[Dyspnea and damaging thirst for knowledge. 67-year-old chauffeur].
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Biomedical subjects
Publications and source records attributed to R Melzer.
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PURPOSE: Numerous clinical observations demonstrate the efficacy of low radiation doses in the treatment of painful osteoarthritis. Experimental investigations remain scarce. We investigated the effects of locally daily 5 times 1.0 Gy 60-Co irradiation on an artificially induced aseptic gonarthritis in rabbits. MATERIAL AND METHODS: Three separate experiments (EV) were performed (10 rabbits per experiment, 5 treated/5 controls; duration: EV1: 18 days; EV2: 6 days; EV3: 29 days). An aseptic arthritis in the right knee joint of rabbits was induced by intraarticular injection of 0.5 ml papain solution (3%, 30,000 USP/mg) on day 0. The arthritic knee joint of the anesthesized animals was irradiated daily from day 1 to 5 with 5 times 1.0 Gy. The controls were sham-irradiated under the same conditions. The time course of arthritis in treated animals and sham-treated controls was evaluated by clinical, laboratory-chemical and histological criteria. The clinical investigation was performed daily, the puncture of the knee-joints was carried out several times in EV1, and at the end of experiments in EV2 and EV3. At the end of the observation period, animals were killed and the knee joints excised for histological analysis. RESULTS: The intraarticular injection of papain caused a peracute inflammatory response in all animals. After 1 week the chronic stage was reached, and the experimental arthritis resolved slowly within several weeks. Local irradiation accelerated the decrease of inflammatory joint swelling, being significant by day 4. On day 6 the volume of synovial fluid in irradiated knee-joints was significantly smaller. The morphometric data indicated a reduction in thickness of synovial membrane, a decrease in number of synovial cell layers, and a decrease in distance between capillaries and the synovial membrane surface following irradiation of arthritic joints. Due to considerable individual variability, the morphometric data partially did not reach statistically significance. CONCLUSION: The experiments provide evidence for an antiphlogistic effect of irradiation with 5 times 1.0 Gy in vivo. They support the clinical observations of the efficacy of anti-inflammatory radiotherapy.
This paper describes the results of a study in which pigs were used in the bone marrow micronucleus assay. In a first experiment the spontaneous frequency of micronucleated polychromatic erythrocytes (MPE) among polychromatic erythrocytes (PE) was investigated in 78 animals. It was found that it is low with individual values of 0-4 MPE/1000 PE and a group average of 1.76 +/- 1.06% (mean +/- SD). In a second set of investigations animals were exposed to 0.25, 0.5, 1.0, 1.5, 2.25 and 2.75 Gy of 9-MeV X-irradiation performed as a single whole-body exposure. Time- and dose-dependent changes in micronucleus incidence were observed. Maximal group averages appeared nearly uniform 36 h post irradiation (p.i.). Considering the 36-h values in the dose range of 0-2.25 Gy there is a marked dose-effect relationship (r = 0.971). The data yield best to a regression curve of a third-grade polynomial indicating a complex interaction between dose and micronucleus formation. In conclusion, the results demonstrate that it appears feasible to use swine as target organisms in the micronucleus test to estimate the cytogenetic damage caused by ionizing radiations or, potentially, chemical compounds.
Procanidin fractions (PC) were isolated from Hypericum perforatum L. (Guttiferae). Characterization of the main components of each fraction was performed by UV- and mass spectroscopy. Their biological activity was tested in porcine isolated coronary arteries. All PC fractions antagonized histamine- or prostaglandin F2 alpha-induced arterial contractions. In contrast, vasorelaxation was insignificant in KCl-precontracted coronary arteries except with the higher oligomeric PC fraction 3. Vasoactive properties of the PC seem to be dependent on their relative molecular mass. An inhibition of cellular phosphodiesterase might be involved in the underlying mechanism of action.
Systematic investigations into the impact of haemorheological parameters through ionizing rays are not available in literature. The main factors influencing the flow capacity of the blood were determined in vitro by using a set of special methods. Even by using high dosages of irradiation (600 R) only those changes in the flow capacity of the blood could be identified which lay in or near the dispersion area of the methods. These investigations carried out in vitro only take into account the immediate effect of the blood and not rheological changes caused by the intact organism after irradiation.
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