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V Brand

Publications and source records attributed to V Brand.

5 recordsLinked to original sources

Involvement of ceramide in hyperosmotic shock-induced death of erythrocytes.

Erythrocytes lack nuclei and mitochondria, the organelles important for apoptosis of nucleated cells. However, following increase of cytosolic Ca(2+) activity, erythrocytes undergo cell shrinkage, cell membrane blebbing and breakdown of phosphatidylserine asymmetry, all features typical for apoptosis in nucleated cells. The same events are observed following osmotic shock, an effect mediated in part by activation of Ca(2+)-permeable cation channels. However, erythrocyte death following osmotic shock is blunted but not prevented in the absence of extracellular Ca(2+) pointing to additional mechanisms. As shown in this study, osmotic shock (950 mOsm) triggers sphingomyelin breakdown and formation of ceramide. The stimulation of annexin binding following osmotic shock is mimicked by addition of ceramide or purified sphingomyelinase and significantly blunted by genetic (aSM-deficient mice) or pharmacologic (50 microM 3,4-dichloroisocoumarin) knockout of sphingomyelinase. The effect of ceramide is blunted but not abolished in the absence of Ca(2+). Conversely, osmotic shock-induced annexin binding is potentiated in the presence of sublethal concentrations of ceramide. In conclusion, ceramide and Ca(2+) entry through cation channels concert to trigger erythrocyte death during osmotic shock.

Animals↗

Tissue oxygen sensor function of NADPH oxidase isoforms, an unusual cytochrome aa3 and reactive oxygen species.

NADPH oxidase isoforms with different gp91phox subunits as well as an unusual cytochrome aa3 with a heme a/a3 relationship of 9:91 are discussed as putative oxygen sensor proteins influencing gene expression and ion channel conductivity. Reactive oxygen species (ROS) are important second messengers of the oxygen sensing signal cascade determining the stability of transcription factors or the gating of ion channels. The formation of ROS by a perinuclear Fenton reaction is imaged by 1 and 2 photon confocal microscopy revealing mitochondrial and non-mitochondrial generation.

Animals↗

[Interpretation of chest roentgenograms of intensive care patients. A comparison of pathoanatomical and roentgenographic findings (author's transl)].

Chest roentgenograms made within 24 hours of death were compared to the autopsy findings. Out of 150 unselected autopsy records of the years 1973/74 and 1976/77 50 and 91 cases respectively were suitable for evaluation. Since 1973/74 the radiographic technique has been considerably changed by the introduction of powerful condenser discharge equipment and the use of highly intensifying screens. Daily discussions with the physicians in charge of the intensive care unit and routine comparison of the pathological and radiological findings were also introduced. The success of these measures is reflected in the greater diagnostic accuracy in respect of the case material for the 1976/77 period. Comparison of the findings in cases of pulmonary embolism exposed the limitation of diagnostic radiology.

Humans↗

Egal White.

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Australia↗