Search PubMed⌕ Search

Biomedical subjects

Bernd Pötzsch

Publications and source records attributed to Bernd Pötzsch.

9 recordsLinked to original sources

Recurrent intracardiac thrombosis as an unusual manifestation of inherited thrombophilia.

Patients with inherited thrombophilia are at high risk for the development of venous thrombosis that manifests mainly as deep venous thrombosis of the legs and/or pulmonary embolism. We report spontaneous right-sided intracardiac thrombosis in a young man as an unusual manifestation of inherited thrombophilia. The diagnosis of thrombophilia was confirmed by demonstration of the prothrombin-G20210A-mutation in the homozygous state. A second spontaneous intracardiac thrombosis occurred 3 years after discontinuation of oral anticoagulant treatment. This indicates the high risk for recurrence in patients developing intracardiac thrombosis in the absence of an underlying cardiac disease and warrants long-term oral anticoagulant treatment.

Adult↗

Multi-centre investigation on reference ranges for ROTEM thromboelastometry.

Reagent-supported thromboelastometry (TEM) with the ROTEM Whole Blood Haemostasis Analyser is an enhancement of thromboelastography, a method that is increasingly used for the point of care monitoring of acute perioperative bleeding disorders. We investigated the reference ranges of two activated tests (INTEM and EXTEM) and a test analysing specifically the fibrin component of coagulation (FIBTEM) in a multi-centre approach. The reference ranges obtained for the clotting time (CT), clot formation time (CFT), alpha angle (ALP), maximum clot firmness (MCF) and clot lysis parameters were comparable from centre to centre. INTEM: CT equals; 137-246 s, CFT equals; 40-100 s, MCF equals; 52-72 mm. EXTEM: CT equals; 42-74 s, CFT equals; 46-148 s, MCF equals; 49-71 mm. FIBTEM: MCF equals; 9-25 mm. ROTEM whole blood coagulation correlated weakly with a trend towards enhanced coagulation in females compared with males and in advanced age. The repeatability (within-run imprecision) of the results was dependent on the test with the following coefficients of variation: 1-5% (clot firmness, alpha angle), 3-12% (CT, CFT), 6-13% (FIBTEM clot firmness). Citrated blood samples were stable for ROTEM analysis stored within 6 h from drawing. In summary, the data showed that ROTEM thromboelastometry yields consistent values between centres and that providing general orientating reference ranges seems to be possible.

Age Factors↗

Gene expression analysis in platelets from a single donor: evaluation of a PCR-based amplification technique.

BACKGROUND: Genetic analysis of platelet mRNA may facilitate the diagnosis of disorders affecting the megakaryocytic-platelet lineage. Its use, however, is limited by the exceptionally small yield of platelet mRNA and the risk of leukocyte contamination during platelet preparation. METHODS: We depleted platelet suspensions of leukocytes by filtration and used a PCR-based RNA amplification step [switching mechanism at the 5' end of RNA templates (SMART)]. We tested the reliability and precision of the RNA amplification procedure by use of real-time PCR to measure quantities of specific transcripts: von Willebrand factor (vWF), A-subunit of coagulation factor XIII (F13A), and glyceraldehyde-3-phosphate dehydrogenase (GAPDH). Microarray analysis was performed on platelet RNA with and without amplification. RESULTS: Microgram quantities of platelet-specific cDNAs were produced from as little as 50 ng of total platelet RNA or 40 mL of whole blood. At cycle numbers <16, amplification of all transcripts tested was exponential with slightly more efficient amplification of low-abundance transcripts. Expression profiling of 9850 genes gave identical results for 9815 genes (1576 positive/8239 negative). Eight transcripts failed to be amplified by the SMART procedure. Expression of vWF, F13A, and GAPDH transcripts showed only minor day-to-day variations in three healthy individuals. CONCLUSION: The proposed protocol makes extremely small amounts of platelet RNA available for gene expression analysis in single patients.

Blood Platelets↗

Antihirudin antibodies following low-dose subcutaneous treatment with desirudin for thrombosis prophylaxis after hip-replacement surgery: incidence and clinical relevance.

Recombinant hirudin has been found to be immunogenic in patients treated with lepirudin following heparin-induced thrombocytopenia (HIT). We assessed the incidence of immunoglobulin G (IgG) antihirudin antibodies by enzyme-linked immunosorbent assay in 112 patients enrolled in a dose-finding study with desirudin. Patients received desirudin subcutaneously following orthopedic hip surgery at 10 mg twice a day (n = 17), 15 mg twice a day (n = 75), and 20 mg twice a day (n = 20). Of 112 patients, 11 (9.8%) developed antihirudin antibodies independently of the dose. The rate of immunization did not differ from that observed in HIT patients treated with lepirudin (P =.113). Plasma concentrations of desirudin did not differ between antihirudin antibody-positive and -negative patients. Antihirudin antibodies had no impact on incidences of deep vein thrombosis and/or pulmonary embolism, allergic reactions, and hemorrhage. However, the total number of immunized patients observed was low and so infrequent (but severe) effects of antihirudin antibodies cannot be excluded.

Antibodies↗

Comparison of three different preparations of platelet concentrates for growth factor enrichment.

The aim of the present study was to compare three different systems for preparing platelet concentrates: two commercially available bed-side techniques (Curasan system and PCCS) and a procedure used routinely in transfusion medicine. Platelet concentrates were prepared from venous blood of 12 healthy male volunteers using the three different systems. Platelet and leucocyte counts were performed and platelet derived growth factor and transforming growth factor beta were assayed by enzyme linked immunoassay. Handling was also considered. The three systems were able to collect 19.0 +/- 16.6% (laboratory system), 41.9 +/- 9.7% (Curasan system) and 49.6 +/- 21.0% (PCCS) of the absolute number of platelets which were originally in the venous blood volume within the platelet concentrate. Due to the amount of plasma which is left in the platelet concentrate portion, the platelet concentration could be increased between 1.4 +/- 1.3 times (laboratory system), 5.0 +/- 2.3 times (PCCS) and 11.7 +/- 2.4 times (Curasan system) compared to the venous blood. The amount of growth factors correlated with the number of platelets within the platelet concentrates. The two systems for intraoperative use are similar in their effects on the platelets. The absolute gain of platelets seems to be the highest with the PCCS; the highest concentration of platelets per micro L is gained with the Curasan system. The laboratory system may offer an alternative if an intraoperative system is not available.

Adult↗