[Phenprocoumon-induced necrotizing hepatitis].
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Biomedical subjects
Publications and source records attributed to S Ehrenforth.
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Factor (F) VIII inhibitor development remains one of the most serious complications in the treatment of hemophilia A. Former and recent studies on inhibitor development revealed that patients with severe hemophilia A and positive inhibitor family history are at highest risk of developing an inhibitor. Comparison of recent inhibitor incidence studies on previously untreated patients indicate that the risk of inhibitor development under treatment with recombinant FVIII concentrates is comparable to the inhibitor incidence under FVIII substitution by plasma-derived concentrates. However, longer observation periods are necessary to draw final conclusions. Since inhibitor development may result in inefficacy of FVIII concentrates in the treatment of severe bleedings, the induction of immune tolerance (IT) is still of main concern. Various regimens to induce IT by application of FVIII concentrates have been conducted up to now. Success rate appears to be influenced by low to high responder status, number of exposure days before onset of treatment, and dosage of therapeutic regimen. Especially, discontinuation of IT therapy seems to be associated with failure of therapy. Taking into account available data on IT therapy, we recommend early onset of a high dosage regimen in high responder patients as soon as possible after inhibitor detection, as this is associated with higher success rate and shorter elimination time.
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An enzyme-linked immunosorbent assay (Elisa) method was developed in order to examine prevalence and titer of antibodies directed against the factor VIII coagulant protein (F.VIII:C) in hemophilia A and nonhemophilia A patients. Highly purified F.VIII:C was used as immunosorbent on microtiter plates with a peroxidase-conjugated goat anti human IgG antibody for F.VIII:C antibody detection. Results determined by Elisa were compared with measurements according to the Bethesda method. Initially 24 plasma samples containing an F.VIII:C inhibitory activity ranging from 0 to 7,700 Bethesda units (BU) were analysed. At plasma dilutions of 1:128 the optical density determined by our Elisa measurement and the corresponding BU showed a logarithmic correlation. The coefficient of correlation was r = 0.92 with a standard deviation of 0.002 from the regression curve. Plasma samples were analysed from 53 hemophilia A patients, from 21 nonhemophilia patients with acquired F.VIII:C antibodies and from 460 randomly selected nonhemophilia patients presenting for routine preoperative coagulation examination. F.VIII:C antibody-positive Elisa results and positive BU were found in 7 hemophilia A patients and the 2 patients with a history of acquired F.VIII:C antibodies. Positive Elisa results and negative BU were found in 1 hemophilia A patient and 25 out of 460 nonhemophilia A patients (5.43%) suggesting F.VIII:C antibodies without inhibitory potency on F.VIII:C in these cases.(ABSTRACT TRUNCATED AT 250 WORDS)
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From 1988 to 1991 the long-term efficacy of a combined therapy with a polyvalent immunoglobulin/cytomegalovirus (CMV) hyperimmunoglobulin, oral low dose zidovudine, oral cotrimoxazole or inhaled pentamidine was investigated in three groups of human immunodeficiency virus (HIV)-infected children. Group 1A consisted of three perinatally infected children with a CD4 cell decrease of > 400 cells/microliters per year. Group 1B were 17 perinatally infected children with a CD4 cell decrease of < 400 cells/microliters per year. Group 2 comprised eight haemophilic children infected by clotting factors. Despite combined therapy none of group 1A survived longer than 12 months showing a rapid loss of CD4 cell counts, progressive encephalopathy, wasting syndrome and severe bacterial, fungal and CMV reactivation. Under pure intravenous immunoglobulin (IVIG) therapy severe bacterial infections were seen in 1 of 12 children in group 1B. The majority of these patients showed increases or stabilisation of length and weight percentiles. In this group low dose zidovudine therapy was of benefit in HIV-associated neurological symptoms. Nevertheless combined therapy could not prevent further deterioration of CD4 cell counts. In group 2 severe bacterial infections were not seen under IVIG therapy. In this group a temporary increase (6 months) of CD4 cell counts under IVIG/zidovudine combined therapy occurred. Pneumocystis carinii pneumonia (PCP) prophylaxis with oral cotrimoxazole or inhaled pentamidine successfully prevented PCP in all three groups. Under CMV hyperimmunoglobulin (n = 22), ten out of ten patients did not acquire primary CMV infection, whereas CMV reactivations mainly located in the CNS could not be prevented in 5 of 12 patients.(ABSTRACT TRUNCATED AT 250 WORDS)
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The development of factor VIII:C inhibitors remains one of the most serious complications of repeated transfusion in patients with haemophilia A. The proportion of patients affected has been reported to range from 3.6% to 25%, but these figures have been derived mainly from retrospective data and from total numbers of known haemophiliacs instead of number at true risk. The assessment here is based on a prospective study, started in 1976, on the incidence of inhibitor development in haemophiliacs born after 1970 whose FVIII or FIX activity was 5% or less, and who had received replacement therapy at least once. 46 of 63 children with haemophilia A and 13 of 17 with haemophilia B fulfilled the enrollment criteria. Inhibitors developed only in haemophilia A patients who had previously been treated with FVIII products--inhibitor concentrations were high in 12 and low in 3. Inhibitors developed in 24% (15/63) of all haemophilia A patients, and in 52% (14/27) of those with severe disease. The incidence of inhibitor development for all haemophilia patients was 39.1 per 1000 patient-years of observation. All inhibitors were first detected when patients were aged 0.08-5.2 years. The cumulative risk was 33% at age 6 years. The findings indicate that previous reports have underestimated the risk of acquiring FVIII inhibitors. Prospective, standardised studies, especially in children, are needed for the assessment of the true risk of this complication.
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The prevalence of inherited thrombotic syndrome in the general population appears to be higher than that of inherited bleeding disorders. The most important candidates for screening are patients with unexplained venous thromboembolism at ages of less than 40 years: In 18 children and adolescents suffering from "idiopathic" vein thrombosis laboratory screening has been performed: PT, PTT, TT, platelet count, spontaneous platelet aggregation, von Willebrand factor, fibrinogen, plasminogen, antithrombin III, protein C, C1-inactivator, alpha-1-antitrypsin, alpha-1-antichymotrypsin, alpha-2-antiplasmin and alpha-2-macroglobulin. Compared to an age matched healthy control group in children with idiopathic vein thrombosis we could demonstrate in vitro platelet activation with significant enhanced platelet aggregation and elevated levels of von Willebrand factor in the onset of the disease. Antithrombin III, protein C, alpha-2-antiplasmin and alpha-2-macroglobulin were significantly decreased. These changes turned to be normal in the following 6 to 9 months. PT, PTT, TT, platelet count, plasminogen, alpha-1-antitrypsin, alpha-1-antichymotrypsin and c1-inactivator showed no alterations compared to the control. Platelet activation and alteration of platelet function in vivo and in vitro is established to initiate thrombosis. The von Willebrand's VIII molecule is involved in this step. The decreased inhibitors of the hemostatic system antithrombin III and protein C in the onset period of thrombotic diseases are discussed to be an increased turnover, whereas the decreased levels of alpha-2-antiplasmin and alpha-2-macroglobulin might be a counter-regulation to the thrombotic event, showing an "activated" fibrinolytic system.