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B Hölscher

Publications and source records attributed to B Hölscher.

5 recordsLinked to original sources

[Organ preservation by heavy water (D2O). Morphological and biochemical studies on heart and liver (author's transl)].

The tissue H2O of rabbit heart and rat liver was partially exchanged in situ with D2O. In rat liver, the loss of ATP, resulting from normothermic ischemia, was decreased after perfusion with D2O. The maximal protective effect was found when the proportion of D2O in the water of the liver tissue was 0.20. In both organs the protective effect of D2O could be correlated with a marked decrease in severe ischemic damage of cellular organelles, in particular mitochondria. D2O also increased the protective action of Mg-ions in the heart.

Adenosine Triphosphate

The effect of magnesiumaspartate on preservation of the rat liver.

1. Isolated rat livers reperfused with an oxygenated isotonic Mg-aspartate or saline solution and stored 1 h at 36 degrees C, 4 h at 22 degrees C or 12 h at 6 degrees C were reperfused at 37 degrees C 150 min with a Krebs-Henseleit solution containing bovine albumin and erthrocytes gased with a 95% O2-5% CO2 gas mixture. 2. Light- and electronmicroscopic studies revealed minor changes after storage, whereas in the reperfused livers a focal distribution of well preserved and disintegrated hepatocytes was observed. 3. During storage the sum of adenine nucleotides in general decreased markedly paralleled by a significant rise of the lactate/pyruvate and hydroxybutyrate/acetoacetate ratios and pronounced breakdown of glycogen. Oxidative phosphorylation was resumed upon reperfusion resulting in de novo synthesis of ATP and ADP. The lactatelpyruvate and hydroxybutyrate/acetoacetate ratios normalized, whereas a resynthesis of glycogen was missing. 4. No conclusive evidence of a protective Mg-effect as observed in induced cardiac arrest has been obtained, probably due to structural and metabolic differences between the two organs and microcirculatory disorders as has been demonstrated by measurements of oxygen uptake using the multiwire electrode.

Adenine Nucleotides

[Blood regeneration after blood substitution with dextran 60 or hydroxyethyl starch of an identical volume].

Male rats of the Wistar strain survived an isovolaemic blood volume replacement down to a haematocrit value of 20% using commercial dextran 60 or hydroxyethyl starch. No significant changes of the blood volume have been observed. 14 days after treatment, the blood values were found to be practically within the normal range. As early as 3 days after the blood exchange, a significant increase in reticulocytes has been noted which reached its maximum on the 7th day. In both series the blood regeneration was identical.

Animals

[Long term tolerance of highly dosed infusions of hydroxylethylstarch and dextran 60 in normovolemic rabbits].

Normovolemic rabbits were administered 50 ml of 6% hydroxyethyl starch in saline, 6% dextran 60 in saline solutions 5 days a week over a period of 3 weeks. Only 2 rabbits of the hydroxyethyl starch or the dextran treated series and 4 rabbits of the saline series survived 3 weeks. In all 3 series large amounts of fluid in the serous cavities and edema of the lungs due to the overload of fluid have been observed. Severe hydropic changes were found in the liver and kidneys of the hydroxyethyl starch and dextran treated series, but not after prolonged administration of saline alone. According to the findings presented there is no difference between the effects due to the prolonged administration of extremely high doses of hydroxyethyl starch and dextran 60.

Animals

[Comparative investigations of hydroxyethyl starch and dextran 60 in Isovolaemic haemodilution and haemorrhagic shock of rats (author's transl)].

Isovolaemic blood volume replacement down to a haematocrit value of 20% by commercial dextran 60 or hydroxyethyl starch has been survived by male rats of the Wistar strain without significant deviations from the initial blood volume. The haemoglobin and haematocrit values were found to be practically within the normal range 14 days after treatment. In a second series of male rats of the Wistar strain haemorrhagic shock was maintained over a period of 60 min. The 48 hour survival rate amounted to 100% after retransfusion or replacement by hydroxyethyl starch or dextran 60 of the bleeding volume. The kidneys of both series when examined by the light microscopy showed no pathological changes. On the basis of the findings presented hydroxyethyl starch may be considered to be as effective in blood volume replacement as dextran 60.

Animals