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E Bunnell

Publications and source records attributed to E Bunnell.

3 recordsLinked to original sources

A lipid A analog, E5531, blocks the endotoxin response in human volunteers with experimental endotoxemia.

BACKGROUND: Endotoxin (lipopolysaccharide [LPS]) has been associated with sepsis and the high mortality rate seen in septic shock. The administration of a small amount of LPS to healthy subjects produces a mild syndrome qualitatively similar to that seen in clinical sepsis. We used this model to test the efficacy of an endotoxin antagonist, E5531, in blocking this LPS-induced syndrome. METHODS: In a placebo-controlled, double-blind study, we randomly assigned 32 healthy volunteers to four sequential groups (100, 250, 500, or 1000 microg of E5531). Each group of eight subjects (six assigned to E5531, two assigned to placebo) received a 30-min intravenous infusion of study drug. LPS (4 ng/kg) was administered to all subjects as an intravenous bolus in the contralateral arm at the midpoint of the infusion. Symptoms, signs, laboratory values, and hemodynamics (by echocardiogram) were evaluated at prospectively defined times. RESULTS: In subjects receiving placebo, LPS caused headache, nausea, chills, and myalgias. E5531 led to a dose-dependent decrease in these symptoms that was statistically significant (p < .05) except for myalgias. The signs of endotoxemia (fever, tachycardia, and hypotension) were consistently inhibited at the three higher doses (250, 500, and 1000 microg, p < .05). Tumor necrosis factor-alpha and interleukin-6 blood levels were both lower in those who received E5531 (p < .0001). The C-reactive protein level and white blood cell count response were decreased at all doses (p < .0001). The hyperdynamic cardiovascular state (high cardiac index and low systemic vascular resistance) associated with endotoxin challenge was significantly inhibited at the higher doses of E5531. CONCLUSIONS: E5531 blocks the symptoms and signs and cytokine, white blood cell count, C-reactive protein, and cardiovascular response seen in experimental endotoxemia. This agent is a potent inhibitor of endotoxin challenge in humans and may be of benefit in the prevention or treatment of sepsis and septic shock.

Adolescent↗

Cardiac dysfunction during septic shock.

Cardiac dysfunction is common in sepsis and septic shock. An understanding of this pathophysiology is crucial in treatment of this disorder. This article reviews the numerous studies of septic shock in humans that focus on cardiovascular physiology, briefly addresses the possible etiology, and concludes with therapeutic implications.

Humans↗

Oxidized glutathione is increased in the alveolar fluid of patients with the adult respiratory distress syndrome.

The adult respiratory distress syndrome (ARDS) is a devastating clinical illness characterized by refractory hypoxemia and high-permeability pulmonary edema. Reactive oxygen species may play a key role in the pathogenesis of the acute lung injury. Glutathione is a tripeptide that is able to react with and effectively neutralize oxidants, such as hydrogen peroxide. The present study found that the alveolar epithelial lining fluid of patients with ARDS was deficient in total glutathione compared with that of normal subjects (31.5 +/- 8.4 versus 651.0 +/- 103.1 microM, p = 0.0001) and patients with cardiogenic pulmonary edema (31.5 +/- 8.4 versus 154.1 +/- 52.4 microM, p = 0.001). In addition, a greater percentage of total glutathione was in the oxidized form in patients with ARDS compared with normal subjects (30.6 +/- 6.1 versus 6.4 +/- 2.9%, p = 0.03). This deficiency of reduced glutathione in the alveolar fluid may predispose these patients to enhanced lung cell injury.

Adult↗