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Biomedical subjects

C R Blocher

Publications and source records attributed to C R Blocher.

At least 19 recordsLinked to original sources

Delayed administration of inhaled nitric oxide preserves alveolar-capillary membrane integrity in porcine gram-negative sepsis.

OBJECTIVE: To determine the effect of delayed administration of inhaled nitric oxide (NO) on acute lung injury after the onset of gram-negative sepsis. DESIGN: Nonrandomized controlled study. SETTING: University medical center laboratory. SUBJECTS: Yorkshire swine. INTERVENTIONS: Five groups of swine were anesthetized, mechanically ventilated, and studied for 5 hours. After surgical preparation, control (n = 10) and NO-treated control (n = 6) animals received a 1-hour infusion of sterile saline solution. Sepsis was induced with a 1-hour intravenous infusion of live Pseudomonas aeruginosa. Untreated animals with sepsis (n = 10) received no treatment. Inhaled NO at 20 ppm was administered to NO30-treated animals with sepsis (n = 7) and NO60-treated animals with sepsis (n = 8) beginning at 30 and 60 minutes after bacterial infusion was begun, respectively. MAIN OUTCOME MEASURES: Systemic and pulmonary hemodynamics, arterial blood gas determination, bronchoalveolar lavage protein and neutrophil content, neutrophil oxidant burst, lung myeloperoxidase content, and scanning electron micrographic studies. RESULTS: A progressive, significant (P < .05) decline in PaO2 developed in untreated animals with sepsis, which was prevented in NO30- and NO60-treated animals with sepsis. A significant (P < .05) increase in bronchoalveolar lavage protein and neutrophil counts compared with baseline values was observed in untreated animals with sepsis, indicating acute lung injury. These variables exhibited no notable increase in NO30- and NO60-treated animals with sepsis and were significantly (P < .05) reduced compared with untreated animals with sepsis. The lung myeloperoxidase content was significantly (P < .05) elevated at 5 hours in all groups with sepsis compared with baseline values and the control and NO-treated control groups. The total phorbol myristate acetate-induced polymorphonuclear leukocyte oxidant burst at 5 hours was significantly (P < .05) decreased in the NO30- and NO60-treated animals with sepsis compared with untreated animals with sepsis. Untreated and NO30- and NO60-treated animals with sepsis showed a significant (P < .05) increase in pulmonary artery pressure at 30 minutes, followed by a progressive decline. These changes were significant (P < .05) compared with baseline values and the control groups. No significant (P < .05) difference in pulmonary artery pressure or systemic arterial pressure was found at any time between untreated and NO30- and NO60-treated animals with sepsis. CONCLUSIONS: The delayed administration of inhaled NO preserves alveolar-capillary membrane integrity in this porcine model of gram-negative sepsis. The inhibition of neutrophil transendothelial migration, rather than neutrophil rolling or tight adhesion, may be a critical mechanism by which inhaled NO produces this effect. Decreased oxidant production by activated neutrophils may be a secondary mechanism by which inhaled NO reduces acute lung injury.

Animals

A proposed relationship between increased intra-abdominal, intrathoracic, and intracranial pressure.

OBJECTIVES: To determine the effect of acutely increased intra-abdominal pressure on pleural pressure, intracranial pressure, and cerebral perfusion pressure, and to clarify the relationship between these parameters. DESIGN: Nonrandomized, controlled study. SETTING: Laboratory at a university medical center. SUBJECTS: Yorkshire swine, weighing 15 to 20 kg. INTERVENTIONS: Anesthetized, ventilated swine had a balloon inserted into the peritoneal cavity and catheters placed for measurement of intracranial pressure, pleural pressure, central venous pressure, pulmonary artery occlusion pressure, and mean arterial pressure. Following baseline measurements, intra-abdominal pressure was increased by incrementally inflating the intraperitoneal balloon. All parameters were remeasured 30 mins after each increase in intra-abdominal pressure. Two groups were studied: a) group 1 (n = 9) animals had intra-abdominal pressure increased to 25 mm Hg above baseline, then released; b) group 2 (n = 3) animals underwent sternotomy and pleuropericardotomy to prevent an increase in pleural pressure with increasing intra-abdominal pressure. MEASUREMENTS AND MAIN RESULTS: Increase of intra-abdominal pressure to 25 mm Hg above baseline caused significant (p < .05) increases in intracranial pressure (7.3 +/- 0.6 [SEM] to 16.4 +/- 1.9 mm Hg), pleural pressure (4.3 +/- 1.3 to 11.8 +/- 1.9 mm Hg), pulmonary artery occlusion pressure (9.0 +/- 0.6 to 14.3 +/- 0.8 mm Hg), and central venous pressure (6.6 +/- 0.7 to 10.7 +/- 0.9 mm Hg). The cardiac index (3.4 +/- 0.3 to 1.6 +/- 0.1 L/min/m2) and cerebral perfusion pressure (75.6 +/- 3.6 to 62.0 +/- 6.8 mm Hg) deceased significantly (p < .05), whereas mean arterial pressure (82.8 +/- 3.2 to 78.4 +/- 6.6 mm Hg) remained essentially constant. Sternotomy and pleuro-pericardotomy negated all effects of increased intra-abdominal pressure except the decreased cardiac index (1.6 +/- 0.1 to 2.5 +/- 0.2 L/min/m2). CONCLUSIONS: Acutely increased intra-abdominal pressure causes a significant increase in intracranial pressure and a decrease in cerebral perfusion pressure. Increased intra-abdominal pressure appears to produce this effect by augmenting pleural and other intrathoracic pressures and causing a functional obstruction to cerebral venous outflow via the jugular venous system. It is possible that the same phenomenon may be why persons with chronically increased intra-abdominal pressure, such as the morbidly obese, suffer from a high frequency rate of idiopathic intracranial hypertension.

Abdomen, Acute

Protective role of synthetic sialylated oligosaccharide in sepsis-induced acute lung injury.

Proper engagement of leukocyte and endothelial cell selectins with their counterreceptors is an initial step in neutrophil trafficking to sites of inflammation. Certain fucosylated carbohydrate determinants such as sialyl Lewis-x are proposed to act as these counterreceptors. We studied the effects of a synthetic sialyl Lewis-x analog, CY-1503, on the course of hemodynamic derangements and acute lung injury during experimental gram-negative sepsis. Anesthetized ventilated swine were made septic with an infusion of live Pseudomonas aeruginosa. A treatment group received an initial bolus of CY-1503 (60 mg/kg) before sepsis, followed by continuous infusion of CY-1503 (15 mg.kg-1.h-1). Treatment with CY-1503 did not prevent the development of pulmonary hypertension, systemic hypotension, decline in cardiac output, or severe neutropenia. However, CY-1503 significantly attenuated lung injury, demonstrated by decreased bronchoalveolar lavage protein content and neutrophil influx, lowered lung myeloperoxidase activity, and improved arterial oxygenation. Neutrophils from septic and CY-1503 animals showed significant activation, reflected by upregulated CD18 expression and priming for oxidant burst compared with control animals. This study suggests blockade of selectin interactions as a potential therapeutic intervention in sepsis-induced lung injury.

Animals

Effects of increased intra-abdominal pressure upon intracranial and cerebral perfusion pressure before and after volume expansion.

OBJECTIVE: To study the effects of elevated intra-abdominal pressure (IAP) upon intracranial (ICP) and cerebral perfusion pressure (CPP) before and after intravascular volume resuscitation. MATERIALS AND METHODS: Intra-abdominal pressure was increased in five anesthetized swine by inflating an intraperitoneal balloon until the IAP was 25 mm Hg above baseline. Intravascular volume was then expanded and finally abdominal decompression was performed. Changes in ICP and systemic and pulmonary hemodynamic parameters secondary to increasing IAP were measured. The effect upon CPP was derived from these measurements. PaO2 and PaCO2 were maintained relatively constant by increasing ventilatory rate. MEASUREMENTS AND MAIN RESULTS: Elevated IAP significantly increased ICP (7.6 +/- 1.2 vs. 21.4 +/- 1.0), pleural pressure and central venous pressure; whereas cardiac index and CPP (82.2 +/- 6.3 vs. 62.0 +/- 10.0) decreased significantly. Intravascular volume expansion further significantly increased ICP (27.8 +/- 1.0), and significantly increased both mean arterial pressure (83.4 +/- 14.0 versus 103.4 +/- 8.9) and CPP (75.6 +/- 9.0). Abdominal decompression returned ICP (11.2 +/- 1.8) toward baseline and further increased CPP (79.8 +/- 9.7). CONCLUSIONS: Elevated IAP increases ICP and decreases CPP and cardiac index. Volume expansion further increases ICP yet improves CPP via its greater positive effect upon mean arterial pressure (*p < 0.05, analysis of variance. All measurements are mean +/- SEM in mm Hg).

Abdomen

Beneficial effects of a bradykinin antagonist in a model of gram-negative sepsis.

UNLABELLED: Activation of the kallikrein-kinin system in sepsis has long been recognized, but its role, beneficial or pathologic, has not been determined. Recently, however, specific bradykinin (BK) antagonists have become available and we sought to determine the effects of a BK antagonist, NPC17731, in a model of sepsis-induced acute lung injury (ALI). METHODS: Anesthetized swine were studied for 5 hours, receiving a 1-hour infusion of saline (Controls) or live Pseudomonas aeruginosa (Septic untreated). Treatment groups received a 5 mg/kg bolus of NPC17731 followed by a 1 mg/kg bolus hourly commencing either just before sepsis (Pretreatment) or 30 minutes following the onset of sepsis (Posttreatment). RESULTS: Septic untreated animals showed a rapid, progressive decline in arterial PaO2 compared to controls, and this was significantly improved in both treatment groups. Bronchoalveolar lavage at 5 hours in both treatment groups also showed significant decreases in neutrophil (PMN) counts and protein content compared to untreated septic animals, indicating decreased PMN migration and alveolar-capillary membrane damage. Both treatment groups also showed reduced PMN sequestration in the lung compared to untreated animals, although PMNs did exhibit significant upregulation of PMN CD18 receptor expression and superoxide generation. CONCLUSIONS: These data imply a significant role for BK in the pathogenesis of sepsis-induced ALI. Use of a competitive BK antagonist significantly attenuated the development of ALI without inhibiting PMN activation. BK antagonists may be a useful adjunct in the armamentarium against sepsis-induced ALI.

Animals

Cardiopulmonary effects of raised intra-abdominal pressure before and after intravascular volume expansion.

The cardiopulmonary effects of acutely elevated intra-abdominal pressure (IAP) were studied in a porcine model to help define more clearly IAP effects in patients with trauma. IAP was increased in six anesthetized swine by intra-abdominal instillation of isotonic ethylene glycol up to an IAP of 25 mm Hg above baseline. Systemic and pulmonary hemodynamic parameters were measured, as well as the effects on bladder pressure, pleural pressure, and pulmonary function. At IAP of 25 mm Hg above baseline, intravascular volume expansion with saline was administered to return the cardiac index (CI) to baseline. Raising IAP correlated with measured bladder pressures (r = 0.9, p = 0.001). At IAP of 25 mm Hg, CI was significantly decreased (p < 0.05, analysis of variance (ANOVA); 3.6 +/- 0.3 vs. 2.2 +/- 0.3 L/min/m2); whereas wedge, pulmonary arterial, and pleural pressures were all elevated (p < 0.05, ANOVA). However, transarterial wedge pressure (wedge--pleural pressure) declined nonsignificantly with increasing IAP. Raised IAP caused impaired pulmonary function with a decreased (p < 0.05, ANOVA) PaO2 and increased (p < 0.05, ANOVA) PaCO2. Despite the elevated wedge pressure, fluid resuscitation returned CI to baseline. These data clarify the hemodynamic changes associated with raised IAP and indicate that care must be taken in interpreting hemodynamic measurements to determine intravascular fluid status in patients with elevated IAP.

Abdomen

A dual-binding antibody to E- and L-selectin attenuates sepsis-induced lung injury.

Many studies indicate a pivotal role for neutrophil adhesion in sepsis-associated lung injury. Neutrophil adhesion to endothelium depends on activation and expression of selectin and integrin adhesion receptors. We studied the effects of pretreatment with a dual-binding porcine anti-E- and anti-L-selectin monoclonal antibody (EL-246) on a porcine model of sepsis-induced lung injury. Four groups were studied for 5 h. Group 1 (control animals) received intravenous saline only. Group 2 (septic) received a 1-h infusion of Pseudomonas aeruginosa. Group 3 (EL-246 pretreatment) received EL-246 (1 mg/kg) prior to Pseudomonas infusion. Group 4 (EL-246 controls) received EL-246 infusion only. Group 2 animals showed rapid, significant decline in arterial pH and oxygen tension whereas, in Group 3, physiologic deterioration was significantly attenuated. Bronchoalveolar lavage at 5 h showed a significant increase in neutrophil count and protein content in Group 2. Group 3, however, showed no significant differences in these parameters compared with control animals. Despite severe neutropenia, lung myeloperoxidase content at 5 h was significantly reduced in Group 3 compared with Group 2. There was no significant difference in pulmonary and systemic hemodynamics between Groups 2 and 3. Group 4 animals exhibited a transient neutropenia, but otherwise no other differences in measured parameters were found compared with Group 1 control animals. In conclusion, EL-246 significantly reduced neutrophil accumulation in lung and attenuated sepsis-induced lung injury, but failed to attenuate deranged pulmonary and systemic hemodynamics.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Delayed tumor necrosis factor alpha blockade attenuates pulmonary dysfunction and metabolic acidosis associated with experimental gram-negative sepsis.

OBJECTIVE: To ascertain the effect of delayed tumor necrosis factor alpha (TNF-alpha) on the evolution of systemic and pulmonary injury after the onset of sepsis. DESIGN: Prospective controlled trial. INTERVENTION: Anesthetized swine were made septic with a 1-hour infusion of live Pseudomonas aeruginosa, following which a treatment group received an infusion of anti-TNF-alpha monoclonal antibody (5 mg/kg). Control animals received 0.9% saline. RESULTS: Delayed anti-TNF-alpha treatment had no effect on septic pulmonary hypertension or decline in cardiac output. Late recovery in systemic arterial hypotension was associated with a reversal of arterial acidosis (P < .05 by t test and analysis of variance with Tukey's Studentized Range Test) compared with unprotected septic animals. Septic animals had a significant increase in mean (+/- SEM) plasma lactate levels at 5 hours compared with baseline values (3.8 +/- 0.7 vs 2 +/- 0.4, P < .05), but remained unchanged from baseline following anti-TNF-alpha treatment (1.5 +/- 0.1 vs 1.6 +/- 0.2, not significant). Characteristic septic neutropenia was dramatically reversed by anti-TNF-alpha treatment and was associated with downregulation (P < .05 by t test and analysis of variance) of polymorphonuclear neutrophil (PMN) leukocyte CD18 adhesion receptors and reduction (P < .05 by t test and analysis of variance) in lung PMN sequestration measured by myeloperoxidase activity. The mean (+/- SEM) decrease in bronchoalveolar lavage protein indicated an attenuated permeability injury in anti-TNF-alpha animals (septic animals at 5 hours compared with baseline value, 1044 +/- 270 vs 149 +/- 28 micrograms/mL; control animals at 5 hours compared with baseline value, 217 +/- 83 vs 129 +/- 19 micrograms/mL; P < .05 by t test and analysis of variance). CONCLUSIONS: These data show that delayed anti-TNF-alpha treatment reversed metabolic acidosis associated with sepsis. Furthermore, anti-TNF-alpha treatment reversed septic neutropenia, reduced PMN sequestration, and was associated with attenuated lung injury in a model of fulminant sepsis. This supports evidence of PMN-mediated tissue injury in sepsis and suggests mechanisms for potential therapeutic benefit of anti-TNF-alpha treatment in clinical practice.

Acidosis, Lactic

Beneficial cardiopulmonary effects of pentoxifylline in experimental sepsis are lost once septic shock is established.

OBJECTIVE: To determine the effects of pretreatment and posttreatment with pentoxifylline in a porcine model of gram-negative sepsis. DESIGN: Nonrandomized controlled trial. STUDY SUBJECTS: Young Yorkshire swine. INTERVENTIONS: Six groups of ventilated swine were studied for 5 hours. Group 1 swine (control, n = 8) received saline solution only. Group 2 swine (sepsis, n = 8) received a 1-hour infusion of Pseudomonas aeruginosa. Groups 3, 4, and 5 swine received the P aeruginosa infusion and a 20 mg/kg bolus followed by a 6 mg/kg per hour infusion of pentoxifylline. Group 3 swine (n = 6) received pentoxifylline prior to the onset of sepsis; group 4 swine (n = 6) received pentoxifylline at 1 hour and group 5 swine (n = 4) at 2 hours after the onset of the P aeruginosa infusion. Group 6 swine (control pentoxifylline, n = 3) received pentoxifylline only. OUTCOME MEASURES: Hemodynamic variables, neutrophil counts and CD18 expression, tumor necrosis factor activity, and arterial blood gases were measured hourly. Bronchoalveolar lavage was performed at 0 and 5 hours to measure neutrophil and protein content. RESULTS: All variables remained unchanged in the control and control pentoxifylline groups. Both pretreatment and posttreatment with pentoxifylline significantly attenuated lung injury and improved arterial PaO2. The cardiac index was significantly improved by administration of pentoxifylline in groups 3 and 4. Administration of pentoxifylline to group 5 animals in established septic shock caused uncontrolled, fatal systemic hypotension in two of the four animals. Plasma tumor necrosis factor activity, blood polymorphonuclear leukocyte counts, and CD18 expression were unaffected by the administration of pentoxifylline. CONCLUSIONS: Pentoxifylline protects against pulmonary and systemic hemodynamic derangements in fulminant sepsis and protects against pulmonary dysfunction. Pentoxifylline has a "therapeutic window" when given in established sepsis; if administration is delayed until overt septic shock occurs, it may then have deleterious effects.

Animals

Differential activation of alveolar, pulmonary arterial, and systemic arterial neutrophils demonstrates the existence of distinct neutrophil subpopulations in experimental sepsis.

Neutrophils (PMNs) are considered key cellular mediators of sepsis induced acute lung injury. PMN activation is manifest by increased beta 2 integrin expression and enhanced superoxide radical (O2-) generation. What is unclear is at which anatomical sites PMNs are activated and at which sites they release O2- and mediate lung injury. In this study we compared alveolar (ALV), systemic arterial (SA), and pulmonary arterial (PA) PMNs CD18 receptor expression, measured by fluorescent immunophenotyping and, O2- generation, measured by reduction of ferricytochrome C, in septic swine. Swine were anesthetized and ventilated, and given a 1-h infusion of live Pseudomonas aeruginosa. PA, SA, and ALV PMNs were isolated at 0 and 5 h. ALV PMNs O2- was reduced compared to SA blood PMNs O2- at 5 h, (AIV 5 h 23.6 +/- 3 vs. SA 0 h 34.3 +/- 5, p < .05). SA PMNs O2- generation was also significantly reduced compared to PA PMNs at 5 h (PA 5 h 21 +/- 2.5 vs. SA 5 h 16.9 +/- 2.6, p < .05). Alv PMNs expressed significantly greater CD18 receptor levels than SA blood PMNs at 5 h (AIV PMNs 5 h, 76 +/- 6 vs. SA PMNs 5 h 51 +/- 3, p < .05), however, PA PMNs CD18 receptor levels were not significantly different from SA PMNs levels at 5 h. These data corroborate a dissociation between two PMN functions in sepsis. O2- generation was reduced across the lung and following migration. However, alveolar PMNs had significantly upregulated CD18 expression compared to PMNs in PA and SA.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Combined ibuprofen and monoclonal antibody to tumor necrosis factor-alpha attenuate hemodynamic dysfunction and sepsis-induced acute lung injury.

A number of key mediators are implicated in the pathophysiology of sepsis. In previous studies of a septic porcine model, ibuprofen pretreatment prevented the early but not the late rise in pulmonary vascular resistance index (PVRI) and the early but not the late fall in arterial PO2 (PaO2), whereas monoclonal antibody to tumor necrosis factor alpha (anti-TNF alpha) prevented the late but not the early rise in PVRI and the late but not the early fall in PaO2. This study examined the impact of pretreatment with combined ibuprofen and anti-TNF-alpha on the course of sepsis and acute lung injury (ALI) in pigs. Three groups were studied for 5 hours. Groups I (n = 9) and II (n = 5) received a 1-hour infusion of Pseudomonas aeruginosa. Group II received ibuprofen (12.5 mg/kg) and anti-TNF-alpha (5 mg/kg) before P. aeruginosa, and a further bolus of ibuprofen at 120 minutes. Group III (n = 11) received sterile saline. Group I demonstrated a significant (p < 0.05) rise in plasma TNF-alpha that was abolished in group II. The SVRI in group II did not change significantly from baseline through the study and the SVRI rose sharply in group I following onset of the infusion of P. aeruginosa, as did PVRI. There was no significant change in PVRI from baseline in group II, except for the final 60 minutes; PVRI in group II was significantly less than in group I throughout the study.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Tumor necrosis factor-alpha blockade prevents neutrophil CD18 receptor upregulation and attenuates acute lung injury in porcine sepsis without inhibition of neutrophil oxygen radical generation.

Tumor necrosis factor (TNF alpha), both by direct action and by trafficking cells of the immune system, is implicated in cardiopulmonary derangements and PMN-mediated microvascular injury associated with gram-negative sepsis. We examined the effects of pretreatment with a monoclonal antibody to TNF alpha on PMN function, hemodynamic derangements, and alveolar capillary membrane damage in a septic porcine model. Anti-TNF alpha profoundly improved hemodynamic consequences in this model. Reduction in PMN CD11/18 receptor expression, lung myeloperoxidase activity, and attenuation of peripheral neutropenia (all P < 0.05) indicate that pretreatment significantly reduced lung sequestration of PMNs seen in septic controls. In contrast, PMN oxygen radical (O2-) generation was not significantly different from unprotected septic animals. Despite the presence of circulating PMNs primed for O2- burst, alveolar capillary membrane damage, assessed by bronchoalveolar lavage protein content and arterial PO2 was markedly attenuated in the treatment group (P < 0.05). We conclude that anti-TNF alpha suppresses systemic hemodynamic actions of TNF alpha. Further, it prevents upregulation of PMN adhesion receptors inhibiting PMN/endothelial cell interaction. This prevents formation of a "microenvironment," protected from circulating oxidant scavengers, into which sepsis-activated PMNs release their toxic products. Pretreatment with anti-TNF alpha monoclonal antibody thus affords global protection in porcine Gram-negative sepsis.

Animals

In situ pulmonary vascular perfusion for improved recovery of pulmonary intravascular macrophages.

The microcirculation contains mononuclear phagocytes, with features characteristic of macrophages, adhered to luminal capillary surfaces by intercellular adhesion plaques. These pulmonary intravascular macrophages may play an important role in regulating lung vascular tone and capillary permeability, and may modulate capillary endothelial cell growth and replication by the secretion of soluble mediators (i.e., arachidonate metabolites, cytokines). This study describes a technique which utilizes in situ lung perfusion to remove intravascular macrophages in large numbers from the microcirculation of porcine lung (n = 26). This technique yielded 3.8 +/- 0.5 x 10(8) (mean +/- SEM) mononuclear cells which were highly phagocytic toward particulate carbon (phagocytic index, 80 +/- 6%). Harvested mononuclear phagocytes reestablished intercellular adhesion plaques when placed on small vessel porcine pulmonary artery endothelial cell monolayers and exhibited histochemical characteristics typical of monocyte/macrophage lineage cells. Mononuclear cells obtained from lung microcirculation displayed size heterogeneity varying from 10.4 to 16.5 microns in diameter. Both large and small cell populations phagocytosed particulate carbon. Morphometric studies performed on collagenase-treated lung demonstrated that in situ perfusion removed significant numbers of intravascular macrophages in lung capillaries. The technique described permits the rapid removal of anchored mononuclear phagocytes from lung capillaries with minimal postmortem delay.

Animals

Ibuprofen prevents deterioration in static transpulmonary compliance and transalveolar protein flux in septic porcine acute lung injury.

UNLABELLED: The effects of intravenous ibuprofen on measurements of pulmonary function and alveolar capillary membrane permeability to protein in sepsis-induced porcine acute lung injury (ALI) were studied. Young swine (15-25 kg) were anesthetized, cannulated, and ventilated (5 cm H2O PEEP, 0.5 FIO2, and 15 cc/kg tidal volume). Three groups were studied: septic animals (Ps, n = 10) received Pseudomonas aeruginosa for 1 hr IV, controls (C, n = 9) received 0.9% NaCl, and ibuprofen-treated septic animals (Ps + Ibu, n = 7) received ibuprofen 12.5 mg/kg at 0 and 120 min post Ps. Systemic (SAP) and pulmonary (PAP) arterial pressures, PaO2, cardiac index (CI), static lung compliance (CL), EVLW (thermal cardiogreen), and peripheral white blood cell counts (WBC) were measured. Bronchoalveolar lavage (BAL) was performed for protein and % neutrophil (%PMN) content. RESULTS: Ps produced significant (p less than 0.05) decreases in CL, PaO2, SAP, CI, and peripheral WBC and increases in PAP, EVLW, BAL protein, and %PMN's vs. controls. Ibu prevented the early increase in PAP and attenuated the late increase in PAP and EVLW. Ibu also maintained PaO2, CL, BAL protein, and %PMN's in BAL at control levels, but exhibited no significant effect on peripheral leukopenia. These data strongly suggest that ibuprofen administered before and at 120 min after onset of Pseudomonas infusion improves lung compliance and affects neutrophil function sufficiently to significantly ameliorate many of the physiologic derangements in acute sepsis.

Acute Disease

Increased survival time after delayed histamine and prostaglandin blockade in a porcine model of severe sepsis-induced lung injury.

A combination of cimetidine, diphenhydramine, and ibuprofen has been shown to be an effective treatment in a porcine model of septic acute lung injury. The present study was designed to evaluate this therapy in a delayed treatment survival model. Three groups of animals were studied: a control group (C, n = 6) received a sham infusion of 0.9% saline; a septic group (Ps, n = 5) received a continuous infusion of live Pseudomonas aeruginosa organisms; and a treatment group (CID, n = 6) received P. aeruginosa plus cimetidine 150 mg, ibuprofen 12.5 mg/kg, and diphenhydramine 10 mg/kg given at 90 min after P. aeruginosa infusion, and hourly thereafter. Group Ps developed fulminant acute lung injury and hypodynamic septic shock. CID therapy ameliorated temporarily the progressive course of hypoxemia and increased extravascular lung water (EVLW), delayed the onset of cardiovascular deterioration, and improved significantly survival time. It was concluded that CID therapy given at 90 min after the onset of lethal continuous P. aeruginosa infusion improved significantly animal survival time by improving temporarily hypoxemia and increase in EVLW and delaying cardiovascular collapse.

Animals

Pulmonary compliance: early assessment of evolving lung injury after onset of sepsis.

We compared the sensitivity of dynamic (Cdyn) and static lung compliance (CL) with indicators of permeability injury in a model of septic porcine adult respiratory distress syndrome. Two groups of anesthetized ventilated swine (15-25 kg) were studied. Septic animals (Ps, n = 13) received Pseudomonas aeruginosa intravenously for 1 h, which resulted in severe adult respiratory distress syndrome. Controls (C, n = 13) received 0.9% NaCl. Cdyn, CL, bronchoalveolar lavage for protein estimation, and thermal cardiogreen extravascular lung water (EVLW) measurements were performed in seven C and eight Ps animals. Six C and five Ps animals underwent gamma camera measurement of lung-to-heart ratio (slope index) of 99Tc-labeled human serum albumin. Both Cdyn and CL decreased significantly (P less than 0.01) at 30 min and thereafter in Ps vs. C. EVLW, slope index, and bronchoalveolar protein content increased significantly (P less than 0.05) in Ps vs. C at 120, 150, and 300 min, respectively. Cdyn and CL decreased well before onset of permeability injury. These early changes may be due to release of vasoactive mediators and sequestration of neutrophils in the pulmonary capillaries and later to increases in EVLW. Measurement of Cdyn and CL represents an early means of assessing evolving lung injury in this acute septic porcine model.

Animals

Ranitidine compared to cimetidine in multiagent pharmacological treatment of porcine Pseudomonas ARDS.

The effects of two pharmacologically distinct histamine H2 receptor antagonists were studied in combination with ibuprofen (I) and diphenhydramine (D) in a porcine model of septic ARDS. Cimetidine (C) is reported as having direct oxygen radical scavenging abilities and is an inhibitor of cytochrome P-450, whereas ranitidine (R) acts solely by H2 receptor blockade. Four groups were studied: Group Ps (n = 8) received a continuous infusion of live Pseudomonas aeruginosa 5 x 10(8) CFU/ml at 0.3 ml/20kg/min, Group C (n = 6) received a control saline infusion, and the treatment groups received I (12.5 mg/kg) and D (10 mg/kg) in combination with either C (150 mg, CID, n = 6) or R (25 mg, RID, n = 5) given at 20 and 120 minutes after the onset of Ps. Pulmonary (PAP) and systemic (SAP) arterial pressures, cardiac index (CI), PaO2, thermal cardiogreen extravascular lung water (EVLW) and scintigraphically determined pulmonary albumin flux (slope index, SI) were measured. Ps infusion produced significant (p less than 0.05) cardiovascular collapse, hypoxemia and increased EVLW and SI. Both CID and RID temporarily reversed pulmonary arterial hypertension and maintained PaO2, EVLW, SAP and CI at control levels throughout the study, and significantly improved SI at 180 min. These results suggest that cimetidine and ranitidine act in this combination therapy primarily as H2 receptor antagonists.

Animals

Treatment of porcine Pseudomonas ARDS with combination drug therapy.

A combination drug therapy (Poly-5: ibuprofen 12.5 mg/kg, methylprednisolone 30 mg/kg, cimetidine 150 mg, diphenhydramine 10 mg/kg, and ketanserin 0.2 mg/kg) given at 20 and 120 minutes after starting continuous intravenous Pseudomonas (Ps, 5 X 10(8) CFU/20 kg/min) was studied in three groups of swine: saline control (C, n = 9), Ps alone (Ps, n = 8), and Ps plus Poly-5 (n = 5). PaO2, systemic (SAP) and pulmonary arterial (PAP) pressures, cardiac index (CI), thermal-cardiogreen extravascular lung water (EVLW), pulmonary albumin flux (slope index, SI), and arterial blood serotonin levels (5-HT) were measured. Ps produced significant (p less than 0.05) increases in PAP, EVLW, and SI with decreases in PaO2, CI, and SAP. 5-HT fell significantly compared to baseline. Poly-5 prevented (p less than 0.05) the rise in EVLW and SI and the fall in PaO2 and CI compared to Ps. PAP and SI were maintained at C until 90 and 150 minutes, respectively. SAP fell significantly from C at 30, 60, and 180 minutes. 5-HT was significantly lower than Ps throughout, and significantly lower than baseline at 180 minutes. Combined blockade of arachidonic acid metabolites, histamine, and serotonin receptors prevented hypoxemia, increased pulmonary capillary permeability, and cardiovascular deterioration in this porcine septic ARDS model.

Animals