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Biomedical subjects

Edward Abraham

Publications and source records attributed to Edward Abraham.

At least 91 records · Page 5Linked to original sources

Neutrophils and acute lung injury.

OBJECTIVE: Neutrophils are an important component of the inflammatory response that characterizes acute lung injury (ALI). This discussion aims to review the contribution of neutrophils to the development and progression of ALI and to highlight the major intracellular signaling pathways that are involved in neutrophil activation in the setting of ALI. DATA SOURCES: MEDLINE, original research papers, and review papers. STUDY SELECTION: Relevant laboratory and clinical studies. DATA EXTRACTION: Systemic review. DATA SYNTHESIS: Activated neutrophils appear to play a central role in the development of most cases of ALI. In experimental models, the elimination of neutrophils markedly decreases the severity of ALI. Furthermore, in neutropenic patients with lung injury, deterioration of pulmonary function as neutropenia resolves has been well described. The neutrophils that accumulate in the lungs in models of ALI demonstrate increased activation of the kinases Akt and p38; increased nuclear accumulation of the transcriptional regulatory factor, nuclear factor-kappaB; and increased production of proinflammatory cytokines, particularly those whose transcription is dependent on nuclear factor-kappaB. Decreased apoptosis among neutrophils in the lungs is also characteristic. Inhibiting p38, Akt, or nuclear factor-kappaB activation diminishes the severity of endotoxin- or hemorrhage-induced ALI. CONCLUSIONS: The accumulation of activated neutrophils in the lungs is an early step in the pulmonary inflammatory process that leads to ALI. Although experimental models indicate that the activation of p38, Akt, and nuclear factor-kappaB in neutrophils contributes to ALI, the relative importance of these pathways in critically ill patients remains to be determined. Nevertheless, modulation of the activation of p38, Akt, and nuclear factor-kappaB in neutrophils appears to be an appropriate therapeutic target in severely ill patients with ALI.

Humans↗

Recombinant platelet-activating factor acetylhydrolase to prevent acute respiratory distress syndrome and mortality in severe sepsis: Phase IIb, multicenter, randomized, placebo-controlled, clinical trial.

OBJECTIVE: Platelet-activating factor (PAF) is a potent proinflammatory mediator implicated in the pathogenesis of both severe sepsis and acute respiratory distress syndrome. One of the regulatory pathways for PAF involves degradation to the inactive metabolite lyso-PAF by the enzyme PAF acetylhydrolase (PAF-AH). Because reduced concentrations of the natural form of PAF-AH have been reported in septic patients, the present study was conducted to determine whether treatment with recombinant human PAF-AH (rPAF-AH, Pafase) was safe when administered after the onset of severe sepsis and whether it decreases the prevalence of acute respiratory distress syndrome and 28-day all-cause mortality. DESIGN: A prospective, randomized, double-blind, placebo-controlled, multicenter trial. SETTING: Thirty-three medical and surgical intensive care units located in the United States. PATIENTS: A total of 127 patients with severe sepsis, but without established acute respiratory distress syndrome, were enrolled in the study. Randomization occurred within 12 hrs of the onset of severe sepsis. Patients then received 1.0 mg/kg rPAF-AH (n = 45), 5.0 mg/kg rPAF-AH (n = 39), or placebo (n = 43) administered intravenously, once daily, for five consecutive days. MEASUREMENTS AND MAIN RESULTS: Demographic and baseline clinical characteristics of the three treatment groups were similar, except for a significantly higher prevalence of respiratory tract infections as the cause of severe sepsis in patients treated with 1.0 mg/kg rPAF-AH. There were no treatment-related deaths, and the overall prevalence of adverse events was similar among rPAF-AH-treated and placebo-treated patients. There were no significant differences in the prevalence of acute respiratory distress syndrome among the three treatment groups. However, 28-day all-cause mortality was 21% in the 1.0 mg/kg rPAF-AH group, 28% in the 5.0 mg/kg rPAF-AH group, and 44% in the placebo group (overall chi-square p =.07; 1.0 mg/kg rPAF-AH vs. placebo, p =.03). A trend toward reduced multiple organ dysfunction also was observed in the 1.0 mg/kg rPAF-AH group compared with the placebo group (p =.11). CONCLUSION: The results from this study indicate that rPAF-AH was well tolerated and should be pursued as a potential new treatment to decrease mortality in patients with severe sepsis.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Pulmonary edema fluid antioxidants are depressed in acute lung injury.

OBJECTIVE: To test the hypothesis that low concentrations of distal airspace water-soluble antioxidants are associated with acute lung injury. DESIGN: Prospective, cohort study. SETTING: Medical intensive care unit of two tertiary care hospitals. SUBJECTS: Subjects were 29 patients with acute lung injury and 23 normal, healthy, volunteers. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Pulmonary edema fluid from subjects with acute lung injury was aspirated immediately after intubation. Compared with the bronchoalveolar lavage from normal subjects (corrected for dilution using urea concentrations), undiluted edema fluid from acute lung injury subjects had significantly lower concentrations of the antioxidants urate (757 +/- 232 microM vs. 328 +/- 75 microM), glutathione (138 +/- 25 microM vs. 7 +/- 4 microM), and ascorbate (85 +/- 21 microM vs. 27 +/- 10 microM). CONCLUSIONS: Acute lung injury is associated with decreased concentrations of water-soluble antioxidants in the distal airspaces. In acute lung injury, the distal airspace antioxidants ascorbate, urate, and glutathione may play a role in attenuating lung injury.

Adult↗

Anemia and blood transfusion in trauma patients admitted to the intensive care unit.

BACKGROUND: Anemia is a common occurrence in the intensive care unit (ICU). Although resuscitation, including the use of blood, is a mainstay of early treatment of trauma victims, the safety and efficacy of red blood cell (RBC) transfusion has come under scrutiny recently. The issue of blood use in critically injured patients requires evaluation. METHODS: This was a post hoc analysis of a subset of trauma patients (> or =18 years in age) from a prospective, multicenter, observational, cohort study in the United States. Patients were enrolled within 48 hours after ICU admission and followed for up to 30 days, or until hospital discharge or death. RESULTS: Five hundred seventy-six patients from 111 ICUs in 100 hospitals were enrolled between August 2000 and April 2001. At baseline, mean age was 44.1 +/- 20.2 years, 73.6% were men, and mean APACHE II score was 16.9 +/- 8.2. Mean baseline hemoglobin was 11.1 +/- 2.4 g/dL and patients remained anemic throughout the study either with or without transfusion; 55.4% of patients were transfused (mean, 5.8 +/- 5.5 units) during the ICU stay and 43.8% of patients had an ICU length of stay > or = 7 days. Mean pretransfusion hemoglobin was 8.9 +/- 1.8 g/dL. Mean age of RBCs transfused was 20.1 +/- 11.4 days. As compared with the full study population, patients in the trauma subset were more likely to be transfused and received an average of 1 additional unit of blood. CONCLUSION: Anemia is common in critically injured trauma patients and persists throughout the duration of critical illness. These patients receive a large number of RBC transfusions during their ICU course with aged blood.

Adult↗

Activation of gene expression in human neutrophils by high mobility group box 1 protein.

High mobility group box 1 (HMGB1) protein, a DNA binding protein that stabilizes nucleosomes and facilitates transcription, was recently identified as a late mediator of endotoxin lethality. High serum HMGB1 levels in patients with sepsis are associated with increased mortality, and administration of HMGB1 produces acute inflammation in animal models of lung injury and endotoxemia. Neutrophils occupy a critical role in mediating the development of endotoxemia-associated acute lung injury, but previously it was not known whether HMGB1 could influence neutrophil activation. In the present experiments, we demonstrate that HMGB1 increases the nuclear translocation of NF-kappaB and enhances the expression of proinflammatory cytokines in human neutrophils. These proinflammatory effects of HMGB1 in neutrophils appear to involve the p38 MAPK, phosphatidylinositol 3-kinase/Akt, and ERK1/2 pathways. The mechanisms of HMGB1-induced neutrophil activation are distinct from endotoxin-induced signals, because HMGB1 leads to a different profile of gene expression, pattern of cytokine expression, and kinetics of p38 activation compared with LPS. These findings indicate that HMGB1 is an effective stimulus of neutrophil activation that can contribute to development of a proinflammatory phenotype in diseases characterized by excessively high levels of HMGB1.

Biological Transport↗

Reducing mortality in sepsis: new directions.

Considerable progress has been made in the past few years in the development of therapeutic interventions that can reduce mortality in sepsis. However, encouraging physicians to put the results of new studies into practice is not always simple. A roundtable was thus convened to provide guidance for clinicians on the integration and implementation of new interventions into the intensive care unit (ICU). Five topics were selected that have been shown in randomized, controlled trials to reduce mortality: limiting the tidal volume in acute lung injury or acute respiratory distress syndrome, early goal-directed therapy, use of drotrecogin alfa (activated), use of moderate doses of steroids, and tight control of blood sugar. One of the principal investigators for each study was invited to participate in the roundtable. The discussions and questions that followed the presentation of data by each panel member enabled a consensus recommendation to be derived regarding when each intervention should be used. Each new intervention has a place in the management of patients with sepsis. Furthermore, and importantly, the therapies are not mutually exclusive; many patients will need a combination of several approaches--an "ICU package". The present article provides guidelines from experts in the field on optimal patient selection and timing for each intervention, and provides advice on how to integrate new therapies into ICU practice, including protocol development, so that mortality rates from this disease process can be reduced.

Animals↗

Effectiveness of medical resident education in mechanical ventilation.

Specific methods of mechanical ventilation management reduce mortality and lower health care costs. However, in the face of a predicted deficit of intensivists, it is unclear whether residency programs are training internists to provide effective care for patients who require mechanical ventilation. To evaluate these educational outcomes, we administered a validated 19-item case-based test and survey to resident physicians at 31 diverse U.S. internal medicine residency programs nationwide. Of 347 senior residents, 259 (75%) responded. The mean test score was 74% correct (SD, 14%; range, 37 to 100%). Important items representing evidence-based standards of critical care answered incorrectly were as follows: use of appropriate tidal volume in the acute respiratory distress syndrome (48% incorrect), identifying a patient ready for a weaning trial (38% incorrect), and recognizing indication for noninvasive ventilation (27% incorrect). Most accurately identified pneumothorax (86% correct) and increased intrathoracic positive end-expiratory pressure (93% correct). Better scores were associated with "closed" versus "open" intensive care unit organization (76 versus 71% correct, p = 0.001), resident perception of greater versus lesser ventilator knowledge (79 versus 71% correct, p = 0.001), and graduation from a U.S. versus international medical school (75 versus 69% correct, p = 0.033). Although overall training satisfaction correlated strongly with program use of learning objectives (r = 0.89, p < 0.0001), only 46% reported being satisfied with their mechanical ventilation training. We conclude that senior residents may not be gaining essential evidence-based knowledge needed to provide effective care for patients who require mechanical ventilation. Residency programs should emphasize evidence-based learning objectives to guide mechanical ventilation instruction.

Educational Measurement↗

Sepsis: current concepts in intracellular signaling.

Sepsis is the systematic response to infection. In septic patients who develop severe disease, excessive inflammation damages the lungs, liver, kidneys, and cardiovascular system, leading to multiple organ failure and an associated high mortality rate. Sepsis is the leading cause of death in the intensive care unit. The damage to critical organs is primarily due to excessive acute inflammatory response rather than inadequate combat of the infection per se. Impairment of critical organs is closely associated with infiltration of activated neutrophils into those tissues as well as increased activation of endothelial, epithelial, and macrophage populations within the organs to produce a deregulated, overly aggressive inflammatory response. New pharmacological advances hold promise in improving survival from this multi-systemic disorder. Increasing understanding of the signal transduction pathways of inflammatory cells involved in the disease suggests that targeting specific kinases and transcriptional regulatory mechanisms may prove improve outcome from sepsis.

Animals↗

Pharmacokinetics of intravenous and oral levofloxacin in critically ill adults in a medical intensive care unit.

STUDY OBJECTIVE: To characterize the pharmacokinetic disposition of intravenous and oral levofloxacin in critically ill adults. DESIGN: Prospective, open-label study. SETTING: University teaching hospital. PATIENTS: Thirty critically ill patients in a medical intensive care unit (ICU). INTERVENTIONS: All patients received levofloxacin as part of their routine medical care. Pharmacokinetic evaluations were performed in 28 patients receiving intravenous levofloxacin. Ten of these patients subsequently were switched to oral levofloxacin and underwent a second pharmacokinetic evaluation during oral therapy. MEASUREMENTS AND MAIN RESULTS: Mean +/- SD levofloxacin half-life, clearance at steady state, and volume of distribution in all 28 patients were 8.0 +/- 1.7 hours, 134 +/- 35 ml/minute, and 1.2 +/- 0.3 L/kg, respectively Maximum and minimum serum concentrations (Cmax and Cmin) and area under the serum concentration-time curve from 0-24 hours (AUC(0-24)) in patients receiving levofloxacin 500 mg intravenously were 7.5 +/- 0.8 mg/L, 1.0 +/- 0.5 mg/L, and 66.1 +/- 15.7 mg x hour/L, respectively Observed Cmax, Cmin, and time at which maximum concentration was achieved after oral doses of levofloxacin 500 mg were 5.5 +/- 1.1 mg/L, 0.8 +/- 0.4 mg/L, and 1.3 +/- 0.4 hours, respectively. These values were significantly different (p < 0.05) from those observed after intravenous dosing in the same patients; other pharmacokinetic parameters were similar. Statistically significant increases (p < 0.05) in Cmax, Cmin, half-life, and AUC(0-24) were found in critically ill patients administered multiple doses of intravenous levofloxacin compared with historical data from healthy volunteers. CONCLUSIONS: The dosage regimen of intravenous levofloxacin 500 mg once/day appears adequate for most pathogens found in critically ill patients with normal renal function. Less susceptible pathogens may require an increased daily dose for more optimal therapy. Orally administered levofloxacin appears to be well absorbed in selected ICU patients and has pharmacokinetics similar to those of intravenously administered levofloxacin.

Administration, Oral↗

IL-1 regulates in vivo C-X-C chemokine induction and neutrophil sequestration following endotoxemia.

The influx of neutrophils into tissues in response to inflammatory stimuli involves C-X-C chemokines. Interleukin-1 (IL-1) stimulates chemokine production in vitro, but its role in vivo on chemokine production is not as clearly understood. We hypothesized that IL-1 mediates in vivo tissue C-X-C chemokine production induced by systemic lipopolysaccharide (LPS). IL-1 activity was blocked by IL-1 receptor antagonist (IL-1Ra). Rats were injected with Salmonella typhi LPS (0.5 mg/kg) with and without prior administration of IL-1Ra. Cytokine-induced neutrophil chemoattractant-1 (CINC-1) and macrophage inflammatory protein-2 (MIP-2) protein and mRNA levels, tissue neutrophil accumulation, and indices of organ injury were measured. LPS administration resulted in increased plasma, lung, and liver IL-1beta that was decreased by Il-1Ra. LPS also induced an increase in plasma, lung, and liver CINC-1 and MIP-2 protein and mRNA. However, IL-1Ra had no effect on LPS-induced plasma or lung tissue CINC-1 levels. In contrast, IL-1Ra pretreatment did significantly decrease CINC-1 protein expression in the liver (45% decrease) and MIP-2 protein expression in plasma (100% decrease), lung (72% decrease) and liver (100% decrease) compared to LPS- treated controls. Steady-state mRNA levels by Northern blot analysis of both CINC-1 and MIP-2 in lung and liver were similar to the protein findings. Pretreatment with IL-1Ra also resulted in a 47% and 59% decrease in lung and liver neutrophil accumulation, respectively, following LPS. In addition, indices of both lung and liver injury were decreased in animals pretreated with IL-1Ra. In summary, LPS induces IL-1beta and MIP-2 expression in the lung and liver, both of which are IL-1 dependent. Although lung neutrophil accumulation in both lung and liver after LPS is also IL-1 mediated, lung CINC-1 levels were unaffected by IL-1Ra. These data suggest that IL-1 regulates tissue chemokine expression and neutrophil accumulation after LPS.

Animals↗

Effects of catecholamines on kinase activation in lung neutrophils after hemorrhage or endotoxemia.

Catecholamines are released in high levels after hemorrhage or endotoxemia and have been shown to modulate immune function, including cellular release of inflammatory mediators. In the present experiments, we examined the effects of endogenous and exogenous catecholamines on neutrophil accumulation and activation in the lungs using pretreatment with alpha- or beta-antagonists or alpha-adrenergic agonists before hemorrhage or endotoxemia. These studies showed that alpha-, but not beta-adrenergic stimuli, modulated the severity of acute lung injury after hemorrhage or endotoxemia, and alpha-adrenergic stimuli was proinflammatory after hemorrhage but anti-inflammatory after endotoxemia. The observed alpha-adrenergic effects on lung neutrophil activation appeared to involve primarily the extracellular signal-regulated kinase pathway at the upstream kinase Raf, but not Ras. Although p38 and protein kinase A were activated in lung neutrophils after hemorrhage or endotoxemia, these kinases were not affected by alpha- or beta-adrenergic modulation. These results demonstrate that catecholamines have important immunomodulatory effects in vivo that affect intracellular signaling pathways in neutrophils and neutrophil-driven, inflammatory processes such as the development of acute lung injury.

Adrenergic alpha-Agonists↗

Musculoskeletal manifestations of Russell-Silver syndrome.

The musculoskeletal manifestations of Russell-Silver syndrome were studied in 25 patients. The most common manifestations were short stature (25 patients), limb-length discrepancy (23 patients), clinodactyly (19 patients) metacarpal bone and phalangeal abnormalities (13 patients), scoliosis (9 patients), foot syndactylism (5 patients), and developmental dysplasia of the hips (3 patients). Five patients underwent lower extremity limb-lengthening procedures for discrepancies greater than 3 cm and three patients had successful pelvic and/or femoral osteotomies for hip dysplasia. All 18 patients studied had retardation of bone age, which peaked at age 7 years.

Abnormalities, Multiple↗

Management of supracondylar fractures of humerus with condylar involvement in children.

The intent of this study was to heighten awareness and to present the authors' experience of an uncommon supracondylar humerus fracture in children. Twenty-two children were studied over a period of 18 years. The average age was 7 years, and oldest child was 11 years at time of injury. The fracture subtypes with medial condyle, lateral condyle, and intercondylar extensions were classified based on radiographs. The patients were followed for an average of 6.5 years. Eighteen injuries (82%) were graded excellent or good, and there were two each with fair or poor outcomes. The most common complication was loss of carrying angle of more than 10 degrees, which occurred in three children. The best results were seen in cases where three or four cross-fixing wires were used across the fractures. The authors recommend closed reduction techniques and percutaneous multiple cross-pin fixation for the displaced fracture. The fracture is unique and distinctive enough to warrant a designation as supracondylar fracture type IV with subtypes in the younger child.

Bone Wires↗