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C Bogner

Publications and source records attributed to C Bogner.

4 recordsLinked to original sources

Platelets induce alterations of chemotactic and adhesive properties of endothelial cells mediated through an interleukin-1-dependent mechanism. Implications for atherogenesis.

Platelets and alterations of chemotactic and adhesive properties of endothelium play an important role in the pathophysiology of atherosclerosis. We investigated the effect of platelets on secretion of monocyte chemotactic protein-1 (MCP-1) and on surface expression of intercellular adhesion molecule-1 (ICAM-1) of cultured endothelium. Pretreatment of cultured monolayers of endothelial cells with alpha-thrombin-activated platelets significantly enhanced secretion of MCP-1 and ICAM-1 surface expression (P<0.01) that could be inhibited by interleukin-1 (IL-1) antagonists by approximately 40%. Activation of transcription factor nuclear factor-kappaB (NF-kappaB) which regulates transcription of early inflammatory response genes such as MCP-1, was significantly increased in endothelial cells treated with activated platelets via an IL-1 mediated mechanism as determined by electrophoretic mobility shift assay (EMSA) and kappaB-dependent transcriptional activity. In trans-well experiments, alpha-thrombin-activated platelets enhanced IL-1-dependent surface expression of vitronectin receptor (alpha(v)beta(3)) on the luminal aspect of endothelial monolayers and promoted alpha(v)beta(3)-mediated platelet/endothelium adhesion that could be inhibited by the antiadhesive peptides GRGDSP and c(RGDfV). We conclude that activated platelets induce significant changes in chemotactic (secretion of MCP-1) and adhesive (surface expression of ICAM-1 and alpha(v)beta(3)) properties of cultured endothelium. These findings imply a potential pathophysiological mechanism of platelets in an early stage of atherogenesis.

Blood Platelets↗

Platelet function in septic multiple organ dysfunction syndrome.

OBJECTIVE: Altered platelet function plays a role in the pathophysiology of multiple organ failure in sepsis. The purpose of the present study was to evaluate various aspects of platelet adhesive function in septic patients and its putative relevance for prognosis. DESIGN: Prospective clinical study. SETTING: Intensive Care Unit of the University Hospital. PATIENTS AND METHODS: A total of 41 patients admitted to the medical Intensive Care Unit were studied. On the day of admission, patients were evaluated by intensive care scoring systems (Elebute, APACHE II) to assess the severity of sepsis and multiple organ dysfunction syndrome (MODS), and platelet function tests were performed. All patients were observed for 28 days to assess their clinical outcomes. Eleven patients revealed septicemia without MODS (Elebute > or = 12, APACHE II < 20) and 20 septic patients suffered from MODS (Elebute > or = 12, APACHE II > or = 20). Ten non-septic patients without MODS served as a control group (Elebute < 12, APACHE II < 20). Flow cytometric determination of the activated fibrinogen (fg) receptor GPIIb-IIIa and as well as thrombospondin (TSP) on platelets and platelet-neutrophil adhesion (CD 41 immunofluorescence) ex vivo was performed using monoclonal antibodies. The effect of plasma obtained from patients on normal platelet aggregation in vitro, and adhesion to cultured endothelial cells was evaluated. RESULTS: The surface expression of TSP on platelets was increased in septic patients with MODS compared to controls (p < 0.03). Platelet-neutrophil adhesion was not significantly altered in septicemia (p < 0.09) but decreased significantly in the presence of MODS (p < 0.05) when compared to controls. Logistic regression analysis showed that platelet-neutrophil adhesion was an independent predictor for poor clinical outcome (p < 0.01). Plasma from septic patients sensitized normal platelets to hyperaggregate and to adhere to cultured endothelium (p < 0.01). CONCLUSION: In septic patients platelets become activated and are hyperadhesive to other vascular cells including neutrophils and endothelium. This may induce sequestration of platelets and microcirculatory arrest, thus the development of MODS.

APACHE↗

Changes in platelet membrane glycoproteins and platelet-leukocyte interaction during hemodialysis.

Platelet aggregation and interaction with other vascular cells play a key role in hemostatic events during hemodialysis. We studied seven patients with end-stage renal failure on long-term hemodialysis treatment. Flow-cytometric techniques and platelet-specific monoclonal antibodies were used to measure the platelet surface expression of glycoproteins-fibrinogen receptor on glycoprotein IIb-IIIa (GP IIb-IIIa; CD41) and alpha-granule membrane protein (GMP-140; CD62). In addition, adhesion of platelets or platelet microparticles with leukocytes was evaluated by appearance of the platelet-specific antigen (GP IIb-IIIa) on leukocytes. Blood samples were taken before the start of dialysis and 15, 60, and 240 min thereafter. There was a significant increase in fibrinogen receptor activation on circulating platelets after 15 min of dialysis treatment (P < 0.001) and enhanced degranulation of GMP-140 (P < 0.05). In parallel, the interaction of platelets with neutrophils and monocytes also increased with the duration of dialysis and was maximal after 15 min (P < 0.001). We conclude that the platelet fibrinogen receptor on GP IIb-IIIa in circulating platelets is activated during hemodialysis and is associated with increased adhesion of platelets or platelet microparticles with circulating leukocytes. Thus, the phenomenon described here of platelet-leukocyte interaction could be pathophysiologically important for the development of dialysis-associated leukopenia.

Adult↗

Flow-cytometric analysis of mepacrine-labelled platelets in patients with end-stage renal failure.

Platelet dysfunction and increased bleeding tendency has been the most consistently described haemostatic abnormality in patients with renal failure. Besides abnormalities in platelet membrane glycoproteins, a reduced amount of platelet-dense granule content has been demonstrated in patients with end-stage renal failure (ESRD) indicating an acquired storage pool deficiency (SPD) present in uraemia. To study dense granules, platelets were labelled with mepacrine, a fluorescent probe which is specifically incorporated into dense bodies. MepaPlatelets of 13 patients with ESRD and of 11 healthy controls were studied. The results showed that mepacrine-labelled platelets of patients with ESRD reveal a significantly (p < 0.05) reduced fluorescence compared to the control group. This implies a reduced number or content of dense granules present in ESRD platelets. Thus, the current data indicate that ESRD is associated with an acquired platelet SPD which may be a useful and rapid method for screening patients with suspected acquired or inherited SPD.

Adult↗