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Biomedical subjects

G T Shires

Publications and source records attributed to G T Shires.

At least 19 recordsLinked to original sources

Macrophage inflammatory protein 1 modulates macrophage function.

Macrophage inflammatory protein 1 (MIP 1), initially purified from the conditioned medium of endotoxin-stimulated macrophages, is a low m.w. heparin-binding protein doublet comprising two peptides, MIP 1 alpha and MIP 1 beta. Although native doublet MIP 1 has previously been shown to exert pyrogenic, mitogenic, and proinflammatory effects on other cell types, its actions on its cell of origin, the macrophage, have not been well catalogued. Our study reports several aspects of macrophage function that are modulated by MIP 1. MIP 1 was not directly cytotoxic for WEHI tumor cells, but MIP 1-treated macrophage exhibited enhanced antibody-independent macrophage cytotoxicity for tumor targets. MIP 1 treatment stimulated proliferation of mature tissue macrophages, and this effect was enhanced upon costimulations with either CSF-1 or granulocyte-macrophage-CSF. Thioglycollate-elicited peritoneal exudate macrophages incubated with native doublet MIP 1-secreted bioactive TNF and IL-6, as well as immunoreactive IL-1 alpha, and these effects were enhanced significantly when the cells were costimulated with IFN-gamma. Purified preparations of the recombinantly derived MIP 1 alpha peptide alone stimulated the secretion of TNF, IL-1 alpha, and IL-6 by peritoneal macrophages, but MIP 1 beta did not. In fact, as little as eightfold excess MIP 1 beta blocked TNF-induction by MIP 1 alpha to a significant degree. By contrast to these apparent "macrophage activating" properties of MIP 1, the cytokine failed to trigger the macrophage oxidative burst, or to up-regulate the expression of Ia on the macrophage surface. Taken together, these data reveal that MIP 1 peptides act as autocrine modulators of their cells of origin, and raise the possibility that MIP 1 peptides may play a role in modulating macrophage responses to inflammatory stimuli in vivo.

Animals

Effect of cyclosporine on adrenocortical response to injury and infection.

The effects of cyclosporine administration on the adrenocortical response to the severe stress of burn wound sepsis were studied in Wistar rats. Animals were treated with cyclosporine (10 mg/kg/day) or saline by gavage for 10 days, then subjected to 30% scald burns with wound inoculation with Pseudomonas. Animals were sacrificed on Postburn Days (PBDs) 1, 4, and 7 for determination of serum corticosterone and ACTH levels and adrenal weights and histology. Adrenal glands from animals sacrificed on PBD 7 were also analyzed for DNA, RNA, and protein content. Cyclosporine treatment without injury had no significant effect on body weight gain, adrenal mass, or baseline ACTH or corticosterone levels. During sepsis, cyclosporine-treated animals demonstrated a significantly diminished adrenocortical response compared to those given only saline. Serum corticosterone levels in the cyclosporine group were 45, 53, and 62% lower on PBDs 1, 4, and 7, respectively, than in saline-treated controls (P < 0.01 on each day). ACTH levels were 43 and 36% lower in cyclosporine-treated animals on PBDs 4 and 7, respectively, compared to the saline-treated group (P < 0.05 on each day). Adrenal hyperplasia occurred in both groups by PBD 7, but increases in adrenal mass and in histologic changes associated with hyperplasia (lipid depletion, vascular dilation) were less pronounced in cyclosporine-treated animals compared to those receiving saline, while adrenal composition remained similar between the two groups. Thus, cyclosporine administration is associated with an attenuated adrenocortical response to the stress of sepsis due to diminished circulating levels of ACTH.

Adrenal Cortex

Hypothermia relieves oxidative stress in reperfused skeletal muscle following partial ischemia.

The impact of hypothermia on reperfusion-associated oxidative stress in postischemic skeletal muscle was evaluated in a small animal model of high-grade partial ischemia. The infrarenal aorta of heparinized Sprague-Dawley rats was clamped for 90 min, declamped, and then reperfused for 60 min. Previous characterization of this model with 51Cr-tagged microspheres revealed that hindlimb perfusion during aortic clamping continued at 16.6% of baseline values. Resting transmembrane potential difference (Em) and tissue malondialdehyde (MDA), lactate and high-energy phosphate content were determined in hindlimb skeletal muscle at baseline, during ischemia, and upon reperfusion. Four experimental groups (N = 7 in each group) were studied: control animals underwent aortic clamping and declamping; hypothermia animals underwent topical cooling of hindlimbs prior to aortic clamping, with muscle temperatures maintained between 5 and 15 degrees C during ischemia; sham animals underwent midline laparotomy only; and hypothermia-sham animals underwent cooling and midline laparotomy only. During ischemia, resting Em (-mV) was significantly depolarized (P < 0.05 versus baseline) in control (74.9 +/- 0.8 from 91.0 +/- 0.1), hypothermia (64.4 +/- 1.1 from 90.9 +/- 0.3), and hypothermia-sham (67.2 +/- 1.4 from 90.9 +/- 0.4) animals. Upon reperfusion, resting Em remained depolarized in control animals (74.7 +/- 1.6), while repolarization occurred in hypothermia (88.8 +/- 1.1) and hypothermia-sham (90.7 +/- 0.3) animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

Differential effects of cyclo-oxygenase and thromboxane synthetase inhibition on ventilation-perfusion relationships in acid aspiration-induced acute lung injury.

Cyclo-oxygenase metabolites are important regulators of pulmonary vascular and airway tone and may act to regulate ventilation-perfusion (VA/Q) relationships. Hypoxemia that follows aspiration of gastric acid is associated with increased venous admixture, and plasma levels of thromboxane (TX) B2 and 6-keto-PGF2 alpha are increased after experimental acid-induced acute lung injury. The present study was designed to determine the effects of cyclo-oxygenase metabolites on VA/Q relationships in canine acid aspiration. Eighteen anesthetized dogs received 0.2 mL/kg 0.1 N HCl intratracheally; six were pretreated with ibuprofen (IBU), a cyclo-oxygenase inhibitor, 12.5 mg/kg IV, and six other dogs received OKY-046 (OKY), a TX synthetase inhibitor, 0.5 mg/kg IV. The remaining six animals (ACID) served as controls. Continuous distributions of ventilation and perfusion were evaluated with the multiple inert gas elimination technique. Within 30 minutes, acid injury resulted in significant (p < 0.05) decreases in PaO2 from baseline values by 44.7 +/- 5.4 and 47.6 +/- 4.8 mm Hg in the ACID and OKY groups, respectively. Although decreased, the change in PaO2 of 21.0 +/- 4.8 mm Hg in IBU animals was significantly (p < 0.05) attenuated in comparison with the other groups. Ibuprofen increased pulmonary vascular resistance, attenuated perfusion to shunt and low VA/Q areas, and reduced ventilation to unperfused areas for the first 2 hours after acid injury (all p < 0.05), whereas OKY exacerbated hypoxemia and VA/Q inequality.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Oxygen free radicals affect cardiac and skeletal cell membrane potential during hemorrhagic shock in rats.

Oxygen free radical (OFR) damage of excitable cell membranes (heart and skeletal muscle) during hemorrhagic shock and after resuscitation was studied in control rats and in rats pretreated with superoxide dismutase (SOD) and catalase (CAT; 6,000 U each) before hemorrhage. Their mean arterial pressure (MAP) was lowered to and maintained at 45 mmHg until 30% of the shed blood was spontaneously reinfused. The remaining blood and twice that volume of lactated Ringer solution were then infused. Cardiac output and organ blood flow were measured by the microsphere technique. The resting membrane potential (Em) and tissue ATP content in the heart and skeletal muscle were determined. There was no significant difference between the control and SOD + CAT groups in shock duration, maximal shed blood, hemodynamics, regional blood flow, or in ATP content in both heart and skeletal muscle, both during shock and after resuscitation. Radical scavenger treatment did not prevent muscle depolarization during shock. After resuscitation, however, significant repolarization in hearts and skeletal muscle of the SOD + CAT group (heart, -70.0 +/- 1.1; muscle, -87.0 +/- 0.6 mV) was noted when compared with the controls (heart, -62.5 +/- 1.2; muscle, -82.7 +/- 1.1 mV; P less than 0.05). This implicates OFRs as mediators of excitable cell membrane injury following resuscitation.

Adaptation, Physiological

Donor leukocyte migration following extremity transplantation in an experimental model.

In an effort to further define the immunologic mechanisms leading to acute composite-tissue allograft rejection, the migratory patterns of donor leukocytes were evaluated. Using a rat model, 52 orthotopic vascularized hindlimb transplants were performed in strains representing major histocompatibility mismatches. In order to evaluate the effect of allogeneic skin on limb rejection, all donor skin was removed in a second group of allografts. Recipient lymphoid organs were examined during the week following transplantation for antigen-presenting cells using a donor-specific class II monoclonal antibody. Donor leukocytes, with dendritic cell morphology, were identified in recipient spleen and lymph nodes draining the allograft. Significantly higher numbers of donor leukocytes were present during postoperative days 1 through 4 for both groups. Association of these important passenger leukocytes with host T-lymphocytes may represent the site of initiation of the immune response.

Animals

Effect of sepsis on intracellular sodium activity, sodium concentration, and water content in thermal injured rat.

The effects of sepsis on intracellular Na+ activity, Na+ concentration, and H2O partition in skeletal muscle were investigated in a burn rat model. Studies were performed on either postburn day 3 or day 7 during evolving burn wound sepsis. Data are compared among 3 groups of rats: burned and infected (BI), burned not infected (B), and sham burn (C). After 3 days postburn both Na+ activity and concentration decreased in the BI group as compared with B and C groups. By postburn day 7, the BI group developed septic shock and had increased intracellular Na+ activity and concentration. The resting membrane potentials of skeletal muscle cells depolarized. The finding of an increased cell membrane relative permeability of Na+ to K+ could account for the increase in Na+ influx into cells. In addition, intracellular and total muscle H2O contents decreased and extracellular H2O increased. Hypernatremia, hyperchloremia, and hyperosmolality were also observed in the BI group. However, the fact that there was no significant difference between B and C groups indicates that the late derangements were due to septic shock rather than simple burn injury. Thus, the deleterious effects of the evolving burn wound sepsis on Na+ homeostasis might be due to the detrimental effect of increased intracellular Na+ activity on mitochondrial respiratory control with subsequent impairment of cellular functions.

Animals

Predicting postoperative pulmonary complications. Is it a real problem?

To identify predictors of postoperative pulmonary complications, a population of 278 patients, mainly hypertensive and diabetic patients undergoing elective general surgery was studied; 60% of the patients underwent abdominal surgery. Of the 278 patients, 6% had postoperative pulmonary complications: 3% had radiographic evidence of infiltrates or segmental atelectasis and 3% had clinical evidence of atelectasis. Among the two thirds of patients undergoing abdominal surgery, only patients with underlying asthma or chronic bronchitis were at increased risk. Generally, patients with better exercise tolerance by self-report, walking distance, or cardiovascular classification had lower rates. Pulmonary function tests did not help to delineate patients at higher risk of postoperative pulmonary complications. Simple clinical information provided as much data about the patients' risk as pulmonary function tests. Many of these complications occurred in patients who sustained other types of postoperative morbidity, suggesting that predicting and preventing postoperative cardiac morbidity may be the best approach to reducing postoperative pulmonary morbidity.

Aged

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

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

Diabetes impairs the late inflammatory response to wound healing.

Diabetes mellitus is recognized as a risk factor for compromised wound healing. This study examines leukocyte infiltration and the appearance of tumor necrosis factor-alpha (TNF) and IL-6 in wound chambers implanted in normal and streptozotocin-induced diabetic mice. Perforated silicone wound chambers containing a strip of polyvinyl alcohol sponge were implanted along the flanks of normal and diabetic mice. Wound fluid aspirated from the chambers 1, 3, and 7 days following implantation was analyzed for the total number of leukocytes and TNF and IL-6 levels. While the number of leukocytes in the wound fluid was similar on Days 1 and 3 following implantation, there were significantly fewer inflammatory cells in wound fluid from diabetic animals (13.8 X 10(6)/ml) than in wound fluid from normal animals (28.5 Z 10(6)/ml) on Day 7 following implantation. TNF levels in the cell-free exudate fluid were similar between the two groups on all days examined. IL-6 levels were similar on Days 1 and 3 following implantation between the two groups, but there was significantly more IL-6 in wound fluid from normal animals (10,998 U/ml) than in wound fluid from diabetic animals (2096 U/ml) on Day 7 following implantation. Histologic evaluation of chambers 8 days following implantation revealed decreased neovascularization and less organization of granulation tissue. These data suggest that delayed healing in diabetes is associated with altered leukocyte infiltration and wound fluid IL-6 levels during the late inflammatory phase of wound healing.

Animals

Differential pathophysiology of bacterial translocation after thermal injury and sepsis.

Bacterial translocation (BT) occurs transiently after thermal injury and may result from an ischemic intestinal insult. To evaluate continued intestinal ischemia in the ongoing BT associated with sepsis after injury, rats were randomized to (1) 30% burn injury with Pseudomonas wound infection (BI), (2) BI + fluid resuscitation (BI + Fluid), (3) BI after allopurinol pretreatment to inhibit xanthine oxidase (BI + Allo), or (4) BI after azapropazone pretreatment to inhibit neutrophil degranulation (BI + Aza). On postburn days (PBD) 1, 4, and 7, animals were studied for evidence of BT and intestinal lipid peroxidation. BI + Fluid, BI + Allo, and BI + Aza significantly (p less than 0.05) reduced rates of BT and ileal lipid peroxidation acutely after thermal injury (PBD 1) compared to BI. All four groups had equally high rates of BT associated with the onset of sepsis (PBDs 4 and 7), without evidence of further intestinal lipid peroxidation. These data indicate that the chronic gut barrier failure associated with sepsis after injury occurs independently of continued intestinal ischemia.

Animals

Splanchnic vasoconstriction and bacterial translocation after thermal injury.

Gut barrier failure and bacterial translocation (BT) after thermal injury may result from splanchnic vasoconstriction and intestinal ischemia. The role of the renin-angiotensin system in intestinal blood flow and BT after thermal injury was studied by pretreatment with the angiotensin-converting enzyme (ACE) inhibitor enalapril in Wistar rats before sham or 30% scald burn. Adequacy of ACE inhibition was documented by the absence of a hypertensive response to angiotensin I, and intestinal blood flow was determined using 51Cr-labeled microspheres. Small bowel blood flow was decreased by 46% at 4-h postburn (P less than 0.05) in untreated burned animals despite maintenance of normal cardiac index but returned to baseline levels by 24 h after injury. Enalapril pretreatment resulted in maintenance of small bowel blood flow after thermal injury and was associated with a significantly reduced incidence of BT (20% vs. 75% in untreated burned animals, P less than 0.01). These findings further implicate intestinal ischemia in the etiology of gut barrier dysfunction after thermal injury, mediated in part by activation of the renin-angiotensin system.

Animals

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

Risk for postoperative congestive heart failure.

To identify predictors of postoperative congestive heart failure (CHF), a high-risk population, mainly hypertensive and diabetic patients undergoing elective general operations, was studied. Of the 254 patients, 6 per cent had postoperative CHF. Among patients with preoperative cardiac disease (that is, previous myocardial infarction, valvular disease or CHF), 17 per cent had postoperative CHF; in contrast with less than 1 per cent of those without cardiac disease (p less than 0.001). Patients with diabetes were also at high risk (12 versus 2 per cent, p less than 0.005), particularly those with cardiac disease. Patients who had equal to or greater than 40 millimeters of mercury increases or decreases intraoperatively in mean arterial pressure in relation to preoperative baseline had increased postoperative failure rates (p less than 0.02). Of note, postoperative failure rates were highest among patients with less than 500 milliliters per hour of net intake (input and output) (p less than 0.03). Risk for postoperative CHF was restricted to patients with preoperative symptomatic cardiac disease and was especially high if patients also had diabetes. Intraoperative fluctuations in mean arterial pressure increased the probability of postoperative failure, while the intraoperative administration of higher net volumes of fluid was associated with decreased risk.

Aged

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

Cytokine production in a model of wound healing: the appearance of MIP-1, MIP-2, cachectin/TNF and IL-1.

Macrophages are essential for normal wound repair and many of their effects on healing wounds are likely to be mediated by the secretion of cytokines. This study examines the appearance of messenger RNA (mRNA) for cachectin/tumor necrosis factor (TNF), IL 1, and macrophage inflammatory proteins 1 and 2 (MIP-1 and MIP-2), as well as the mature peptides, in a model of wound healing using wound chambers. RNA for all four cytokines can be detected in wound inflammatory cells by polymerase chain reaction amplification throughout the first 7 days. Cachectin/TNF and IL 1 protein levels peaked on the first day after wound chamber implantation, and MIP-1 and MIP-2 were detected only on day 3. The data suggest that these cytokines participate in the early inflammatory response to wounding.

Animals

Surgical rescue for failures of cirrhotic sclerotherapy.

Bleeding from gastroesophageal varices remains the most devastating complication of the portal hypertensive syndrome. Endoscopic sclerotherapy has emerged as the best initial treatment for bleeding varices because surgery is obviated and survival may be improved. However, sclerotherapy will fail and surgical rescue will be required in at least a third of patients. There are two viable surgical rescue procedures: shunt surgery and liver transplantation. This paper summarizes the available data and concludes that there is a role for both procedures.

Esophageal and Gastric Varices