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Biomedical subjects

W Seeger

Publications and source records attributed to W Seeger.

At least 19 recordsLinked to original sources

Hydrogen peroxide-induced increase in lung endothelial and epithelial permeability--effect of adenylate cyclase stimulation and phosphodiesterase inhibition.

Neutrophil-derived hydrogen peroxide (H2O2) is believed to play an important role in inflammatory lung injury. We investigated the influence of pharmacological agents that increase intracellular c-AMP levels on endothelial and epithelial leakage in response to intravascular H2O2 challenge in buffer-perfused rabbit lungs. Endothelial permeability was assessed by determination of the capillary filtration coefficient (Kfc) and lung weight gain. Measurement of the clearance rate of inhaled aerosolized technetium-99m-labeled diethylenetriamine pentaacetic acid ([99mTc]DTPA) from the lungs into the perfusion fluid was used as an index of alveolar epithelial permeability. Experiments were performed in the presence of acetylsalicylic acid to suppress H2O2-induced lung prostanoid generation and concomitant vasoconstriction. Under these conditions, H2O2 admixture to the perfusate (250 microM) caused a greater than eight-fold increase in Kfc values, resulting in > 30 g lung weight gain within 30 min in the absence of any significant vasopressor response. Pretreatment with the adenylate cyclase activators prostaglandin E1 (0.1 microM) and forskolin (0.1 microM), the dual phosphodiesterase type III/IV inhibitor zardaverine (10 microM) as well as combinations of these drugs all caused a nearly complete suppression of this early Kfc increase; and severe edema formation (> 30 g) was retarded to approximately 50-55 min. In addition to the microvascular leakage response, H2O2 caused a four- to five-fold increase in the [99mTc]DTPA clearance rate, starting within 15 min and culminating after approximately 35 min. Adenylate cyclase activation reduced this epithelial leakage response by approximately 30%, whereas zardaverine exerted no significant effect. We conclude that both microvascular endothelial and alveolar epithelial barrier function are severely compromised by intravascular H2O2 challenge in intact lungs. Pharmacological approaches to increase c-AMP levels, including both adenylate cyclase activation and phosphodiesterase inhibition, partially block the endothelial response and, to a lesser extent, the epithelial response.

Adenylyl Cyclases

Prevention and therapy of the adult respiratory distress syndrome.

The complex pathophysiology of adult respiratory distress syndrome (ARDS) makes preventive and therapeutic concepts difficult. Ample experimental evidence indicates that ARDS can be prevented by blocking systemic inflammatory agents. Clinically, only heparin, for inhibition of coagulation phenomena, is presently used among this array of approaches. Corticosteroids have not proven to be beneficial in ARDS. Alternative antiinflammatory agents are being proposed and are under current clinical investigation (e.g. indomethacin, acetylcysteine, alpha 1-proteinase inhibitor, antitumor necrosis factor, interleukin 1 receptor antagonist, platelet-activating factor antagonists). Symptomatic therapeutic strategies in early ARDS include selective pulmonary vasodilation (preferably by inhaled vasorelaxant agents) and optimal fluid balance. Transbronchial surfactant application, presently tested in pilot studies, may be available for ARDS patients in the near future and may have acute beneficial effects on gas exchange, pulmonary mechanics, and lung hemodynamics; its impact on survival cannot be predicted at the present time. Strong efforts should be taken to reduce secondary nosocomial pneumonia in ARDS patients and thus avoid the vicious circle of pneumonia, sepsis from lung infection, and perpetuation of multiple organ dysfunction syndrome. Optimal respirator therapy should be directed to ameliorate gas-exchange conditions acutely but at the same time should aim at minimizing potentially aggravating side effects of artificial ventilation (barotrauma, O2 toxicity). Several new techniques of mechanical ventilation and the concept of permissive hypercapnia address these aspects. Approaches with extracorporeal CO2 removal and oxygenation are being used in specialized centers.

Humans

Staging, scoring and grading of medulloblastoma. A postoperative prognosis predicting system based on the cases of a single institute.

Although recently survival of some medulloblastoma patients increased remarkably, it remains a serious diagnosis in others. In order to predict the postoperative prognosis in patients treated for medulloblastoma, a new staging, scoring and grading system was developed. Sixty-six patients operated on microsurgically between 1975 and 1990 at a single neurosurgical center were fully followed-up. No patient was excluded due to a poor postoperative course. Completion of commonly used radiotherapy protocols was attempted in all patients. Survival of patients was evaluated by the Kaplan-Meier method. The following 5 parameters were selected to define subgroups: patients' age, tumour location and histology, degree of resection and presence or absence of metastases. Patients older than 10 years had a better prognosis than individuals aged 10 or less (p < 0.01), patients with lateral tumours had a better prognosis than patients with midline tumours with brain stem infiltration (p < 0.05), patients with complete tumour resection had a more favourable prognosis than individuals with subtotal (p < 0.01) or partial resection (p < 0.001), patients without metastases at the time of diagnosis had a better prognosis than individuals without such evidence (p < 0.001), patients with the desmoplastic tumour variant had a better prognosis than patients with classical tumour histology (p < 0.01). According to the prognosis of a distinct subgroup, scoring points were distributed which correlated with the degree of inter-subgroup significances. The sum of a single patient's scoring points was called the total score. Based on this score, three groups of prognosis were distinguished.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Hypoxic vasoconstriction in buffer-perfused rabbit lungs.

Isolated rabbit lungs were buffer-perfused under constant flow-conditions with separate control of alveolar (PAO2) and mixed venous (PvO2) O2 tension. Alveolar hypoxia caused an increase in pulmonary artery pressure (PAP) with sigmoidal dose-dependency. Erythrocytes increased the strength of the hypoxic pulmonary vasoconstriction (HPV). The contractile and vasorelaxant responses to the onset and release of alveolar hypoxia, respectively, occurred within seconds. Kinetics of the PAP increase, but not the magnitude of response, were related to the velocity of PAO2 decline. In contrast, changes in PvO2, both in the absence and presence of erythrocytes, did neither provoke any pressor response nor amplify the response to concomitant alveolar hypoxia. Repeatedly performed HPV manoeuvres revealed excellent reproducibility, and long-term alveolar hypoxia (90 min) provoked a biphasic pressor response. We conclude that the isolated rabbit lung is a feasible model for the characterization of hypoxic vasoconstriction, with specific features hitherto not described for perfused lungs of other species.

Animals

Differential influence of arachidonic vs. eicosapentaenoic acid on experimental pulmonary hypertension.

The impact of the 2- and 3-series prostanoid precursors arachidonic acid (AA) and eicosapentaenoic acid (EPA) on experimental pulmonary hypertension was investigated. The model of buffer-perfused rabbit lungs was stimulated by infusion of Escherichia coli hemolysin (HlyA), which is known to provoke sustained thromboxane (Tx)-mediated pulmonary hypertension. Release of di- and trienoic Tx into the recirculating perfusate was quantified by a post-high-performance liquid chromatography enzyme-linked immunosorbent assay technique. HlyA at 0.08 hemolytic unit/ml caused a sustained rise in pulmonary arterial pressure (PAP; maximum increase 14 +/- 2 mmHg) accompanied by progressive TxB2 liberation (maximum perfusate concn 33 +/- 4 pg/ml, baseline < 2 pg/ml). Between 5 and 30 nM, AA provoked a transient monophasic rise in PAP (maximum pressor response 1.5-15 mmHg) and concomitant TxB2 release (peak concn 2-30 pg/ml). Simultaneous administration of HlyA and AA exhibited additive effects with regard to mediator release and pressor responses. EPA at 200-2,000 nM caused a transient rise in PAP similar to that provoked by 5-30 nM AA (maximum pressor response 3-18 mmHg). This was accompanied by liberation of TxB2 (peak concn 16 +/- 5 and 28 +/- 4 pg/ml after 1,000 and 2,000 nM EPA) and TxB3 (peak concn 9 +/- 4 and 30 +/- 3 pg/ml). Combined application of HlyA and EPA resulted in approximate addition of the TxB2 release reaction to each single compound, and TxB3 liberation more than doubled (maximum concn 59 +/- 12 pg/ml). The pressor responses to HlyA-EPA (200-2,000 nM) did not, however, surpass those to HlyA-AA (5-30 nM).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Effects of NADPH oxidase inhibitors on hypoxic vasoconstriction in buffer-perfused rabbit lungs.

The involvement of NADPH oxidase in hypoxic pulmonary vasoconstriction (HPV) was investigated in buffer-perfused rabbit lungs, employing the inhibitors diphenyleneiodonium (DPI) and apocynin. Responses to the vasoconstrictors U-46619 and angiotensin II (ANG II) were used to test specificity. Lung nitric oxide (NO) generation was assessed by on-line monitoring of NO exhalation (chemiluminescence), and the efficacy of DPI and apocynin on the NADPH oxidase-dependent O2- generation was quantified in alveolar macrophages by fluorescent-activated cell sorter technique. In a concentration range between 1 and 5 mM, apocynin inhibited macrophage respiratory burst and HPV but similarly suppressed U-46619-induced vasoconstrictor responses. DPI inhibited macrophage O2- generation in concentrations > or = 0.5 microM. At doses between 0.5 and 1.5 microM, DPI blocked lung NO generation, thereby increasing HPV. At higher doses (4 microM), in contrast, DPI fully blocked the hypoxia-induced pressor responses, whereas the vasoconstrictor responses to U-46619 and [Asn1, Val5] ANG II were not diminished. In the presence of NG-monomethyl-L-arginine, used to block lung NO generation throughout, DPI exhibited only the monophasic selective inhibition of HPV. We conclude that apocynin lacks specificity for HPV, but DPI, in addition to inhibiting lung NO generation, causes selective blockade of the hypoxia-induced vasoconstriction. This finding supports the hypothesis that an NADPH oxidase is involved in hypoxia sensing or specific signal transduction events underlying HPV.

Acetophenones

Role of endothelial cytoskeleton in high-permeability edema due to botulinum C2 toxin in perfused rabbit lungs.

The cytoskeleton of the endothelial cell has been suggested to regulate endothelial barrier function. We investigated the role of actin in the maintenance of pulmonary capillary integrity in perfused rabbit lungs. As a tool for selective perturbation of actin, we employed Clostridium botulinum C2 toxin, which is composed of a membrane translocation component (C2II) and a component (C2I) effecting ADP-ribosylation of nonmuscle G-actin. ADP-ribosylated actin no longer capable of polymerization but acts as a barbed end-capping protein, thereby effecting selective loss of the nonmuscle F-actin content. In buffer-perfused rabbit lungs, combined application of both toxin components (range 50 pg/ml-5 ng/ml C2I) resulted in a time- and dose-dependent increase in the capillary filtration coefficient (Kfc) with concomitant edema formation. Only 300:600 pg/ml C2I:II sufficed to induce a > 10-fold rise of Kfc values within 110 min. This severe lung permeability increase occurred in the absence of vasomotor responses and potassium release or lactate dehydrogenase release. Application of each single toxin component displayed markedly reduced efficacy. Similar to the C2 toxin effect, severe permeability increase without concomitant hemodynamic changes was evoked by cytochalasin D, known to possess F-actin-disrupting properties. Preloading of lung cells with phallacidin, which in opposition to C2 toxin decreases F-actin depolymerization, significantly reduced the C2 toxin-induced increase in vascular permeability. Electron microscopic examination of C2 toxin-poisoned lungs showed early, extensive endothelial cell attenuations, followed by disruptions of the endothelial layer and marked interstitial edema formation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

On-line measurement of nitric oxide generation in buffer-perfused rabbit lungs.

In buffer-perfused rabbit lungs, the mixed expired gas was continuously analyzed for nitric oxide (NO) by chemiluminescence detection, and recovery data in dependency of the alveolar O2 tension were established. A small aliquot of the lung effluent was continuously forwarded to a reaction vessel in which the NO decomposition products nitrite, peroxynitrite, and nitrate [summarized as NOx; acidic vanadium (III) chloride reagent] or nitrite (acidic sodium iodide reagent) were quantitatively reduced back to NO, which was then transferred to a second chemiluminescence detector. Under baseline conditions, the perfused lungs continuously released 2.2 +/- 0.21 nmol/min of NO (n = 10) into the gas space. NO was permanently liberated into the intravascular compartment at 7.0 +/- 0.3 nmol/min (n = 4). According to a very low buffer-gas partition coefficient of NO (estimated to be 0.0292 +/- 0.005 in separate equilibration experiments), NO aerated into the prelung perfusate largely escaped into the alveolar space within one lung passage, whereas only low percentages of inhaled NO were detected as NOx in the buffer medium. Immediate increase of lung NO generation in response to A-23187 challenge and inhibition by NG-monomethyl-L-arginine were demonstrated. In conclusion, in buffer-perfused lungs, total NO generation may be monitored by continuous analysis of NO exhalation and perfusate NOx accumulation.

Animals

Nitric oxide generation and hypoxic vasoconstriction in buffer-perfused rabbit lungs.

Nitric oxide generation and hypoxic vasoconstriction in buffer-perfused rabbit lungs. J. Appl. Physiol. 78(4): 1509-1515, 1995.--We investigated the role of nitric oxide (NO) generation in hypoxic pulmonary vasoconstriction in buffer-perfused rabbit lungs. Exhaled NO was detected by chemiluminescence, and intravascular NO release was quantified as perfusate accumulation of nitrite, peroxynitrite, and nitrate (NOx). Under baseline conditions, exhaled NO was 45.3 +/- 4.1 parts per billion (1.8 +/- 0.2 nmol/min), and lung NOx release into the perfusate was 4.1 +/- 0.4 nmol/min. Alveolar hypoxia (alveolar PO2 of approximately 23 Torr) induced readily reproducible pressor responses preceded by a sharp drop in exhaled NO concentration. In contrast, perfusate NOx accumulation was not affected. Vasoconstrictor responses to U-46619 and angiotensin II were not accompanied by a decrease in NO exhalation. NG-monomethyl-L-arginine dose-dependently suppressed NO exhalation and amplified pressor responses to hypoxia > U-46619 and angiotensin II. In conclusion, portions of baseline NO generation originating from sites with ready access to the gaseous space sharply decrease in response to alveolar hypoxia, whereas the intravascular release of NO is unchanged. Such differential regulation of lung NO synthesis in response to hypoxia may suggest a complex role in the regulation or modulation of hypoxic pulmonary vasoconstriction.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5

Effects of aerosolized prostacyclin in severe pneumonia. Impact of fibrosis.

The effects of aerosolized prostaglandin (PG) I2 on gas exchange and hemodynamics were investigated in patients ventilated mechanically because of severe community-acquired pneumonia. Group A were patients without preexisting lung disease (n = 6), and Group B were those with underlying chronic fibrotic interstitial lung disease (n = 6). Ventilation-perfusion distribution was assessed by the multiple inert gas elimination technique. In Group A, low doses of aerosolized PGI2 (mean, 6.6 +/- 3.0 ng/kg/min) sufficed to decrease the mean pulmonary artery pressure (Ppa) from 35.0 +/- 1.5 to 31.0 +/- 1.6 mm Hg (p < 0.05), to improve the ratio of arterial oxygen to the fraction of inspired oxygen (PaO2/FIO2 increase from 100 +/- 18 to 134 +/- 18; p < 0.05), and to decrease intrapulmonary shunt (36.9 +/- 4.7 to 27.5 +/- 4.5%; p < 0.05). Systemic arterial pressure (Psa) and cardiac output remained unchanged. In Group B, aerosolized PGI2 was ineffective in doses less than 10 ng/kg/min. A dosage of 33.6 +/- 12 ng/kg/min reduced Ppa (38.0 +/- 2.4 to 30.8 +/- 2.1 mm Hg; p < 0.05), but it also decreased Psa (80.3 +/- 3.6 to 71.3 +/- 4.7 mm Hg; NS) and PaO2/FIO2 (73.8 +/- 6.6 to 65.5 +/- 6.8 mm Hg; p < 0.05) values and increased intrapulmonary shunt (44.7 +/- 3.0 to 49.4 +/- 5.0%, NS). After withdrawal of the PGI2 aerosol, all gas exchange and hemodynamic changes returned to preaerosol baseline values within 60 min in both groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Inhalation

ELISA technique for quantification of surfactant protein B (SP-B) in bronchoalveolar lavage fluid.

Surfactant protein B (SP-B) is one of the essential constituents of the alveolar surfactant system, presenting mainly in the form of SP-B dimer. The measurement of this molecule in biologic samples has been hampered by its extreme hydrophobicity and intimate association with surfactant lipids. We developed a solid-phase, adsorption-based enzyme-linked immunosorbent assay (ELISA) technique for the quantification of SP-B in aqueous solutions. The ELISA employs the hydrophobicity of SP-B for direct binding of this compound to polystyrol immunosorbent plates. Samples are mixed with propanol (1:1 vol/vol) to achieve a homogeneous dispersion of their lipophilic constituents prior to adsorption to the wells. After fluid removal by evaporation, trifluoroethanol is added to optimize SP-B-polystyrol binding, and is then removed, again by evaporation. Subsequent washing procedures (diisopropyl-ether/butanol; Tween 20 in phosphate buffered saline [PBS]) selectively remove phospholipids. Solid phase-bound SP-B is detected by a monoclonal mouse antibody against porcine SP-B, cross-reacting with the apoprotein of human origin. For amplification, a biotinylated anti-mouse antibody and the avidin/biotin-peroxidase technique are used. Steep calibration curves with an excellent reproducibility are obtained for SP-B dimer (range: 0.3125 to 40 ng/well), either introduced directly into the immunosorbent-plate wells or previously admixed with synthetic phospholipid mixtures. SP-B monomer is detected with approximately 10% efficiency as compared with the dimer (wt/wt). Cross-reactivities with human SP-A and SP-C or albumin are negligible. Experiments with spiking of human bronchoalveolar lavage fluid (BAL) samples with different quantities of SP-B dimer revealed virtually complete apoprotein recovery.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease

Surfactant incorporation markedly alters mechanical properties of a fibrin clot.

Intra-alveolar clot formation is a common finding in acute and chronic inflammatory lung diseases. Incorporation of lipophilic surfactant components into a growing fibrin clot has recently been reported (Am. J. Respir. Cell Mol. Biol. 1993; 9:213-220). In the present study, we investigated the influence of such surfactant incorporation on the elastic properties and water permeability of the fibrin polymer. Thrombelastography and compaction experiments were employed for assessment of the elastic properties, and the permeability characteristics of the clot material were addressed in fibrin-packed columns. Two calf lung surfactant extracts (CLSE and Alveofact), Curosurf, and a synthetic phospholipid mixture (dipalmitoylphosphatidylcholine, phosphatidylglycerol, and palmitic acid at a ratio of 68.5:22.5:9 [wt/wt]) were used. The presence of surfactant did not affect the cleavage of fibrinopeptide A upon incubation of fibrinogen with thrombin (enzyme-linked immunosorbent assay technique). Similarly, kinetics and extent of factor XIII-induced covalent crosslinkage of the fibrin network remained unchanged in the presence of surfactant (sodium dodecyl sulfate polyacrylamide gel electrophoresis and D-Dimer quantification upon subsequent clot lysis). All surfactants, however, dose-dependently decreased the elastic modulus of the arising fibrin polymer. The maximal amplitude in thrombelastography was reduced, and the recovery of fluid after centrifugation of the fibrin clot increased. Fibrin clots embedding natural surfactant material displayed reduced permeability for saline as compared with control fibrin polymers. Subsequent washout of lipids from these clots with Triton X-100 resulted in increased hydraulic conductivity. This was accompanied by an increase in pore size, suggesting altered architecture of the fibrin matrix generated in the presence of surfactant.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The effect of 1 ppm nitrogen dioxide on bronchoalveolar lavage cells and inflammatory mediators in normal and asthmatic subjects.

Several studies have suggested that patients with bronchial asthma are more susceptible to the potential effects of nitrogen dioxide (NO2) than healthy subjects, with respect to airway responsiveness and lung function. We investigated whether these differences are paralleled by differences in the cellular and biochemical response within the airway lumen. Twelve subjects with mild extrinsic asthma and eight normal subjects breathed either filtered air or 1 ppm NO2 in a single-blind manner during intermittent exercise for 3 h. Bronchoscopy with bronchoalveolar lavage (BAL) was performed one hour after each exposure, and on a third day without exposure (baseline day). Prostanoids, leukotrienes and histamine were analysed in BAL fluid, and the cellular composition of BAL fluid was assessed. In the asthmatic subjects, NO2 induced a small mean drop in forced expiratory volume in one second (FEV1). Differential cell counts in BAL fluid did not reveal significant effects of NO2. Levels of 6-keto-prostaglandin1 alpha (6-keto-PGF1 alpha) were decreased, and levels of thromboxane B2 (TxB2) and prostaglandin D2 (PGD2) in BAL fluid were increased after NO2 compared to filtered air exposure; whereas, prostaglandin E2 (PGE2), prostaglandin F2 alpha (PGF2 alpha), histamine and leukotriene levels did not change significantly. The normal subjects showed no change in lung function parameters and a small increase in TxB2 after breathing NO2. We conclude that in subjects with mild asthma NO2 is capable of inducing an activation of cells, which is compatible with enhancement of airway inflammation, even if lung function parameters and cellular composition of BAL fluid are not markedly affected.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Visual short-term memory of stimulus velocity in patients with unilateral posterior brain damage.

Neurophysiological studies indicate the existence of an area in the extrastriate monkey cortex specialized for the processing of stimulus motion. The present investigation was conducted to determine whether a homologous area exits in the human cortex that underlies the processing and short-term storage of velocity information. Contrast detection and velocity discrimination thresholds were measured in a group of 23 patients with unilateral focal damage to either the lateral occipital, temporal, or posterior parietal cortex. Their results were compared to those of 23 age-matched control subjects. Detection and discrimination thresholds were determined for spatially truncated sinewave gratings presented 4 degrees eccentric of fixation randomly in either the left and right visual fields. Contrast detection thresholds were measured in a spatial two-alternative forced-choice paradigm for three different drift rates (1, 2, and 4 Hz) for leftward and rightward drift directions. Simultaneous velocity discrimination thresholds were determined for reference and test gratings presented 4 degrees left and right of fixation. Sequential velocity discrimination thresholds were measured using a delay, with a interstimulus interval (ISIs) of 1, 3, and 10 sec. In a subset of five patients with superior temporal lobe damage, spatial frequency discrimination thresholds for stationary gratings were also determined. The results indicate the following: (1) contrast detection thresholds for drifting gratings did not significantly differ between the patient and control groups; (2) velocity discrimination thresholds were significantly elevated in the patients; (3) velocity discrimination thresholds significantly increased with increasing ISI in the patients; (4) velocity discrimination thresholds were elevated most when the patients had a lesion in the superior temporal cortex; (5) in the subgroup of five patients with superior temporal lobe damage, spatial frequency discrimination thresholds were not significantly elevated. The results suggest that there is a visual area in the human posterior temporal cortex that is involved in the processing and short-term storage of the velocity of moving visual stimuli.

Adolescent

Endotoxin "priming" potentiates lung vascular abnormalities in response to Escherichia coli hemolysin: an example of synergism between endo- and exotoxin.

The pore-forming hemolysin of Escherichia coli (HlyA), an important virulence factor in extraintestinal E. coli infections, causes thromboxane generation and related vasoconstriction in perfused rabbit lungs (Seeger, W., H. Walter, N. Suttorp, M. Muhly, and S. Bhakdi. 1989. J. Clin. Invest. 84:220). We investigated the influence of pulmonary vascular "priming" with endotoxin on the responsiveness of the lung to a low-dose HlyA challenge. Rabbit lungs were perfused with Krebs Henseleit buffer containing 0.1-100 ng/ml Salmonella abortus equii lipopolysaccharide (LPS) for 60-180 min. This treatment caused protracted release of tumor necrosis factor into the recirculating medium, but did not induce significant alterations of pulmonary hemodynamics and fluid balance. At a dose of 1 ng/ml, HlyA elicited only moderate thromboxane release (< 200 pg/ml) and pulmonary artery pressure increase (< or = 6 mmHg) in control lungs. Acceleration and potentiation of both the metabolic and vasoconstrictor response occurred in lungs primed with LPS. This priming effect displayed dose (threshold integral of 0.1-1 ng/ml LPS) and time dependencies (threshold integral of 60-90 min LPS incubation). Maximum thromboxane release and pulmonary artery pressure increase surpassed the responses to HlyA in nonprimed lungs by more than 15-fold. Cyclooxygenase inhibition and thromboxane-receptor antagonism blocked these effects. These data demonstrate that LPS priming synergizes with HlyA challenge to provoke vascular abnormalities that are possibly relevant to the pathogenesis of organ failure in severe local and systemic infections.

Animals

Multiparameter flow cytometric analysis of inflammatory cells contained in bronchoalveolar lavage fluid.

Quantitative analysis of surface molecule expression on viable alveolar macrophages (AM) by use of flow cytometry is hampered by non-specific antibody binding to various AM FcIgG receptors as well as extensive and heterogeneous autofluorescence of this cell type. The following approaches were undertaken to circumvent these obstacles. FcIgG receptors were blocked by excess human immunoglobulin. The use of a long wave-emitting dye (phycoerythrin/cyanine-5 tandem conjugate) permitted avoidance of the peak (green) AM autofluorescence range. Moreover, a cell-by-cell compensation for the remaining red autofluorescence background was employed. This was based on two facts: (i) strict correlation between green (F488/530) and red autofluorescence (F488/660) for all AM populations investigated; and (ii) neglectable overlap of the antibody-associated red fluorescence into the 530 nm autofluorescence detection wavelength. A fraction of the green autofluorescence (F488/530; channel 1) was then subtracted from the red fluorescence (F488/660; channel 2) on a cell-by-cell basis using standard two colour fluorescence compensation circuits. The validity of this FACS technique was confirmed by comparison with immunocytochemical staining and a reverse rosetting method. On AM lavaged from carcinoma-bearing but otherwise disease-free human lungs, the pattern of surface antigen expression was assessed with a panel of monoclonal antibodies. When applying to complex mixtures of bronchoalveolar lavage cells, the autofluorescence was employed to separate AM from granulocytes and lymphocytes. In conclusion, the presently described FACS technique allows quantitative immunostaining of surface molecules on AM, even when present in low copy numbers on highly autofluorescent cells originating from smokers.

Bronchoalveolar Lavage Fluid