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Biomedical subjects

C-E Dempfle

Publications and source records attributed to C-E Dempfle.

6 recordsLinked to original sources

[Perioperative coagulation diagnostics].

The main diagnostic tool for the preoperative identification of patients with an increased risk of bleeding or thrombosis is the patient history. Laboratory diagnostics should only be performed if a bleeding diathesis is suspected from patient history or clinical symptoms of bleeding, or if an adequate patient history cannot be performed. Measurement of prothrombin time, aPTT, or bleeding time as a general preoperative screening procedure is neither cost-effective nor efficient for the identification of patients with increased bleeding risk. Normal values of prothrombin time and aPTT do not exclude the most prevalent bleeding disorder, von Willebrand's disease. A normal platelet count does not exclude a severe platelet function defect. Selection of specific laboratory assays is performed on the basis of the individual patient history and clinical picture; laboratory 'profiles' can be defined for some specific clinical conditions. In some cases, patients should be referred to a specialized coagulation clinic for further diagnostics and treatment planning. Preoperative laboratory diagnostics for thrombophilia are not necessary in most cases. The decision for intensified antithrombotic measures is made according to patient history and the postoperative clinical course.

Blood Coagulation Disorders↗

[Sepsis-associated coagulation disorders].

Coagulation activation with intravascular fibrin formation is a general finding in patients with sepsis. Low coagulation factors may be caused by disseminated intravascular coagulation, as well as by loss of plasma and impaired hepatic synthesis in the course of sepsis. The leading clinical symptom in consumption coagulopathy is bleeding. Therefore, treatment mainly consists of substitution of coagulation factors and platelets. Meningococcal and pneumococcal, as well as some other infections may lead to sepsis-induced purpura fulminans, a condition associated with microvascular thrombosis, necrosis, and haemorrhage. A typical laboratory sign is a very low plasma protein C level. Treatment with protein C concentrate or recombinant activated protein C (Drotrecogin alfa, activated) has been shown to be beneficial in sepsis-induced purpura fulminans. Unfractionated heparin or low molecular weight heparin has been recommended for prophylaxis of venous thrombosis, but there are no clinical studies specifically on patients with sepsis. Antithrombin concentrate is used in patients with antithrombin deficiency treated with heparin for acute venous thrombosis or embolism, extracorporeal circulation procedures or other invasive procedures. There is no indication for general use of antithrombin concentrate in patients with sepsis even in patients with low plasma antithrombin levels. Drotrecogin alfa, activated, is used for treatment of patients with severe sepsis. Its use is not limited to patients with sepsis-induced disseminated intravascular coagulation, although these patients appear to benefit especially from this therapy.

Blood Coagulation Disorders↗

Expression and activity of matrix metalloproteinase-2 in calcific aortic stenosis.

Calcific aortic stenosis is the main heart valve disease in the elderly, leading to massive focal calcification and thickening of the valve cusps. Matrix metalloproteinases (MMPs) are thought to contribute to this process. Therefore, the study assessed the expression of the gelatinases MMP-2 and MMP-9 and the endogenous tissue inhibitor of metalloproteinase (TIMP)-2 as well as the gelatinolytic activity in normal and stenotic valves. Human tricuspid aortic valves with and without calcific aortic stenosis were studied by immunohistochemistry for MMP-2, MMP-9 and TIMP-2. The gelatinolytic activity in native valve sections was assessed by gelatin in situ zymography with or without addition of the MMP activator p-aminophenymercuric acetate (APMA). Staining intensities for MMP-2 and TIMP-2 were elevated in stenotic valves as compared to controls. Minor staining of MMP-9 was present exclusively in stenotic valves. The morphologic distribution of gelatinolytic activity was comparable to the staining pattern of MMP-2, and since MMP-9 immunostaining demonstrated only a low number of positive cells, the observed gelatinolytic activity is likely due to MMP-2. Gelatinolytic activity was low in normal valves but significantly increased by the MMP activator APMA. In contrast, stenotic valves showed a strong basal gelatinolytic activity that could not be significantly enhanced by APMA suggesting that MMP-2 is present as a latent pro-enzyme in normal valves and activated in stenotic valves. Thus, MMP-2 might be involved in the matrix remodeling during calcific aortic stenosis.

Aortic Valve↗

Effects of anti-neutrophil cytoplasm autoantibodies on tissue factor activity by HL-60 cells in vitro.

The effects of cytoplasmic anti-neutrophil cytoplasm autoantibodies (C-ANCA) and perinuclear ANCA (P-ANCA) immunoglobulin G (IgG) on tissue factor (TF) activity using HL-60 cells in vitro were compared with those of medium, lipopolysaccharide (LPS) and control IgG. Cells were also incubated with both ANCA IgG and control IgG in the presence of a submaximal concentration of LPS capable of upregulating TF procoagulant activity (TF-PCA) measured in arbitrary units of TF equivalent (AU-TFEq). The purpose was to search for an additive effect between LPS and ANCA IgG. All IgG preparations increased HL-60 cell TF-PCA in comparison with the medium. When cells were incubated with P-ANCA IgG and LPS (1 micro g/ml), a larger increase was seen (151.23 +/- 31.6 SEM (standard error of the mean) AU-TFEq) than when incubated with control IgG plus LPS (91.01 +/- 18.4 SEM AU-TFEq; P < 0.005), P-ANCA IgG alone (73.68 +/- 12.7 SEM AU-TFEq; P < 0.005) or LPS (1 micro g/ml) (58.11 +/- 7.9 SEM AU-TFEq; P < 0.005). There was concordance between PCA and TF total antigen content by enzyme-linked immunosorbent assay (ELISA). The fact that P-ANCA IgGs upregulate the function of TF in HL-60 cells in combination with LPS adds to information regarding the possible role of ANCAs in the enhancement of TF by different cells, although it does not support the fact that ANCAs alone play a role in mononuclear cell TF upregulation. The additive effects of LPS underline the possible role of pro-inflammatory stimuli in the pathogenesis of ANCA-associated diseases.

Adult↗