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Biomedical subjects

S F Lowry

Publications and source records attributed to S F Lowry.

At least 109 records · Page 6Linked to original sources

Nutritional support and cancer cachexia. Evolving concepts of mechanisms and adjunctive therapies.

Despite the widespread employment of intravenous feeding in patients with cancer cachexia to improve outcome, conflicting data exist regarding the efficacy of such therapy in addressing metabolic alterations secondary to immobility, malnutrition, and disease-specific processes. Persistence of distinct abnormalities of body and tissue integrity and peripheral tissue plasma inter-organ nitrogen flux imply the need for anabolic agents to enhance the therapeutic effects of parenteral nutrition. This article focuses upon potential anabolic agents such as chronic submaximal exercise, hormonal augmentation, pharmacologic intervention, and variations in substrate composition. Finally, the immunologic, metabolic, and endocrine consequences of bypassing the gastrointestinal tract are considered and related to the limited efficacy of current total parenteral nutrition regimens.

Cachexia↗

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↗

Identification of a novel tumor necrosis factor alpha/cachectin from the livers of burned and infected rats.

Tumor necrosis factor alpha (TNF-alpha)/cachectin is a monocyte/macrophage-derived cytokine implicated as a proximal mediator of many of the catastrophic host responses to infection or endotoxin. However, circulating levels of TNF-alpha/cachectin have only been episodically detected in hospitalized patients with life-threatening bacterial infections. In the present report, increased quantities of immune-reactive TNF-alpha/cachectin were recovered from the livers of rats 3 days following a lethal burn and infection. Two species of TNF-alpha/cachectin were detected, one of approximately 29 kd and the other 17 kd, as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. In murine peritoneal macrophages and rat Kupffer cells stimulated in vitro with endotoxin, a 29-kd cell-associated and 17-kd secreted form were also detected. We conclude that the increased appearance in vivo of a 29-kd form of TNF-alpha/cachectin from the livers of lethally burned and infected rats represents a novel cell-associated form of the protein.

Animals↗

Effect of prostaglandin E in multiple experimental models. IV. Effect on resistance to endotoxin and tumor necrosis factor shock.

Administration of a long-acting prostaglandin E, 16,16-dimethyl-PGE (dPGE), to rats improves their survival of bacterial peritonitis. We examined the mechanism of this protective effect with reference to its interaction with the release of cachectin (TNF). Sixty rats received saline, 20 micrograms/kg dPGE, or 80 micrograms/kg dPGE 12 hr prior to endotoxin and continuing for 48 hr. Survival rates for the saline, 20 micrograms/kg dPGE, and 80 micrograms/kg dPGE groups were 0, 40, and 85%, respectively. Forty rats received saline or 80 micrograms/kg dPGE, with the initial dose being 3 hr following endotoxin challenge and continuing for 48 hr. Survival rates for both groups were 0%. Sixty rats received saline or 80 micrograms/kg dPGE at 12 and 1 hr prior to endotoxin. Two hours after challenge, they were sacrificed and plasma TNF levels were assayed. The plasma TNF level in saline-treated rats was 22.72 +/- 0.83 ng/ml and in the dPGE-treated group, 16.03 +/- 1.13 ng/ml (P less than 0.001).

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↗

The acute splanchnic and peripheral tissue metabolic response to endotoxin in humans.

The in vivo alterations in organ-specific substrate processing and endogenous mediator production induced by endotoxin were investigated in healthy volunteers. An endotoxin bolus (20 U/kg) produced increased energy expenditure, hyperglycemia, hypoaminoacidemia, and an increase in circulating free fatty acids. These changes included increased peripheral lactate and free fatty acid output, along with increased peripheral uptake of glucose. Coordinately, there were increased splanchnic uptake of oxygen, lactate, amino acids, and free fatty acids, and increased splanchnic glucose output. There were no changes in circulating glucagon, or insulin and transient changes in epinephrine and cortisol were insufficient to explain the metabolic changes. Plasma cachectin levels peaked 90 min after the endotoxin infusion, and hepatic venous (HV) cachectin levels (peak 250 +/- 50 pg/ml) were consistently higher than arterial levels (peak 130 +/- 30 pg/ml, P less than 0.05 vs. HV). No interleukin 1 alpha or 1 beta was detected in the circulation. Circulating interleukin 6, measured by B.9 hybridoma proliferation, peaked 2 h after the endotoxin challenge (arterial, 16 +/- 2 U/ml; HV, 21 +/- 3 U/ml). The net cachectin efflux (approximately 7 micrograms) from the splanchnic organs demonstrates that these tissues are a major site for production of this cytokine. Hence, splanchnic tissues are likely influenced in a paracrine fashion by regional cachectin production and may also serve as a significant source for systemic appearance of this cytokine.

Adult↗

Influence of enterectomy on peripheral tissue glutamine efflux in critically ill patients.

Glutamine and alanine are dominant nitrogen carriers from skeletal muscle stores to splanchnic organs. In addition, these amino acids may also serve as a primary energy source for the gastrointestinal tract during injury. To investigate these contributions, we studied extremity amino acid efflux during hypocaloric dextrose feedings and during total parenteral nutrition in a population of normal volunteers (NL VOL) (n = 9), a group of patients with sepsis who had undergone laparotomy without bowel resection and were in the intensive care unit (ICU) (n = 7), and patients with sepsis after laparotomy (PT) (n = 2) who had recently undergone greater than 80% bowel resection. Circulating alanine and glutamine levels were significantly lower in the patients compared with NL VOL under both feeding conditions. The peripheral output of alanine was higher in the ICU group than in the NL VOL during hypocaloric feedings. Glutamine efflux, however, was independent of either the counterregulatory hormone or substrate background. By contrast, enterectomy was associated with a marked decrease of extremity glutamine efflux compared with NL VOL or the ICU patients who did not undergo enterectomy (-62 +/- 9 nmol/min/dl tissue in the PT vs -265 +/- 32 nmol/min/dl tissue in the NL VOL and -311 +/- 58 nmol/min/dl tissue in the ICU group) during the dextrose feedings; this difference persisted during subsequent total parenteral nutrition (+12 +/- 13 nmol/min/dl tissue in PT vs -178 +/- 56 nmol/min/dl tissue in the NL VOL and -287 +/- 81 nmol/min/dl tissue in the ICU group). These data suggest that distinct mechanisms regulate peripheral alanine and glutamine balance and that the gastrointestinal tract provides a feedback signal to peripheral tissues to maintain glutamine mobilization under both nonstressed and stressed conditions.

Adult↗

The biologic characteristics of cytokines and their implication in surgical injury.

Cytokines are integral to normal homeostasis and to the response to injury. The biologic activities and synergistic actions of these proteins continue to be elucidated. In moderate quantities, these proteins likely confer such beneficial effects as myelostimulation, activation of immune cells and reprioritization of metabolic processes to provide substrates important in combating the results of injury. Exaggerated or prolonged production of these proteins, however, may produce detrimental effects that lead to a poor outcome. Specific antagonists against cytokines offer potential therapy in these instances of aberrant cytokine response.

Animals↗

The route of feeding influences injury responses.

The balance of current clinical data suggests that the route by which patients are fed during the postinjury phase may influence immunologic and metabolic responses to subsequent insults. The mechanisms underlying such amplification processes are presumed to be generated by loss of intestinal barrier function. The resulting host exposure to toxins is hypothesized to induce regional production of inflammatory mediators which serve to alter organ-specific and systemic responses. The cytokine class of mediators appears capable of altering splanchnic tissue function in a manner consistent with observed clinical responses. The breadth of tissue activity influenced by the cytokines spans those benefitting tissue homeostasis and repair to an exaggerated response which may induce tissue injury and organ failure. Data are presented from both clinical and experimental studies to suggest that a lack of intestinal nutrient provision, such as that induced by parenteral feeding, appears to predispose to enhanced cytokine mediator production in hepatic tissues. Thus alterations in the route of antecedent feeding may influence immunologic and metabolic function in a manner which will amplify responses to a subsequent inflammatory challenge.

Animals↗

Antibodies to cachectin/tumor necrosis factor reduce interleukin 1 beta and interleukin 6 appearance during lethal bacteremia.

Cytokines secreted in response to invading micro-organisms are important mediators of detrimental hemodynamic and metabolic changes in the host. To test whether cachectin/TNF plays a role in triggering release of other cytokines in the setting of infection, anesthetized baboons were passively immunized against systemic cachectin/TNF before infusion of a LD100 dose of live Escherichia coli. Bacteremia led to significant increases in circulating levels of cachectin/TNF, IL-1 beta, and IL-6. Although bacterial endotoxin/lipopolysaccharide is a potent stimulus for the synthesis and release of IL-1 and IL-6 in vitro, specific neutralization of cachectin/TNF in vivo with mAb pretreatment significantly attenuated both the IL-1 beta and the IL-6 responses despite fulminant overwhelming bacteremia. These data suggest that cachectin/TNF is essential for the initiation or amplification of IL-1 and IL-6 release during lethal gram-negative septic shock syndrome.

Animals↗

The effect of interleukin-1 alpha and tumor necrosis factor alpha on the secretion of human chorionic gonadotropin by JAR human choriocarcinoma cells.

The regulation of human chorionic gonadotropin (hCG) secretion by placental trophoblasts is incompletely understood. A recent study reports that Interleukin-1 beta (IL-1 beta) stimulates hCG production in vitro by human, first trimester, placental trophoblasts, but not by a human choriocarcinoma cell line. Human decidua has been shown to produce IL-1 alpha and beta, and Tumor Necrosis Factor alpha (TNF alpha). The precise role(s) of these proteins in pregnancy is unknown. In the present study, hCG production by human choriocarcinoma cells (JAR) was evaluated in the presence of recombinant human IL-1 alpha (rHIL-1 alpha) and rHTNF alpha. hCG production was increased by rHIL-1 alpha in a dose-dependent manner, and heat-inactivation of this cytokine abolished the effect. Equimolar quantities of rHTNF alpha failed to influence hCG production or cell viability. IL-1 may be important in the regulation of hCG production by human trophoblasts, and therefore may play a physiologic role in pregnancy. Furthermore, TNF does not appear to participate in the regulation of the production of this hormone by human choriocarcinoma cells. This is the first demonstration of a divergence of activity of these two cytokines in the reproductive process.

Choriocarcinoma↗

Starvation leads to decreased levels of mRNA for myofibrillar proteins.

Malnutrition is a common complicating factor in surgical illness. To investigate the cellular changes and mechanisms responsible for the protein wasting associated with nutritional deprivation, Sprague-Dawley rats were subjected to total protein-calorie starvation for 3 (n = 12) or 5 days (n = 12) and compared to freely fed animals monitored for 3 (n = 8) or 5 (n = 8) days. Gastrocnemius protein and RNA content and levels of mRNA coding for the myofibrillar proteins myosin heavy chain, myosin light chain, and alpha-actin were measured. Starvation resulted in a significant decrease in gastrocnemius mass and protein content, and was associated with decreases in mRNA levels for the three myofibrillar proteins assayed. We conclude that changes in mRNA levels for these proteins likely contribute to the loss of peripheral protein which occurs during total nutritional deprivation. In addition, the changes in mRNA levels for these three structural proteins appear to be coordinate, suggesting that transcription of no single myofibrillar protein is rate-limiting in the regulation of skeletal muscle protein content.

Actins↗

Hepatocellular membrane function during chronic burn injury.

Hepatocellular membrane dysfunction, as indicated by depolarization of the membrane potential, occurs after acute injury and early bacteremia. To determine whether hepatocellular membrane dysfunction occurs in the setting of ongoing thermal injury and infection, Wistar rats were divided into four groups: (1) sham-burned, freely fed controls (FF); (2) rats sustaining approximately 30% total body surface area dorsal full-thickness scald burn (Burn); (3) rats sustaining burns as in group 2 followed by immediate inoculation of 1 x 10(8) CFU Pseudomonas aeruginosa (Burn/Inf); and (4) sham-burned rats pair-fed to the food intake of the Burn/Inf group (PF). On the third and seventh days postburn, body and liver weights were determined. In vivo hepatocellular transmembrane potentials were measured and hepatic ATP, RNA, DNA, and protein contents were assayed. By Day 7, despite greater weight loss in the Burn/Inf group than due to starvation alone (P less than 0.01 Burn/Inf vs FF and PF), hepatic mass was conserved. This was associated with hyperpolarization of the hepatic transmembrane potential (-46.6 +/- 1.5 vs -32.1 +/- 0.6 mV, Burn/Inf vs FF, P less than 0.01) and increases in RNA (141 +/- 9 vs 91 +/- 4 mg/liver, Burn/Inf vs FF, P less than 0.01) and DNA (37 +/- 5 vs 22 +/- 2 mg/liver, Burn/Inf vs FF, P less than 0.05) contents, with no change in ATP or hepatic protein contents. There was a significant hypercorticosteronemia observed in the Burn/Inf group (43 +/- 9 vs 2.8 +/- 0.7 micrograms/dl, Burn/Inf vs FF, P less than 0.01). This hepatic membrane hyperpolarization and augmented RNA content were not secondary to burn or starvation alone as the response in these groups was significantly less than that of the Burn/Inf group. It is suggested that this hepatic membrane hyperpolarization is one mechanism by which hepatic function is maintained during ongoing burn infection in the rat.

Adenosine Triphosphate↗

Cachectin/tumor necrosis factor production by fetal and newborn rat hepatic macrophages.

The capacity of fetal and newborn hepatic macrophages to produce cachectin/tumor necrosis factor (TNF) has not been previously examined. The role that TNF plays in newborn infection is also unknown. In the present report, fetal and newborn rat hepatic macrophages have been maintained in short-term tissue culture, and are shown to produce TNF in response to in-vitro endotoxin stimulation. Cells obtained are morphologically and antigenically consistent with macrophages, and are depleted of accessory cells and lymphocytes. In response to increasing doses of endotoxin, fetal and newborn hepatic macrophages produce TNF, and this production is suppressed fully by pretreatment with dexamethasone. The results demonstrate that fetal and newborn hepatic macrophages possess the capability to produce TNF in vitro. We propose that TNF may play a role in the response of the fetus and newborn to bacterial infection.

Animals↗

Exercise-mediated peripheral tissue and whole-body amino acid metabolism during intravenous feeding in normal man.

1. The effect of a daily submaximal exercise regimen on whole-body and peripheral tissue amino acid metabolism during weight-stable intravenous feeding (IVF) was evaluated in 11 normal volunteers. Five of the subjects performed 1 h of daily bicycle exercise at 75 W during IVF, while the remaining six subjects received IVF without daily exercise. Body nitrogen balance, leg and forearm plasma amino acid flux and whole-body kinetics were measured before and on day 10 of IVF using a [1-13C]leucine and [15N]glycine tracer. 2. At the end of the IVF period, exercised subjects demonstrated leg uptake of total amino acids (237 +/- 103 nmol min-1 100 ml-1 of tissue, mean +/- SEM) which was significantly (P less than 0.05) different than in non-exercised subjects (-1101 +/- 253 nmol min-1 100 ml-1 of tissue). 3. In the non-exercised forearm, a significant (P less than 0.05) decrease in total amino acid flux was observed in exercised subjects (-162 +/- 88 nmol min-1 100 ml-1 of tissue) compared with non-exercised subjects (-460 +/- 105 nmol min-1 100 ml-1 of tissue) on day 10 of IVF. 4. Efflux of 3-methylhistidine significantly (P less than 0.05) decreased from the leg in those subjects who performed daily exercise (-0.29 +/- 0.12 nmol min-1 100 ml-1 of tissue) compared with those subjects receiving IVF without daily exercise (-1.46 +/- 0.35 nmol min-1 100 ml-1 of tissue).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Recombinant growth hormone enhances muscle myosin heavy-chain mRNA accumulation and amino acid accrual in humans.

A potentially lethal complication of trauma, malignancy, and infection is a progressive erosion of muscle protein mass that is not readily reversed by nutritional support. Growth hormone is capable of improving total body nitrogen balance, but its role in myofibrillar protein synthesis in humans is unknown. The acute, in situ muscle protein response to an infusion of methionyl human growth hormone was investigated in the limbs of nutritionally depleted subjects during a period of intravenous refeeding. A 6-hr methionyl growth hormone infusion achieved steady-state serum levels comparable to normal physiologic peaks and was associated with a significant increase in limb amino acid uptake, without a change in body amino acid oxidation. Myosin heavy-chain mRNA levels, measured by quantitative dot blot hybridization, were also significantly elevated after growth hormone administration. The data indicate that methionyl growth hormone can induce intracellular amino acid accrual and increased levels of myofibrillar protein mRNA during hospitalized nutritional support and suggest growth hormone to be a potential therapy of lean body wasting.

Adult↗