects. However, the ability of hGH to positively influence host preservation in stressed catabolic states such as cancer-induced cachexia remains unproven. Thirty-seven sham or tumor implanted Fischer 344 rats were randomized to receive either 0.5 mg/kg/day hGH or saline (SAL) subcutaneously from Days 14 to 23 postimplantation. Plasma levels of hGh and somatomedin C/insulin-like growth factor I (IGF I) as well as IGF I bioactivity were determined at sacrifice. Gastrocnemius muscle protein content was used as a index of host lean tissue mass and the tumor response was evaluated via flow cytometry for analysis of cell-cycle distribution. Host cachexia was not attenuated by hGH as muscle protein content was similar in hGH and saline-treated groups. Despite elevated hGH levels (range, 77-222 ng/ml (GH) vs less than 2 ng/ml (SAL], IGF I levels and bioactivity were not elevated in GH-treated groups. In contrast, cancer-induced anorexia markedly decreased IGF I levels (4 U/ml vs 9 U/ml, NTB; P less than 0.01) and this response remained refractory to hGH administration. While final tumor weights were similar between GH- and SAL-treated groups, hGH treatment caused a twofold increase in the proportion of aneuploid cells (P less than 0.05). In conclusion, hGH failed to attenuate lean mass dissolution in the tumor bearing host and this response may be related to the failure of IGF I induction. Conversely, the altered proportion of tumor aneuploid cells suggests a direct influence on tumor cell-cycling populations.

Animals

The influence of substrate background on the acute metabolic response to epinephrine and cortisol.

The acute metabolic effects of epinephrine and cortisol, as well as the influence of substrate background on the effects of these two hormones were investigated in normal subjects. While receiving a hypocaloric dextrose feeding (50 ng/kg/h) (DEX), the subjects received a 6-hour continuous intravenous infusion of epinephrine (30 ng/kg-min) (EPI), followed by a 6-hour infusion of a combination of epinephrine (30 mg/kg-min) and cortisol (3.0 microgram/kg-min) (EC). The hormone infusion was repeated 1 week after a continuous intravenous feeding regimen (TPN) was begun with a caloric content of 1.5 times the measured metabolic rate. Under both DEX and TPN, EPI produced increased energy expenditure, hyperglycemia, hyperlactic acidemia, and hypoaminoacidemia. Except for a further increase in circulating glucose levels during the DEX condition, these variables were not altered by the addition of cortisol. Epinephrine under both feeding conditions increased lactate efflux from the extremity without changes in peripheral oxygen or glucose uptake. The hypoaminoacidemic response to EPI in the DEX condition was associated with a decrease in extremity efflux of amino acids (-654 +/- 89 nmol/min/100 cm3 tissue at baseline vs -330 +/- 86 nmol/min/100 cm3 for EPI, p less than 0.05). No change in extremity amino acid flux was noted in response to EPI during total parenteral nutrition. Even with addition of cortisol no significant efflux of amino acids above baseline levels was noted in either feeding condition. We therefore conclude that (1) total parenteral nutrition cannot abolish the hypermetabolic or hyperglycemic response to epinephrine and cortisol; (2) increased extremity lactate efflux and lactic acidosis can occur in response to epinephrine without evidence of diminished oxygen delivery to the extremity; and (3) these two hormones are not primary mediators of acute extremity nitrogen loss.

Adult

Skeletal muscle amino acid and myofibrillar protein mRNA response to thermal injury and infection.

Skeletal muscle changes associated with severe injury were investigated in male Wistar rats subjected to 30% full thickness scald injury (burn) and thermal injury followed by immediate colonization with 10(8) colony-forming units of Pseudomonas aeruginosa (BI). Freely fed animals (FF) and animals pair fed to the BI animals (PF) served as controls. Thermal injury in conjunction with infection produced a rapid and sustained muscle cellular membrane depolarization (transmembrane potential difference at 12 h after injury: FF 92.1 +/- 0.3 and BI 85.2 +/- 2.3 mV; P less than 0.05). This was followed by body weight loss and skeletal muscle protein wasting (gastrocnemius protein at 7 days: FF 0.35 +/- 0.01 and BI 0.16 +/- 0.03 g; P less than 0.05) and intracellular high-energy phosphate depletion (ATP at 10 days: FF 6.6 +/- 0.4 and BI 4.5 +/- 0.4 mumol/g tissue; P less than 0.05). These body and cellular changes were not accounted for by the anorexia alone. Marked alterations in intracellular free amino acids were also noted in the BI group characterized by increases in levels of all amino acids (total intracellular free amino acids at 7 days: FF 51 +/- 7 and BI 91 +/- 12 mM; P less than 0.05) except intracellular glutamine (at 7 days: FF 6.0 +/- 0.2 and BI 2.4 +/- 0.6 mM; P less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Actins