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Biomedical subjects

W Seeger

Publications and source records attributed to W Seeger.

At least 217 records · Page 12Linked to original sources

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↗

Lesion of dentatothalamic pathways in severe post-traumatic tremor.

The present study investigates evidence of dentatothalamic pathway lesions in nineteen patients with severe kinetic post-traumatic tremor respectively by magnetic resonance imaging (MRI). Kinetic tremor is thought to be characteristic of lesions of the cerebellar outflow. While this hypothesis is supported by experimental data, neuropathological and neuroradiological findings have been limited. The appendicular tremors were unilateral in 13 patients and bilateral in 6, accounting for 25 instances of tremor. The tremor developed after severe head trauma in 18 patients. These patients had evidence of diffuse axonal injury on MRI. Postural and kinetic tremor was present in all patients, and was accompanied by tremor also present at rest in 14 instances. Multiplanar MRI studies were performed on a high-field MRI system operating at 2.0 T in 13 patients and on intermediate-field strength MRI systems in 6 patients according to a standardized protocol. To detect small deposits of hemosiderin after post-traumatic lesions, the protocol included a heavily T2-weighted spin-echo pulse sequence. Lesions of the dentatothalamic pathways were found in 22 instances. The lesions were classified into different types of according to their distribution. A lesion of the dentate nucleus ipsilateral to the tremor (type 1) was found in one instance (4%), lesions involving the ipsilateral predecussational dentatothalamic pathway (type II and III) were found in 14 instances (56%), and lesions involving the contralateral post-decussational course (type IV) in 7 instances (28%). One patient with a mild head trauma had a lesion of the contralateral thalamus. The lesions appeared as hypointense, hyperintense or mixed. Two of three patients with a parkinsonian-like rest tremor had type IV lesions involving the substantia nigra. The nosological concepts of tremors are discussed. 'Midbrain' tremor may have distinct pathoanatomical lesion sites.

Adult↗

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↗

[The problem of radiation exposure during radiography of the entire spine].

The stimulus for this investigation concerning radiation exposure during radiography of the spine, particularly in children with scoliosis, is the fact that there are no data in the literature. In 16 series of measurements we studied the effect of grids, kilovoltage, focus-film distance and film-screen systems using dosimeters. The use of grids led to a 5-7 times increase in radiation dose compared with exposures without grids. For this reason grids are not recommended for serial examinations in cases of scoliosis. It is easier to evaluate the spine on a single large film than on several small films and radiation dose is also halved. Therefore, the use of large single films is recommended, particularly for children and adolescents.

Adolescent↗

Morphometric analysis of pulmonary intracapillary leukocyte pools in ex vivo-perfused rabbit lungs.

Characterization and quantification of lung intracapillary leukocytes is of interest for a better understanding of immunological and inflammatory features in this organ. We developed a technique of computer-assisted measurement of digitalized electron-microscopic images and electronic data processing for morphometry of intracapillary leukocyte pools in rabbit lungs (L. Ermert, W. Seeger, and H.-R. Duncker, Cell Tissue Res. 271: 469-476, 1993). Measurements were undertaken in buffer-perfused isolated lungs (avoiding any reentry of washed-out cells); perfusion fixation was performed 7.5, 35, and 185 min after onset of artificial circulation (n = 5 each). Data were compared with that of nonperfused lungs fixed by tracheal instillation (baseline). Total lung capillary neutrophil counts were 1.41 x 10(9), 1.35 x 10(9), 1.37 x 10(9), and 0.69 x 10(9) (baseline, 7.5, 35, and 185 min perfusion, respectively). Corresponding data for intracapillary lymphocytes were 1.07 x 10(9), 0.84 x 10(9), 0.81 x 10(9), and 0.57 x 10(9); and for microvascular monocytes, data were 0.21 x 10(9), 0.19 x 10(9), 0.18 x 10(9), and 0.08 x 10(9). Ratios of cell volume and surface variables of the different intracapillary leukocyte types did not change during ex vivo lung perfusion. We conclude that the rabbit pulmonary capillary bed harbors large pools of different leukocytes, which surpass pool sizes of corresponding circulating cells and display very slow washout kinetics under conditions of lung-buffer perfusion. A major impact of these intracapillary leukocyte pools on immunological and inflammatory events in isolated-perfused and transplanted lungs must be assumed.

Animals↗

Phagocytosis of viable Candida albicans by alveolar macrophages: flow cytometric quantification.

The phagocytic capacity of blood leukocytes may be assessed by flow cytometric techniques using fluorochrome-labeled particles including viable microorganisms. Application of this approach to alveolar macrophages (AM) is hampered or even rendered impossible by the strong autofluorescence of this cell type, superimposing the fluorescence intensity of the labeled phagocytic targets. Viable Candida albicans were loaded with the membrane-permeable fluorescent dye carboxy-seminaphtorhodafluor 2/acetoxymethylester (carboxy-SNARF 2-AM), which is cleaved intracellularly to generate the membrane-impermeable derivative carboxy-SNARF 2. Fluorescence was excited with the 488-nm line of an argon-ion laser, and the emission peak at 633 nm was used for quantification of dye-associated fluorescence. Rabbit and human AM were labeled with fluorescein isothiocyanate-coupled monoclonal mouse anti-macrophage antibodies. After coincubation of macrophages and yeast, 4% paraformaldehyde plus 0.5% EDTA in phosphate-buffered saline was used to stop the phagocytic process and detach adherent yeast from the AM surface. Macrophages loaded with yeast displayed a shift from monochromatic (green) to dual (green and red) fluorescence. The percentage of yeast-positive AM and red fluorescence intensity of phagocytosing macrophages were quantified. Yeast opsonization with serum or anti-Candida immunoglobulins was a prerequisite for phagocytosis. Under optimized conditions (0.5-10% serum; 60 min yeast-AM incubation; yeast-AM ratio 8:1 to 12:1), 71-91% of the AM were involved in the phagocytic process. Yeast engulfment was completely inhibited by N-ethylmaleimide and iodoacetic acid.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Clot-embedded natural surfactant: kinetics of fibrinolysis and surface activity.

Polymerization of fibrin in the presence of pulmonary surfactant was recently noted to induce incorporation of phospholipids into the insoluble clot material, thereby effecting severe loss of surface activity (W. Seeger, A. Elssner, A. Günther, H.-J. Krämer, and H. O. Kalinowski. Am. J. Respir. Cell Mol. Biol. 9: 213-220, 1993). In the present study, we investigated the influence of such incorporation of calf lung surfactant extract (CLSE) on the enzymatic cleavage of the fibrin network with the use of plasmin, trypsin, or elastase. Employing a fibrin-plate assay, the proteolytic release of radioactivity originating from 125I-labeled fibrinogen was assessed, and the pattern of split products was characterized by sodium dodecyl sulfate-polyacrylamide gel electrophoresis technique. Surface activity of CLSE was measured in the pulsating bubble surfactometer. When incorporated into the fibrin clot, CLSE inhibited the cleavage of fibrin by all proteases in a dose-dependent manner without affecting the profile of scission products. Inhibition of plasmin-induced clot lysis was also noted on incorporation of CLSE into clotted plasma and on incorporation of dipalmitoylphosphatidylcholine into fibrin polymers. In contrast, corresponding concentrations of CLSE added to the incubation medium after preformation of the fibrin matrix did not substantially influence the kinetics of fibrinolysis. CLSE incorporation into the nascent fibrin clot resulted in complete loss of surface activity, but adsorption and surface tension-lowering properties were largely restored by subsequent plasmic clot lysis. Arising fibrin split products were shown to display similar inhibitory strength on CLSE surface activity compared with fibrinogen split products.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Severe VA/Q mismatch in perfused lungs evoked by sequential challenge with endotoxin and E. coli hemolysin.

Escherichia coli hemolysin (ECH), an important pathogenicity factor in extraintestinal E. coli infections, provokes pulmonary hypertension and microvascular leakage in buffer-perfused rabbit lungs. We investigated gas exchange abnormalities in response to low doses of ECH, lipopolysaccharides (LPS), and sequential and combined application of these bacterial agents by using the multiple inert gas elimination technique. In control lungs and after admixture of 100 ng/ml of LPS, unimodal narrow distribution of perfusion and ventilation to midrange ventilation-perfusion (VA/Q) areas was noted. ECH [0.08 hemolytic units (HU)/ml] caused a moderate increase in pulmonary arterial pressure (< 10 mmHg), progressive lung edema formation (approximately 10 g within 20 min), and a broadening of perfusate and gas flow dispersion. Application of 0.08 HU/ml of ECH in lungs "primed" with 100 ng/ml of LPS in a preceding 125-min perfusion period provoked a large increase in pulmonary arterial pressure (> 50 mmHg within 5 min), rapid edema formation (approximately 10 g within 10 min), and severe VA/Q mismatch with predominance of shunt flow. Vasoconstrictor response and VA/Q mismatch, but not edema formation, were largely inhibited by pretreatment of lungs with acetylsalicylic acid or the thromboxane receptor antagonist BM-13.505. In addition, "rescue" application of BM-13.505 rapidly reversed pressure rise and shunt flow due to sequential LPS and/or ECH stimulation, whereas edema formation was not affected. We conclude that the marked pulmonary hypertension in response to low doses of ECH in LPS-primed lungs is paralleled by severe gas exchange abnormalities with predominance of shunt flow. Both the vasoconstrictor response and the development of shunt are closely related to toxin-induced thromboxane generation.

Animals↗

[Pathophysiology of pulmonary hypertension].

Severe pulmonary hypertension has a poor prognosis and is complicated to treat. It is caused by states of hypoxia, thromboembolism, chronic inflammation, pulmonary venous congestion and/or hypercirculation. In the course of some days up to many years, remodelling of the pulmonary vasculature may occur. Morphologic characteristics of the remodelling process have extensively been described, while the underlying cellular and molecular mechanisms remain largely unknown. Increasing knowledge of the features of pulmonary vasoconstriction and vascular remodelling, will, however, improve the options for future therapy.

Endothelium, Vascular↗

Analysis of 2- and 3-series prostanoids by post-HPLC ELISA.

Measurement of cyclooxygenase products of both arachidonic acid and eicosapentaenoic acid is of broad interest due to the wide and diverse biological activities of these compounds. We developed a technique combining (i) solid-phase extraction, (ii) reversed-phase HPLC separation using a high-capacity column, and (iii) post-HPLC enzyme-linked immunosorbant assay (ELISAs) employing monoclonal antibodies for quantification of all main 2- and 3-series prostanoids within one run. Thermal and chemical stress on these labile agents was reduced by use of ionic pair reagent and high buffer strength for processing at neutral pH, alpha-tocopherole as antioxidant, and freeze-drying evaporation during critical steps of the analytical procedure. With these techniques, mixtures of 2- and 3-series prostanoids (thromboxane (Tx)B2/3, 6-keto-prostaglandin (PG)F1 alpha/2 alpha, PGF2 alpha/3 alpha, PGF2/3) were recovered from Krebs-Henseleit buffer with linear characteristics for each compound in the range between 50 and 500 pg/ml. Percentages of overall recovery ranged between 45 and 90% for the different prostanoids with satisfying reproducibility. Application of the technique to a perfused rabbit lung and human platelets challenged with free eicosapentaenoic acid demonstrated marked generation of TxB3; quantities of this trienoic prostanoid as assessed by HPLC/ELISA were well correlated to those obtained by GC/MS. Thus, convenient quantification of 2- and 3-series prostanoids in media of biological interest is achieved by combined chromatographic and immunological techniques.

Animals↗