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T Bombeli

Publications and source records attributed to T Bombeli.

24 records · Page 2Linked to original sources

Cyclosporine-induced detachment of vascular endothelial cells initiates the intrinsic coagulation system in plasma and whole blood.

Cyclosporine A (CsA) is supposed to alter the metabolism of vascular endothelial cells, leading to a prothrombotic state. We examined by which mechanism human umbilical vein endothelial cells (HUVECs) treated with CsA would promote coagulation in human plasma and in whole blood. Treatment of HUVECs with CsA at concentrations clinically used led to dose-dependent cell detachment, with the subsequent exposure of the highly procoagulant connective tissue. As determined by scanning electron microscopy, cell counting of detached and adherent cells, and antigenic measurement of collagen exposure, HUVECs treated with 0.4 micrograms/ml CsA (or more) for 4 days exhibited significant amounts of subendothelial areas. On CsA-treated HUVEC monolayers, the clotting time of recalcified citrated platelet-rich plasma (PRP), but not platelet-poor plasma (PPP), was dose-dependently shortened. Likewise, the onset of thrombin generation was significantly earlier. Except at a high concentration of 8.0 micrograms/ml CsA, there was no procoagulant effect when PPP was used. To investigate CsA-treated HUVECs in whole blood, cells were cultivated on globular microcarriers and were incubated with nonanticoagulated whole blood. When untreated cells were used, generation of factor Xa, thrombin, and kallikrein was completely suppressed for 30 minutes. HUVEC beads treated with 0.4 and 0.8 micrograms/ml CsA, however, led to a dose-dependent generation of all three coagulation factors, with peak values at 2.5 to 5 minutes. Extrinsic activation was excluded, since CsA treatment did not induce tissue factor activity in HUVECs. Furthermore, the thrombomodulin activity of HUVECs w as not altered by CsA. In conclusion, treatment of HUVECs with CsA for 4 days at concentrations clinically used leads to the exposure of subendothelial areas that induce activation of the intrinsic coagulation in recalcified PRP and nonanticoagulated whole blood.

Blood Coagulation↗

The suppression of the coagulation of nonanticoagulated whole blood in vitro by human umbilical endothelial cells cultivated on microcarriers is not dependent on protein C activation.

Human umbilical vein endothelial cells (HUVEC) were cultivated on globular microcarriers in order to improve the endothelial cell surface to blood-volume ratio over the conventional flat bed cultures. HUVEC-beads were tested for their modulation of blood coagulation using a combination of two steps: HUVEC-beads were added into the syringe used for the venipuncture, in order to achieve immediate contact between cells and blood, and no anticoagulant was used during the incubation time of HUVEC-beads with whole blood. The coagulation initiation produced by venipuncture was almost completely suppressed as judged by thrombin measurements over a period of 60 min. The activated partial thromboplastin time showed a prolongation by a factor > 3. Direct measurements of activated protein C (APC) were negative. Moreover, inhibition of APC-generation with a monoclonal anti-human protein C antibody did not affect the anticoagulant properties of endothelial cells. Therefore the anticoagulant properties exerted by HUVEC-beads are not dependent on APC.

Blood Coagulation↗

[Toxic shock syndrome in infection due to Streptococcus pyogenes].

Acute infections with group A beta-hemolytic streptococcus normally take a favourable course under therapy with penicillin. Only in a few cases has a completely different manifestation been described with multisystem failure similar to toxic shock syndrome induced by Staphylococcus aureus. We report on 4 patients (1990/91) who showed this manifestation in spite of immediate antibiotic therapy. In 3 patients the suspected portal of entry was the skin, in 1 patient it was unknown. Group A streptococci were grown from blood cultures from all 4 patients. Without an underlying immune deficiency all 4 patients (age 22, 24, 38 and 51) went into septic shock with high fever, hepatic and renal impairment, diarrhea, DIC and cerebral confusion. 2 patients died within a few days after developing acute respiratory distress syndrome and cerebral edema. All strains isolated from the patients were penicillin-sensitive, group A streptococci. 3 of them were M-type 1, which are known to be more invasive. The bacteremia by itself is not sufficient to explain all complications and the high mortality rate. It is probable that streptococcal toxins, such as pyrogenic exotoxin A, streptolysin O, or a new unknown one, play a decisive role.

Adult↗

Effects of the oral anticoagulant phenprocoumon on blood coagulation and thrombogenesis induced by rabbit aorta subendothelium exposed to flowing human blood: role of dose and shear rate.

We investigated the effect of oral anticoagulation on thrombogenesis induced by the subendothelium of rabbit aorta. Eighteen healthy volunteers underwent a 2-week treatment with the oral coumarin preparation phenprocoumon to a target international normalized ratio (INR) of 5. By using an ex-vivo perfusion chamber system, the interaction between flowing blood and exposed subendothelium was measured at low (50 sec-1) and high (650 sec-1) wall shear rates. The low shear rate simulated blood flow in venous vessels and the high shear rate simulated blood flow in arterial vessels. Deposition of fibrin, platelets, and platelet thrombi on subendothelium was quantified by morphometric and immunologic techniques. Fibrin deposition prevailed at the low shear rate (183 +/- 57 ng/mm2 vs 46 +/- 16 ng/mm2, low vs high shear rate; mean +/- SEM; p less than 0.01). In contrast, the interaction of platelets with subendothelium was more intense at high shear rates when compared with low shear rates, as indicated by higher platelet adhesion (44% +/- 2% vs 9% +/- 1% coverage of subendothelium with platelets, p less than 0.001) and platelet thrombus volumes (3.6 +/- 0.4 microns 3/microns 2 vs 1.3 +/- 0.3 microns 3/microns 2, p less than 0.001). Fibrin deposition on subendothelium was substantially reduced even at a low intensity of anticoagulation (reduction by 60% at INR 2.1 and by 75% at INR 3.7) and was abolished after high coumarin doses (INR 5.2). In contrast, a significant inhibition of platelet thrombus formation could be achieved only by high doses of phenprocoumon (INR 5.2). Our data indicate that relatively low doses of oral anticoagulants (INR between 2 and 3.5) substantially inhibit the fibrin formation on subendothelium prevailing at venous shear conditions, whereas a high intensity of anticoagulation (INR 4 to 5) is necessary to inhibit the formation of platelet-rich thrombi prevailing at arterial shear conditions.

Administration, Oral↗

Evaluation of an optimal dose of low-molecular-weight heparin for thromboprophylaxis in pregnant women at risk of thrombosis using coagulation activation markers.

There is no consensus on the dose of low-molecular-weight (LMW) heparin for thromboprophylaxis in pregnant women at increased risk of thrombosis. Based upon monitoring with anti-factor Xa activity, the studies showed conflicting results suggesting either fixed dosages throughout the pregnancy or dosages adapted to the gestational age. We tested whether monitoring thromboprophylaxis with D-dimers and thrombin-antithrombin complexes (TAT) would provide additional information on the optimal dose of LMW heparin. Women (165 women and 202 pregnancies) with hereditary or acquired thrombophilia or a history of thrombosis were considered to receive prophylactic LMW heparin therapy. All women received initially 5,000 IU/day of dalteparin s.c. All further dosages were determined solely on the basis of TAT and/or D-dimer values which were determined every 2-3 weeks. As soon as one of these values increased above the normal range, the dose of LMW heparin was adjusted. In 84.6% of all pregnancies, TAT and/or D-dimer values increased above the normal range once or more during the pregnancy. Consequently, the dose of LMW heparin had to be adjusted at least once over the course of the pregnancy. The mean daily dose of LMW heparin increased from 5,000 to 11,200 U between the 6th and 40th week of gestation. Adverse effects included one major bleeding and six local complications, but no thromboembolic event. In conclusion, increasing doses of LMW heparin are needed to keep TAT and D-dimers within the normal range during pregnancy. Hence, to suppress thrombin generation, apparently, the dosage of LMW heparin should be adjusted to the gestational age rather than using fixed doses throughout the pregnancy. However, it remains to be further established whether elevated TAT and D-dimers truly reflect a prothrombotic state during pregnancy.

Adolescent↗

Dose- and shear rate-dependent effects of heparin on thrombogenesis induced by rabbit aorta subendothelium exposed to flowing human blood.

The effect of heparin on thrombogenesis induced by the subendothelium of rabbit aorta was investigated in 24 healthy volunteers after intravenous injection of different doses (0, 1000, 2500, and 5000 IU). By using an ex vivo perfusion chamber system, the interaction between flowing blood and exposed subendothelium was measured at low (50 s-1), intermediate (650 s-1), and high (2600 s-1) wall shear rates. The low shear rate simulated blood flow in venous, the intermediate shear rate in arterial, and the high shear rate in small or stenosed arterial vessels. Deposition of fibrin, platelets, and platelet thrombi on vascular subendothelium (SE) was quantified by morphometrical and immunological techniques. Fibrin deposition prevailed at low shear rates and was only minimal at high shear rates (30 +/- 1% vs. 1 +/- 0.4% coverage of SE with fibrin, means +/- SEM, p less than 0.001). In contrast, the interaction of platelets with SE was more intense at high compared to low shear rates, as indicated by higher platelet adhesion (54 +/- 5% vs. 4 +/- 1% coverage of SE with platelets, p less than 0.001) and platelet thrombus volumes (4.8 +/- 1.3 vs. 0.5 +/- 0.1 microns 3/microns 2, p less than 0.001). Fibrin deposition on SE was inhibited by heparin in a dose-dependent manner and was abolished after high doses. In addition, high doses of heparin reduced the height and volume of platelet thrombi at low and intermediate wall shear rates, but no effect was found at the high shear rate. Our data show that heparin inhibits the formation of both fibrin and platelet thrombi on vascular subendothelium. The lack of effect of heparin on platelet thrombus formation at high shear rates indicates that thrombin modulates the growth rate and/or stability of platelet thrombi at low and intermediate shear rates, whereas additional factors may control platelet thrombus growth and stability at high shear conditions.

Adult↗