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W Seeger

Publications and source records attributed to W Seeger.

At least 181 records · Page 10Linked to original sources

The listerial exotoxins listeriolysin and phosphatidylinositol-specific phospholipase C synergize to elicit endothelial cell phosphoinositide metabolism.

Exotoxins such as listeriolysin (LLO) and phosphatidylinositol-specific phospholipase C (PIcA) have been implicated in listerial infection and sepsis. Employing different Listeria strains, mutated in individually known virulence genes, we examined exotoxin-related induction of endothelial cell signaling. Listeria monocytogenes was a potent inductor of phosphatidylinositol (PtdIns) metabolism in HUVEC. This effect was completely absent in a LLO-negative strain. Using a recombinant Listeria innocua strain, engineered to produce high levels of LLO, PtdIns metabolism was restored to approximately 30% of that produced by the parental L. monocytogenes strain. A recombinant L. innocua strain expressing only PIcA did not induce any PtdIns metabolism. Even higher than wild-type levels of PtdIns hydrolysis products were, however, evoked when engineered bacteria secreted both LLO and PIcA. These effects occurred in the absence of bacterial uptake by the endothelial cells. Corresponding results were observed with regard to endothelial diacylglycerol (DAG) generation. The amplification of endothelial cell signaling could be reproduced by engaging purified LLO and PIcA in the absence of bacteria. In these experiments, the unrelated pore-forming agent staphylococcal alpha-toxin, a very weak stimulus for endothelial phosphoinositide metabolism by itself, substituted for LLO to allow marked PtdIns hydrolysis when co-applied with PIcA. We conclude that the listerial exotoxins LLO and PIcA cooperate to provoke potent second messenger synthesis in endothelial cells, in the absence of cell invasion by the bacteria. This is an impressive example of synergism between a pore-forming and an enzymatic bacterial exotoxin in provoking cell signaling and inflammatory events.

Bacterial Proteins↗

Fish oil fatty acids and human platelets: dose-dependent decrease in dienoic and increase in trienoic thromboxane generation.

Dietary enrichment of membrane phospholipids with n-3 (fish-oil-derived) fatty acids has attracted attention as a putative therapeutic regimen for suppression of inflammatory and coagulatory events. Use of n-3 fatty-acid-enriched lipid infusions for parenteral nutrition results in micromolar concentrations of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DCHA) in the plasma-free fatty acid fraction. We investigated the influence of free EPA and DCHA on platelet thromboxane (Tx) A2 and A3 formation by using a recently developed high performance liquid chromatography-ELISA technique for separate quantification of the stable hydrolysis products TxB2 and TxB3. Washed human thrombocytes were incubated with free arachidonic acid (AA; 1 microM), A23187 (0.1 microM) or thrombin (5 U/mL) for stimulation; all regimens provoked large quantities of TxA2 in the absence of TxA3. Simultaneous admixture of free EPA or free DCHA to the incubation medium (concentration range, 0.01-50 microM) largely suppressed platelet TxA2 generation in response to all stimuli used in a dose-dependent manner. The effective concentration with 50% influence of arachidonic acid was 4.2 microM, whereas the inhibitory concentration with 50% effect of EPA and DCHA were both in the same order of magnitude but differed with the nature of the agonist (0.2-7 microM). Platelet (co-)incubation with EPA, but not DCHA, provoked dose-dependent synthesis of n-3-lipid-derived thromboxane: kinetics of formation and absolute quantities of TxA3 approximated 20% of the respective TxA2 data upon stimulation with AA. Both EPA and DCHA dose-dependently suppressed U46619-provoked platelet aggregation. We conclude that EPA and DCHA are potent competitive inhibitors of TxA2 generation by intact platelets, with EPA acting as poor substrate and DCHA being no substrate for the cyclooxygenase/thromboxane synthase complex. Enrichment of the plasma-free fatty acid fraction with n-3 lipids may offer a therapeutic regimen to suppress the synthesis of the potent proaggregatory and vasoconstrictory agent TxA2.

Animals↗

Neutrophil activation by anti-proteinase 3 antibodies in Wegener's granulomatosis: role of exogenous arachidonic acid and leukotriene B4 generation.

Among the anti-neutrophil cytoplasmic antibodies (ANCA), those targeting proteinase 3 (PR3) have a high specificity for Wegener's granulomatosis (WG). It is known that a preceding priming of neutrophils with cytokines is a prerequisite for membrane surface expression of PR3, which is then accessible to autoantibody binding. Employing a monoclonal antibody directed against human PR3 and ANCA-positive serum from WG patients with specificity for PR3, we now investigated the role of free arachidonic acid (AA) in autoantibody-related human neutrophil activation. Priming of neutrophils with tumor necrosis factor (TNF-alpha) for 15 min or exposure to anti-PR3 antibodies or incubation with free AA (10 microM) as sole events did not provoke superoxide generation, elastase secretion or generation of 5-lipoxygenase products of AA. Similarly, the combination of TNF-alpha-priming and AA incubation was ineffective. When TNF-alpha-primed neutrophils were stimulated by anti-PR3 antibodies, superoxide and elastase secretion was provoked in the absence of lipid mediator generation. However, when free AA was additionally provided, a strong activation of the 5-lipoxygenase pathway was demasked, with the appearance of excessive quantities of leukotriene (LT)B4, LTA4, and 5-hydroxyeicosatetraenoic acid. Moreover, superoxide and elastase secretion were markedly amplified, and studies with 5-lipoxygenase inhibitors and a LTB4-antagonist demonstrated this was due to an LTB4-related autocrine loop of cell activation. In contrast, the increased synthesis of platelet-activating factor in response to TNF-alpha-priming and anti-PR3 stimulation did not contribute to the amplification loop of neutrophil activation under the given conditions. We conclude that anti-PR3 antibodies are potent inductors of the 5-lipoxygenase pathway in primed human neutrophils, and extracellular free AA, as provided at an inflammatory focus, synergizes with the autoantibodies to evoke full-blown lipid mediator generation, granule secretion and respiratory burst. Such events may be enrolled in the pathogenesis of focal necrotizing vascular injury in Wegener's granulomatosis.

Arachidonate 5-Lipoxygenase↗

Aerosolized prostacyclin and iloprost in severe pulmonary hypertension.

OBJECTIVE: To compare the effects of aerosolization of prostacyclin and its stable analog iloprost with those of nasal oxygen, inhaled nitric oxide, and intravenous prostacyclin on hemodynamics and gas exchange in patients with severe pulmonary hypertension. DESIGN: Open uncontrolled trial. SETTING: Justus-Liebig-University, Giessen Germany. PATIENTS: 4 patients with primary pulmonary hypertension and 2 patients with severe pulmonary hypertension associated with calcinosis, the Raynaud phenomenon, esophageal dysfunction, sclerodactyly, and telangiectasia (the CREST syndrome). All were classified as New York Heart Association class III or class IV. INTERVENTION: Short-term applications of O2, inhaled nitric oxide, intravenous prostacyclin, aerosolized prostacyclin, and aerosolized iloprost during repeated catheter investigation of the right side of the heart within a 1-month period. One patient had long-term therapy with inhaled iloprost. RESULTS: Aerosolized prostacyclin decreased pulmonary artery pressure in 6 patients from (mean +/- SE) 62.3 +/- 4.1 mm Hg to 50.8 +/- 5.5 mm Hg and reduced pulmonary vascular resistance from 1721 +/- 253 dyne/s cm-5 to 1019 +/- 203 dyne/s cm-5, and it increased cardiac output from 2.75 +/- 0.21 L/min to 4.11 +/- 0.54 L/min, mixed venous oxygen saturation from 51.1% +/- 3/4% to 66.3% +/- 4.1% and arterial oxygen saturation from 90.6% +/- 2.7% to 93.8% +/- 23% (P<0.05 for all changes). Mean systemic arterial pressure was only slightly affected. The responses lasted for 10 to 30 minutes after inhalation was terminated. Aerosolized iloprost had an identical efficacy profile but was associated with a longer duration of the pulmonary vasodilatory effect (60 min to 120 min). In comparison, intravenous prostacyclin reduced pulmonary vascular resistance with corresponding efficacy but produced a more pronounced decline in systemic artery pressure and no clinically significant decrease in pulmonary artery pressure. Nitric oxide and O2 were less potent pulmonary vasodilators in these patients. In one patient, 1 year of therapy with aerosolized iloprost (100 microgram/d in six aerosol doses) resulted in sustained efficacy of the inhaled vasodilator regimen and clinical improvement. CONCLUSION: Aerosolization of prostacyclin or its stable analog iloprost causes selective pulmonary vasodilatation, increases cardiac output, and improves venous and arterial oxygenation in patients with severe pulmonary hypertension. Thus, it may offer a new strategy for treatment of this disease.

Adult↗

Omega-3 lipid infusion in a heart allotransplant model. Shift in fatty acid and lipid mediator profiles and prolongation of transplant survival.

BACKGROUND: omega-3 Fatty acids may have a major impact on immune responses involved in heart transplant rejection. We compared the effects of posttransplant intravenous supplementation with omega-3-rich versus omega-6-rich lipid emulsions on graft survival, plasma fatty acid profiles, and levels of arachidonic acid versus eicosapentaenoic acid-derived lipid mediators. METHODS AND RESULTS: Inbred PVG and Wistar-Kyoto rats were used as donors and recipients, respectively, in a model of heterotopic heart transplantation. Animals received 9 g/kg body wt per day of either fish oil-derived (n = 8) or soybean oil-derived fat (n = 7) in the form of a continuously infused lipid emulsion; controls were sham-infused with saline (n = 8). Graft rejection was assessed by loss of activity of the transplant. The fish oil-derived preparation but not that originating from soybean oil caused an increase in total and free plasma fatty acids. Substantial quantities of eicosapentaenoic acid and docosahexaenoic acid appeared in the free fatty acid fraction, surpassing those of arachidonic acid. Ex vivo stimulation of neutrophils with the Ca2+ ionophore A23187 demonstrated an increase in 5-series leukotriene (LT) generation in animals undergoing omega-3 lipid infusion (LTB5, omega-oxidation products of LTB5, LTA5 secretion), with 5-series/4-series LT ratios ranging between 0.08 and 0.36. Ratios of TX B3/B2 liberated from ex vivo stimulated platelets even approached 1:1 in omega-3 supplemented rats. Graft survival was 7.6 +/- 0.3 (mean +/- SEM) days in saline-infused, 10.4 +/- 0.7 in omega-6 lipid-infused, and 12.9 +/- 0.4 in omega-3 lipid-infused animals. CONCLUSIONS: Posttransplant intravenous alimentation with fish oil-derived lipid emulsions prolongs heart transplant survival in excess to omega-6 lipids. Profound changes in fatty acid profiles and lipid mediator generation may underlie this finding.

Animals↗

Microsurgical management of ventral and ventrolateral foramen magnum meningiomas.

The authors report their experiences gained from 19 patients with ventral or ventrolateral foramen magnum meningiomas operated on via the dorsolateral, suboccipital transcondylar access route. It is emphasized that the microsurgical management of these lesions includes two important aspects which increase the safety of the procedure: a meticulous preoperative planning based on the microanatomical details of each patient, as well as an individualized tailoring of the surgical approach. There were no deaths, and, in the past 5 years, no neurological complications in this series. Gross total removal of the tumour was achieved in each case. It is concluded that microsurgical removal of ventral or ventrolateral foramen magnum meningiomas with this technique constitutes a safe and recommendable procedure.

Aged↗

Transfusion-related acute lung injury due to HLA-A2-specific antibodies in recipient and NB1-specific antibodies in donor blood.

Transfusion-related acute lung injury (TRALI) is a hazardous but little-known complication of blood transfusion, characterized by non-cardiogenic lung oedema after blood transfusion. Leucoagglutinating antibodies in the donor plasma are considered to play a central role in the pathogenesis of TRALI but no recommended procedure currently exists for their detection, and most of them have not yet been well characterized. Serum samples of two patients who have developed TRALI within 30 min of blood transfusion and the sera of the involved blood donors were investigated for leucocyte antibodies by granulocyte immunofluorescence, granulocyte agglutination and lymphocytotoxicity assays using typed test cells. Suspected specificities of the detected antibodies were confirmed by a luminoimmunoblot assay and the antigen capture assay MAIGA. One case was associated with granulocyte agglutinating anti-HLA-A2 antibodies in the recipient's (i.e. patient's) own blood and the other with donor-related non-agglutinating antibodies directed against the granulocyte-specific antigen NB1. Leucocyte incompatibility between donor and recipient was shown in both cases by crossmatching and typing of the incompatible cells for the appropriate antigen. The results show that TRALI is associated not only with donor- but also with recipient-related leucocyte antibodies. In addition to leucoagglutinating antibodies, non-agglutinating granulocyte-specific antibodies can be also involved. For immunodiagnosis, sera from both must be investigated by a combination of granulocyte and lymphocyte (HLA) antibody screening tests and leucocyte incompatibility verified by crossmatching.

GPI-Linked Proteins↗

[Estimation of radiation exposure in interventional neuroradiology of the head in children compared to exposure of adult patients].

PURPOSE: We reviewed different dosimetric results in three children investigated for haemangioma, arteriovenous malformation, and angioma of the head in comparison to global results in 11 adults. METHOD: The detailed patient dosimetry was performed using thermoluminescence dosimetry (TLD), area-dose exposure meter (ADE), and Alderson phantom. RESULTS: The patient doses of relevant organs ranged in the milli-Grays (mGy) level. The irradiation-induced risk is on a per mil level in respect of ICRP-60. The risk of cerebral angiographic procedures, radiotherapy, or surgical interventions is on a per cent level. The organ doses for staff are on a micro-Gray (microGy) scale and are higher in examination of children than of adults. A statistical limit of examinations depends on yearly or life-time dose limits with regard to the "Röntgenverordnung" (Germany).

Adult↗

Cerebrospinal fluid shunting in idiopathic normal-pressure hydrocephalus of the elderly: effect of periventricular and deep white matter lesions.

OBJECTIVE: We investigated the effect of periventricular and deep white matter lesions (DWMLs) on outcome after cerebrospinal fluid shunting in a prospective series of elderly patients with idiopathic normal-pressure hydrocephalus. METHODS: White matter lesions were assessed with T2-weighted magnetic resonance scans according to a standard protocol in 41 patients with idiopathic normal-pressure hydrocephalus of the elderly who underwent subsequent shunting. In all patients, the diagnosis of idiopathic normal-pressure hydrocephalus had been established preoperatively by clinical and diagnostic investigations. RESULTS: At a mean follow-up of 16 months, clinical improvement was observed in 37 of 41 patients (90%). There was no persistent morbidity related to surgery. The degree of overall clinical improvement was negatively correlated with the extension of periventricular lesions (correlation coefficient r = -0.324 [P = 0.04]) and DWMLs (correlation coefficient r = -0.373 [P = 0.02]). This negative correlation was also noted when the analysis was conducted separately for each of the cardinal symptoms (gait disturbance, cognitive impairment, and urinary incontinence). There was no consistent pattern of periventricular and DWMLs in the four patients who failed to respond to shunting. CONCLUSION: Periventricular and DWMLs of varying degrees are common findings on magnetic resonance scans of patients with idiopathic normal-pressure hydrocephalus of the elderly. After careful preoperative selection of patients with idiopathic normal-pressure hydrocephalus, individuals with DWMLs suggestive of concomitant vascular encephalopathy may also benefit from cerebrospinal fluid diversion. Although, in general, the degree of improvement depends on the severity of periventricular and DWMLs, patients with more extensive WMLs still may derive clinical benefit from the operation.

Aged↗

Listeriolysin is a potent inducer of the phosphatidylinositol response and lipid mediator generation in human endothelial cells.

The impact of Listeria monocytogenes listeriolysin O (LLO) secretion on phosphoinositide metabolism and mediator (platelet-activating factor and prostaglandin I2) generation was investigated in human umbilical vein endothelial cells. Wild-type L. monocytogenes, purified LLO, and an L. innocua strain engineered to secrete LLO all elicited a strong response, whereas mutant strains defective in LLO production were ineffective. Thus, human umbilical vein endothelial cell stimulation by listeriae is linked to production of LLO.

Bacterial Toxins↗

Compartmentalized lung cytokine release in response to intravascular and alveolar endotoxin challenge.

Lung cytokine generation has been implicated in pulmonary injury and systemic inflammatory responses. In bufferperfused rabbit lungs, intravascular endotoxin (10 ng/ml perfusate; total amount 7 micrograms) provoked the liberation of 212,100 +/- 119,700 pg tumor necrosis factor-alpha (TNF-alpha) into the vascular space within 3 h. This was augmented to 3,564,400 +/- 1,285,900 pg in the presence of 1% serum. Bronchoalveolar lavages demonstrated the absence of buffer-admixed endotoxin and transition of only minor fractions of the vascular TNF-alpha load into the alveolar space. Aerosolization of 22 micrograms endotoxin liberated 824,400 +/- 48,750 pg TNF-alpha into the alveolar compartment, which was even increased to 16,980,000 +/- 6,066,350 pg on co-nebulization of serum. No endotoxin and only minor amounts of the alveolar TNF-alpha burden spilled over into the vascular compartment. Vascular pressures and lung vascular permeability did not change. We conclude that both intravascular and alveolar endotoxin challenge provokes excessive lung TNF-alpha generation, amplified manyfold in the presence of small serum quantities. For both routes of application, however, the cytokine responses were found to be largely compartmentalized under the given conditions of integer lung barrier properties.

Aerosols↗

On-line laser-photometric monitoring of aerosol deposition in ventilated rabbit lungs.

A photometric technique was developed for on-line measurement of aerosol deposition in isolated, ventilated, and perfused rabbit lungs. A jet nebulizer was used for aerosolization of saline (hygroscopic particles) and di(2-ethylhexyl) sebacate (nonhygroscopic particles). Aerosol concentration (laser photometer, constructed for measurements in rabbit lungs) and flow rate (commercial pneumotachograph) were continuously monitored at the inlet of the tracheal cannula. Computer-assisted data processing allowed the breath-by-breath calculation of inhaled and exhaled aerosol mass, thus providing the deposition fraction. With the use of hygroscopic particles, however, this approach was hampered by the humidity-induced particle growth in the airways, leading to an overestimation of the aerosol concentration in exhaled air. This effect was corrected by an algorithm using a "particle growth factor" derived breath by breath from the photometer signal. To test the reliability of this approach, saline particles carrying technetium-99m label were aerosolized into rabbit lungs with the use of various ventilator settings, and the aerosol deposition was assessed in parallel by photometry and by radioactivity detection over the lung and over a trap in the exhaled-air circuit. Superimposable curves of cumulative aerosol deposition, with changes in kinetics dependent on the ventilator mode, were obtained. For a given ventilator setting, absolute values of the deposition fraction were 0.32 +/- 0.04 (radiotracer quantification) and 0.36 +/- 0.04 (photometry; means +/- SD; n = 4). We conclude that the presented laser-photometric technique allows reliable on-line monitoring of the deposition of both nonhygroscopic and hygroscopic aerosol particles in ventilated lungs.

Aerosols↗

Surfactant alterations in severe pneumonia, acute respiratory distress syndrome, and cardiogenic lung edema.

Bronchoalveolar lavage fluids (BALF) were analyzed for surfactant abnormalities in 153 patients with acute respiratory failure necessitating mechanical ventilation. Diagnoses were acute respiratory distress syndrome (ARDS) in the absence of lung infection (n = 16), severe pneumonia (PNEU; n = 88), ARDS and PNEU (n = 36), and cardiogenic lung edema (CLE; n = 13). The PNEU group was subdivided into groups with alveolar PNEU (n = 35), bronchial PNEU (n = 16), interstitial PNEU (n = 18) and nonclassified PNEU (n = 19). Comparison with healthy controls (n = 20) was undertaken. Total phospholipids (PL), proteins, PL classes (HPTLC) and surfactant apoproteins SP-A and SP-B (ELISA) were quantified in the original BALF. The 48,000 x g pellet from centrifugation of the BAL was used to assess the percentage of large surfactant aggregates (LSA) and the biophysical properties of the surfactant (pulsating bubble surfactometer). All groups with inflammatory lung injury (PNEU and/or ARDS) showed some decrease in the lavageable PL pool, a reduced LSA content in BALF, and a manifold increase in alveolar protein load. Marked changes in the PL profile were noted throughout the groups (a decrease in phosphatidylcholine (PC) and phosphatidylglycerol (PG) and an increase in phosphatidylinositol [PI] and sphingomyelin [SPH]). Concentrations of SP-A but not of SP-B in BALF were reduced. Minimum surface-tension values approached 0 mN/m in controls, and ranged from 10 to 25 mN/m in the absence of supernatant protein and from 20 to 35 mN/m in recombination with leaked protein in the groups with ARDS and/or PNEU. Abnormalities in alveolar PNEU surpassed those in bronchial PNEU, and interstitial PNEU presented a distinct pattern with extensive metabolic changes. All surfactant changes were absent in CLE except for a slight inhibition of surface activity by proteins. We conclude that pronounced surfactant abnormalities, comparable to those in ARDS in the absence of lung infection, occur in different entities of severe PNEU, but not in CLE.

Acute Disease↗

Direct comparison of inhaled nitric oxide and aerosolized prostacyclin in acute respiratory distress syndrome.

Inhalation of NO and aerosolization of PGI2 have been suggested to achieve selective pulmonary vasodilation and improvement of arterial oxygenation in patients with ARDS. We directly compared these two modes of transbronchial vasodilator therapy in 16 ARDS patients mechanically ventilated (mean lung injury score [1] 2.75 +/- 0.05). Patients were randomized to receive either first NO and then PGI2, or vice versa. Each drug was individually titrated to find the maximum improvement of arterial oxygenation. Gas exchange variables, including data from the multiple inert gas elimination technique (MIGET), and hemodynamics under application of NO/PGI2 were compared with pre- and post-challenge values. NO (17.8 +/- 2.7 ppm) increased Pa O2/FI O2 from 115 +/- 12 to 144 +/- 15 mm Hg (p<0.01) and reduced the shunt-flow from 33.1 +/- 3.6 to 26.6 +/- 4.5% (p<0.05). Aerosolized PGI2 (7.5 +/- 2.5 ng/kg min) augmented Pa O2/FI O2 from 114 +/- 12 to 135 +/- 12 mm Hg (p<0.01), and decreased shunt from 33.5 +/- 3.8 to 26.0 +/- 3.9% (p<0.05). In 10 patients, both NO and PGI2 caused an increase in Pa O2/FI O2 by at least 10 mm Hg. Two further patients displayed an improvement of arterial oxygenation in response to either NO or PGI2. NO decreased mean pulmonary artery pressure from 34.8 +/- 2.2 to 33.0 +/- 1.8 mm Hg, and PGI2 from 35.0 +/- 2.2 to 31.9 +/- 1.7 mm Hg (p<0.05). We conclude that individually titrated doses of inhaled NO and aerosolized PGI2 effect selective pulmonary vasodilation and redistribute blood-flow from shunt-areas to well-ventilated regions with nearly identical efficacy profiles.

Administration, Inhalation↗

Bronchoscopic surfactant administration in patients with severe adult respiratory distress syndrome and sepsis.

The present study was performed on 10 patients with severe adult respiratory distress syndrome (ARDS), all suffering from sepsis (mean lung injury score [LIS] (1): 3.25 +/- 0.1; duration of mechanical ventilation upon study entry: 3.1 +/- 0.6 d). Ex vivo analysis of the alveolar surfactant system, obtained by bronchoalveolar lavage (BAL), showed severe impairment of surfactant function. Three hundred milligrams of natural surfactant/kg body weight (Alveofact) was delivered bronchoscopically in separate doses to each segment of both lungs. This caused an immediate increase in PaO2/FlO2 from 85 +/- 7 mm Hg to 200 +/- 20 mm Hg (p < 0.001), mainly due to a decrease in shunt flow (42 +/- 4 to 20 +/- 2% [p < 0.001]). Reanalysis of the alveolar surfactant showed that its function was significantly improved. In five patients the increase in arterial oxygenation was partially lost within the next few hours, and a second dose of 200 mg/kg surfactant was applied 18 to 24 h later, again increasing PaO2/FlO2 values. Eight patients survived the subsequent 14-d observation period with progressive improvement of gas exchange, and five patients were definitely weaned from the respirator. All fatalities were due to non-respiratory causes. We conclude that the bronchoscopic application of a high dose of surfactant aimed at overcoming inhibitory factors in the alveolar space of these patients, may offer a feasible and safe approach to improving gas exchange in severe ARDS.

Adolescent↗

Synergism of alveolar endotoxin "priming" and intravascular exotoxin challenge in lung injury.

Both endotoxin (lipopolysaccharides of gram-negative bacteria; LPS) and bacterial exotoxins may induce pulmonary microcirculatory disturbances when infused into the lung vasculature, and synergism between these types of microbial challenge has recently been noted. We now asked whether a bronchoalveolar LPS load in perfused rabbit lungs alters the responsiveness to a subsequent intravascular challenge with Escherichia coli hemolysin (ECH). In control lungs (sham aerosolization) and lungs undergoing LPS nebulization (alveolar deposition of approximately 22 micrograms), normal pulmonary artery pressure (PAP), lung weight, and ventilation/perfusion (V/Q) matching were observed. Intravascular ECH (0.013 hemolytic units/ml buffer fluid) increased PAP by approximately 10 mm Hg and lung weight by approximately 4 g within 10 min, paralleled by V/Q mismatch and a shunt flow of approximately 15%. In lungs "primed" for 3 h by a preceding bronchoalveolar LPS deposition, the same ECH dose provoked a dramatic increase in PAP to 40 to 50 mm Hg, a weight gain of approximately 10 g, and shunt flow of 60%. Both vasoconstrictor response and V/Q mismatch were completely suppressed by preadministration and "rescue" application of the thromboxane receptor antagonist BM13.505. We conclude that a bronchoalveolar endotoxin load, though effecting no changes in pulmonary function by itself and showing no spillover into the vascular compartment, primes the lungs for a manifold increased vascular response to a subsequently infused exotoxin. Enhanced thromboxane-mediated vasoconstriction, largely redistributing perfusate flow from normally ventilated to shunt areas, is suggested as the predominant underlying event.

Administration, Inhalation↗