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F Schwoebel

Publications and source records attributed to F Schwoebel.

3 recordsLinked to original sources

Early peritoneal macrophage function after laparoscopic surgery compared with laparotomy in a mouse mode.

BACKGROUND: The authors previously demonstrated postoperative preservation of the immune function measured by delayed-type skin reaction and tumor growth after laparoscopic surgery, as compared with laparotomy. For further elucidation of the origin of the demonstrated immune preservation, peritoneal macrophage (PMo) function was investigated 1 h after different surgical procedures. METHODS: Female NMRI mice were divided into five groups: anesthesia only, abdominal skin incision, laparotomy, peritoneal carbon dioxide (CO2) insufflation, and peritoneal air insufflation. Escherichia Coli phagocytosis, tumor necrosis factor-alpha (TNF-alpha), transforming growth factor-beta1 (TGF-beta1), and interleukin-10 (IL-10) release of isolated PMo were investigated. RESULTS: All invasive interventions reduced the PMo phagocytosis by factors of approximately 2 to 4.7, as compared with the sham control group. Spontaneous ex vivo TNF-alpha release was significantly increased whenever the abdominal cavity was exposed to ambient air. The macrophage's ability to release TNF-alpha after E. coli exposure was diminished in the abdominal air exposure groups, as compared with the CO2 insufflation group. CONCLUSION: Reduced phagocytosis 1 h after surgical interventions suggests a contribution of PMo to the altered immune function. When exposed to CO2, PMo show a decreased basal TNF-alpha release. However, PMo also show an increased TNF-alpha release after a second immune stimulation (E. coli), suggesting a greater competency of interaction in an immune defense reaction after CO2 exposure.

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Quantitative assessment of mouse skin transplant rejection using digital photography.

Mouse skin transplantation is an established in vivo model used to investigate the T-cell-mediated immune response of acute allograft rejection. The critical endpoint of this model is complete rejection of the allograft. However, visual judgement of this end stage of rejection is an arbitrary process and difficult to standardize. To overcome this problem, we established a monitoring method based on digital photography. Serial pictures from skin allografts of individual animals (C57BL/6 on BALB/c) were taken with a digital camera mounted on a microsurgical microscope. Thereby, the description and the correct assessment of early stages of rejection were possible due to the magnification of grafts by the microscope. Rejection scores were introduced to describe different stages from retained to completely rejected grafts. With cyclosporine A as a standard immunosuppressive treatment, we showed that early stages of skin rejection were unambiguously identified. This procedure allows the earlier termination of the experiment and reduction of animal distress, and it can be re-evaluated anywhere and any time after completion.This study demonstrates the suitability of monitoring experimental skin allograft rejection by digital photography, entailing several refinements in animal experimentation, both for the researcher and for the animal.

Animals↗

In vivo and in vitro evidence for extracellular caspase activity released from apoptotic cells.

While caspases play an established role as intracellular executors of apoptosis, little is known about extracellular activities of this ubiquitously expressed family of proteases. We demonstrate here that recombinant caspase-3 retained enzymatic activity in various extracellular fluids. Experiments with cell lines, primary cells, and mice with fulminant CD95-triggered hepatitis showed that significant amounts of DEVD-aminofluoromethylcoumarine-cleaving activity, indicative of active effector caspases, were released into the medium/plasma during apoptosis. Furthermore, caspase activities were detected in liquor samples from human head trauma patients. These findings warrant closer investigation of DEVDase activity as a diagnostic marker, and of potential extracellular substrates for caspases.

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