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H Redl

Publications and source records attributed to H Redl.

At least 145 records · Page 8Linked to original sources

Cardiovascular reaction pattern during endotoxin or peptidoglycan application in awake sheep.

Peptidoglycans (PG) and lipopolysaccharides (LPS) are cell wall constituents of bacteria. The relative contents vary significantly between gram-negative and gram-positive strains. Since both strains take part in clinical septicemia, we compared hemodynamic and permeability properties in a sheep model with chronic instrumentation and lung lymph drainage. The cardiovascular reaction patterns of PG and LPS were comparable at very different dose levels, with LPS being 10,000-fold more potent. Continuous infusion produced an increase in lung permeability (only with LPS) and cardiac output, as well as fever, to mimic the hyperdynamic situation in early septicemia.

Animals↗

Development of a simple radioimmunoassay for human C3a.

A radioimmunoassay was devised for the human complement cleavage product, C3a, using charcoal separation and selective precipitation of interfering substances. When compared with the commercially available immunoassay now marketed, the assay reported here was somewhat simpler to perform; furthermore, it overcame delivery and availability problems in Europe. The assay showed a mean recovery of 87% of known amounts of C3a or C3adesarginine and had a sensitivity of 32 ng C3a per milliliter of plasma; coefficients of variance were comparable to other radioimmunoassays in common use. Using this assay in a first clinical application, we were able to document a small but statistically significant rise in [C3a] during cardiopulmonary bypass.

Anaphylatoxins↗

Cardiopulmonary responses to continuous administration of endotoxin.

The cardiopulmonary response to continuous administration of lipopolysaccharide (LPS) was studied in chronically instrumented sheep. LPS was administered in doses of 0 (sham), 6, 9, 12, and 24 ng.kg-1.h-1 for 24 h. No significant changes in the measured variables occurred in the sham group and in the 6 ng.kg-1.h-1-LPS group. With 9, 12, and 24 ng.kg-1.h-1-LPS, cardiac index rose and peripheral resistance fell to the same extent in all three groups. Lung lymph flow (QL) increased with increasing concentration of LPS. These elevations in QL occurred in the presence of only minor increases in the pulmonary artery pressure, which rose to the same extent in the 9, 12, and 24 ng.kg-1.h-1 groups. Consequently, the changes in QL were attributable to changes in fluid conductance of the pulmonary microvasculature rather than variations in hydrostatic pressure. The increase in QL correlated with a decrease in prekallikrein levels (r = 0.97), indicating that the changes in fluid conductance might have been kinin mediated.

Animals↗

Fibrin sealant in orthopedic surgery.

The use of clotting substances from blood for hemostasis dates back to 1909. In 1972, modern fibrin sealing (FS) was developed in Vienna. For application, the two components, i.e., a sealer protein solution (mainly fibrinogen) and a thrombin solution, are mixed to produce the fibrin clot. The sealant may be applied with a needle, as a spray, or by premixing (e.g., with antibiotics, bone chips) for subsequent sealant application in cavities. While the positive effect of FS in normal wound healing has been conclusively demonstrated, its influence on bone healing remains controversial. The positive experimental results mostly refer to the early phase of bone healing in rabbits (cortical drill hole, autologous and heterologous (Kiel) cancellous transplants, osteotomies, osteochondral fractures) and dogs (cortical bone and spongiosa defects). Some authors observed no effects (in dogs, osteotomy) or delayed healing in artificial bone growth chambers with the use of heterologous sealant. FS was also applied in combination with implantation material (tricalcium phosphate and bone gelatin) to facilitate application. Clinical results are especially convincing as to osteochondral fractures, repair of the Achilles tendon, and in hemophiliacs. Fibrin sealant facilitates hemostasis, permits tissue fixation, enhances plasticity of granular implant material, and stimulates fibroblast growth. Although its direct osteogenic effect remains questionable, fibrin sealant is known to be an excellent tool in orthopedic and trauma surgery.

Animals↗