Electron thermalization in gold.
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Biomedical subjects
Publications and source records attributed to R Storz.
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Steroid sulfatase (STS) and arylsulfatase C ( ARSC ) were studied in fibroblast clones from a 45,X/47,XXX mosaic and from a 69,XXY triploidy with one or two active X chromosomes. The comparison of the 47,XXX with 45,X clones showed an incomplete gene dosage effect (1.8 for STS and 2.0 for ARSC ). This was not the case for the triploid clones with different X-inactivation patterns. These results confirm previous reports on the non-inactivation of the STS gene, and establish X linkage and non-inactivation for the ARSC gene as well.
The first component of complement (C1) is a macromolecule consisting of three distinct subcomponents, C1q, C1r, and C1s. In regard to its production site and its role in phagocytic processes it was of interest to find out whether these different subcomponents could be detected in human biopsy material only as a complex in individual cells or whether C1 subcomponents could be found on different cells. To study this question, monospecific fluorescein-labelled anti-human-C1q IgG and monospecific rhodamine-labelled anti-human C1q IgG were used. Biopsy material from human rectum was stained with fluoresceinated antisera, either by use of one antiserum or by double staining. Using this technique, these observations were made: C1q as well as C1s were detectable in individual cells in the subepithelial area of the gut. Furthermore, C1q and C1s could be found together in the same cell or separately in different cells. These findings were supported by experiments with cultured peritoneal macrophages either from human or from guinea pig. The examination of the cultured cells with the two antisera revealed that individual cells were stained either by anti-C1q or by anti-C1s antibodies. The specificity of the detection of the individual subcomponents was also proven by the peroxidase technique and by using fluoresceinated anti-human C1q F(ab')2. The membrane immunofluorescent staining revealed the presence of C1q on the membrane of the macrophage.
Following head injuries with various degrees of cerebral trauma increased STH-concentrations of plasma can be measured. Blood glucose values are elevated reflecting a diabetic metabolism lead to a suppressive effect of increased STH-blood levels. In general it can be stated, that a stress situation is followed by an increase of STH-secretion despite of elevated blood glucose concentrations. The reasons may be: 1. increased liberation of catecholamines, 2. an intracellular glucose deficit due to disturbed glucose utilisation, 3. alteration of regional blood flow after trauma.