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S Zieger

Publications and source records attributed to S Zieger.

3 recordsLinked to original sources

[Preservation of mucosal specimens before processing in the alkaline single cell microgel electrophoresis assay].

BACKGROUND: Human mucosal biopsies are established in ecogenotoxicological studies, but up until now they have demanded immediate processing after harvesting. We report our experience with the preservation of specimens either for 24 h at 4 degrees C or for longer periods at -80 degrees C and compare the results with fresh specimens using the alkaline single cell microgel electrophoresis assay. PATIENTS AND METHODS: Nasal mucosa was harvested from ten patients, transferred to the laboratory and divided into groups for immediate processing,24 h preservation at 4 degrees C and cryopreservation at -80 degrees C. Alkaline single cell microgel electrophoresis assays were performed after separating the specimens into single cells and after exposure to benzo[a]pyrene,benzo[a]pyrene-diolepoxide, N-nitrosodiethylamine, or sodium dichromate. The trypan blue exclusion test was used to assess cytotoxicity. RESULTS: Despite of the fact that cell viability remained stable, after cryopreservation DNA-migration increased significantly for the negative control and benzo[a]pyrene. Although an increase was also seen for sodium dichromate, this was not significant. For benzo[a]pyrene-diolepoxide, N-nitrosodiethylamine and N-methyl-N'-nitro-N-nitrosoguanidine there were no significant changes in DNA-migration. After 24 h in cell medium at 4 degrees C,DNA-migration did not rise compared to the samples which were immediately processed. CONCLUSIONS: Preservation of mucosal specimens at 4 degrees C for 24 h may be legitimate in order to facilitate laboratory practice. However, cryopreservation should not be applied because it leads to higher rates of DNA migration in some tested substances in the alkaline single cell microgel electrophoresis assay.

Adolescent↗

[Complement activation following head and brain trauma].

The prognosis for a patient with a severe head injury is dependent not only upon the location and the degree of this trauma, but also upon additional complications. For example, disseminated intravascular coagulation (DIC) can occur because of the thromboplastic activity of the damaged brain tissue that enters the circulation. The complement (C) system is activated by certain enzymes that cleave the clotting factors. Therefore, after head injuries we searched for C activation because it could result in the adult respiratory distress syndrome (ARDS). Patients and methods. We had two groups of patients: (1) 23 with large destruction and (2) 13 with little destruction of the brain tissue. Eighteen patients in group 1 and 8 in group 2 had isolated brain trauma. Blood samples were taken--upon arrival at the hospital and then 1, 3, 7, 12, 24, and 48 h later; after that we took weekly blood samples up to the completion of their treatment in the intensive care unit. We measured the total hemolytic serum C activity (CH50), activation of alternative pathway hemolysis (APH50), cleavage products C3a and C3d, and total protein. Furthermore, we studied the coagulation parameters of the extrinsic (prothrombin time) and intrinsic (partial thromboplastin time) pathways and fibrinogen content. From the patients records we extracted clinical parameters such as neurological status, intracranial pressure, pathological details on computer tomography hemoglobin and arterial-alveolar oxygen difference. Results. Figure 1 shows the different reactions of the C system in both groups: while patients of group 1 suffered from a decrease in total and alternative hemolytic activity, the other group increases in both parameters.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗