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D Hoppensteadt

Publications and source records attributed to D Hoppensteadt.

At least 19 recordsLinked to original sources

Tissue factor pathway inhibitor and thrombin activatable fibrinolytic inhibitor plasma levels following burn and septic injuries in rats.

Burn and septic injuries induce profound changes in coagulation status. This study examined the changes in plasma tissue factor pathway inhibitor (TFPI) and thrombin activatable fibrinolytic inhibitor (TAFI) levels in a rat model of burn and septic injuries. Rats underwent 30% TBSA cutaneous scald burn injury and septic insult was induced by caecal ligation and puncture (CLP). CLP was superimposed on burn injury to mimic the clinical model of sepsis complicating burn injury. Rats were pretreated with Cprofloxacin orally to colonize their gut with Enterococcus faecalis. TFPI and TAFI plasma levels were measured using functional activity assay kit with a chromogenic method at 24 and 72 hours following the injuries. TFPI levels decreased significantly at 24 hours in burn, CLP, and burn+CLP groups, followed by incomplete rebound recovery at 72 hours in all three groups. On the other hand, TAFI levels increased significantly at 24- and 72-hour time points in all three groups. These results suggest that burn, septic, and their combined injuries perturb coagulation cascade and thrombotic process toward the procoagulant pathway by impairing fibrinolysis.

Animals↗

Biomarker profiling of plasma from acute coronary syndrome patients. Application of ProteinChip Array analysis.

AIM: Acute coronary syndrome (ACS) is one of the leading causes of death in the world and remains a complex pathophysiologic process involving inflammatory, hemostatic and vascular processes. The purpose of this study was to identify unique proteomic biomarkers present in patients with ACS using a newly developed proteomic profiling technique, surface enhanced laser desorption/ionization (SELDI). METHODS: Citrated plasma samples obtained from clinically confirmed cases of ACS (n=100) and age matched controls (n=25) were profiled using SELDI-time of flight (TOF)-mass spectrometry (Ciphergen Biosystems, Freemont, CA, USA). A strong anion exchange (SAX) ProteinChip Array was used to profile these samples. In addition to spectra profiles, protein density plots were be obtained from the generated molecular profile. RESULTS: The SELDI profile in the molecular weight (MW) range of 0-150 kDa revealed a prominent 66.3 kDa albumin peak along with several distinct components at 28 kDa, 13.7 kDa and 6.5 kDa. Additional minor molecular components were also noted in the lower MW range (<6 kDa). There was a cluster of peaks between 10 and 12 kDa that were unique to the patients with ACS; about 1/3 of the ACS patients exhibited these peaks as evident in the ProteinChip Array spectrum. None of the age-matched controls exhibited the peaks in this MW range, nor did the normal human plasma pool that was used as an additional control. The relative intensity of these novel molecular components in the range of 10-12 kDa represent unique proteins/peptides which are generated in specific pathologic states associated with ACS. CONCLUSIONS: These observations suggest that patients with ACS have a unique cluster of molecular components that are present in their SELDI profile. It might be possible to use these patterns to identify high-risk patients who may be more susceptible to the development of unstable plaque, which may eventually lead to myocardial infarction. Identification and characterization of these molecular components will also help in the understanding of the pathogenesis of ACS. These unique peaks may represent pathologic proteins, novel inflammatory mediators or protease cleavage products. Further studies need to be done to better characterize and identify these molecular components and their pathologic role in ACS.

Acute Disease↗

Differential regulation of thrombin activatable fibrinolytic inhibitor by low molecular weight heparins. Pharmacologic implications.

AIM: Thrombin activatable fibrinolytic inhibitor (TAFI) is activated via cleavage by thrombin thrombomodulin in complex, and can be regulated by anticoagulant drugs such as the heparins. Low molecular weight heparins (LMWHs) have different antithrombin/anti-Xa profiles and therefore vary in the degree to which they inhibit TAFI. The purpose of this study was to determine the differential regulation of TAFI by LMWHs. METHODS: Dalteparin, enoxaparin, tinzaparin, parnaparin and heparin were supplemented to normal human pooled plasma at different concentrations (0-2.5 U). A chromogenic based assay (Pentapharm Inc., Basil, Switzerland) was used to measure activatable TAFI in each set of samples. RESULTS: Heparin clearly had the highest degree of TAFI inhibition with an IC50 of 0.10 U, which correlates with its coagulation profile. Dalteparin, Tinzaparin, Parnaparin had similar IC50s, 0.6-0.8 U/ml respectively, while enoxaparin had a higher IC50 (>1.0 U/ml). These results strongly correlate with the anti-IIa inhibition of each agent but not with the anti-Xa. However, it is interesting to note that these drugs are administered according to anti-Xa units not anti-IIa. CONCLUSIONS: These results suggest that each LMWH may inhibit TAFI to a different extent that is not dependent on the anti-Xa potency. Indiscriminate inhibition of TAFI may cause bleeding, while suboptimal inhibition may result in thrombosis. Because of the compositional difference, heparin and LMWHs may produce differential inhibition of TAFI and therefore result in product dependent modulation of hemostatic process which may or may not be related to their antithrombin effects.

Carboxypeptidase B2↗

The hemostatic effects of warfarin titration in post CABG patients in comparison to placebo treatment.

BACKGROUND: Since coronary artery bypass graft patients remain at risk of coronary artery and bypass graft occlusion after successful surgery, adjunct treatment regimens are under investigation. In a study of the patients of the multicenter Post Coronary Artery Bypass Graft (Post CABG) Trial, 1 mg warfarin was found to have no important effect on coagulation parameters. STUDY DESIGN: The effects of 1, 2 and 3 mg warfarin were evaluated at six-week intervals in 20 Post CABG Trial patients receiving titrated dose increases in comparison to 20 patients of similar age, gender and time from CABG treated with placebo. RESULTS: International normalized ratio (INR) values increased with warfarin dose increments for 1, 2, and 3 mg, respectively (0.95+/-0.16, 1.08+/-0.19, and 1.34+/-0.39) and in comparison to placebo treated patients (dosextreatment p<0.001). Factor VII coagulant activity decreased with warfarin titration (1 mg, 119.0+/-18.3 %; 2 mg, 100.6+/-32.8 %; 3 mg, 95.0+/-27.8 %) and in comparison to placebo (dosextreatment p=0.008). Levels of prothrombin fragment F1.2, tissue plasminogen activator, fibrinogen and von Willebrand factor were unchanged with warfarin dose increments and in comparison to placebo. CONCLUSIONS: At doses up to 3 mg, warfarin acts on the INR through a reduction of factor VII with no effect on the fibrinolytic system, fibrinogen or von Willebrand factor. At these doses F1.2 did not document reduced coagulation activity. The observations of this study were consistent with the decision in the Post CABG Trial to increase the warfarin dose above 1 mg to achieve a distinct effect of warfarin that was less than full anticoagulation.

Adult↗

Effects of a heparin-binding protein on blood coagulation and platelet function.

The objective of this study was to characterize the heparin-binding properties of a protein secreted by mouse myeloma cells. The characterization was performed using clinical assays, such as heparin activity assays and heparin-induced thrombocytopenia (HIT) platelet activation assays. The tests were performed in the presence of heparin, low-molecular-weight heparins (LMWH), or heparinoids and either heparin-binding protein (HBP) or saline to determine whether the HBP affects the activity of heparins. The characterization of the HBP using heparin activity assays showed that the HBP shortened the prolonged clotting times of the activated partial thromboplastin time (aPTT) and thrombin clotting time induced by high concentrations of unfractionated heparin. The chromogenic assays for antithrombin (AT), thrombin inhibition, and factor Xa inhibition demonstrated that this effect is related to heparin concentrations below 0.5 IU/ml. The Heptest assay did not detect these differences. The HBP did not modify the anticoagulant effect of any LMWH or low- or high-sulfated glycosaminoglycans in the aPTT assay. Activation of donor platelets in the presence of unfractionated heparin, platelet factor 4 (PF4), and HIT-serum was not counteracted by the HBP in any of the assays. The characterization of the HBP using a PF4-enzyme-linked immunosorbent assay (ELISA) confirmed the lack of structural identity with PF4. However, the optical density data indicated that the protein structure may be similar to PF4 by binding to a PF4 antibody. These data suggest that the HBP isolated from mouse myeloma cells has a low affinity to heparin and interacts with the secondary binding site to AT and also perhaps to PF4.

Animals↗

Enoxaparin and abciximab adjunctive pharmacotherapy during percutaneous coronary intervention.

Randomized controlled trials of patients with non-ST segment elevation acute coronary syndromes have established the superiority of enoxaparin (versus unfractionated heparin) for reducing adverse ischemic outcomes. Furthermore, adjunctive abciximab therapy during percutaneous coronary intervention (PCI) is associated with improved clinical outcomes. Since algorithms for integrating these pharmacotherapies have not been determined, patients undergoing elective PCI were enrolled into 2 distinct and separate studies conducted by the National Investigators Collaborating on Enoxaparin (NICE) study groups (NICE 1 and NICE 4 studies). Patients in NICE 1 were administered enoxaparin 1.0 mg/kg intravenously (without abciximab) and those enrolled in NICE 4 were administered a reduced dose (0.75 mg/kg) of enoxaparin in combination with standard-dose abciximab intravenously during PCI. Bleeding events and ischemic outcomes assessed in-hospital and at 30-days post-PCI were infrequent with either pharmacologic regimen. In the dose regimens studied, enoxaparin with or without abciximab appears to provide safe and effective anticoagulation during PCI. The combination of reduced-dose enoxaparin and abciximab was associated with a low incidence of adverse outcomes (bleeding or ischemic events). Additional studies may be required to establish the relative safety and efficacy of this new adjunctive pharmacologic strategy when compared with the combination of low-dose, weight-adjusted unfractionated heparin and abciximab.

Abciximab↗

Heparinase I acts on a synthetic heparin pentasaccharide corresponding to the antithrombin III binding site.

A synthetic pentasaccharide, containing an intact antithrombin III (ATIII) binding site that is in clinical studies a specific antifactor Xa agent, serves as a substrate for a heparin lyase (heparinase I, EC 4.2.2.7) from Flavobacterium heparinum. Heparinase I, currently being assessed as a heparin reversal agent, also reverses the antifactor Xa activity of this synthetic pentasaccharide by breaking it down to inactive disaccharide and trisaccharide products.

Antithrombin III↗

Hemostatic effects of 1 mg daily warfarin on post CABG patients. Post CABG Studies Investigators.

Although coronary bypass graft surgery has increased the survival and quality of life of many individuals, patients remain at risk of restenosis and thrombotic occlusion of the coronary arteries and bypass grafts. In the screening period for participation in the multicenter Post Coronary Artery Bypass Graft (Post CABG) trial, the effects of 1 mg daily warfarin were evaluated using paired patient samples collected prior to and after at least 21 days of treatment. In stable patients (n = 40; 39 males 1 female; 51-74 years old) who previously had undergone coronary artery revascularization (1-10 years), no alterations in prothrombin time, international normalized ratio (INR), prothrombin fragment 1.2, or the hemostatic risk factors factor VII antigen and coagulant activity, von Willebrand's factor, fibrinogen, tPA, or PAI-1 were associated with the 1 mg daily warfarin treatment. The observations reported here supported the Post CABG Studies Steering Committee decision to treat patients with 1-4 mg warfarin daily adjusted to achieve INRs not to exceed 2. 0 consistent with low-intensity therapy.

Aged↗

Vascular damage correlates between heparin-induced thrombocytopenia and the antiphospholipid syndrome.

Antibody-mediated disorders of heparin-induced thrombocytopenia and antiphospholipid antibody syndrome have remarkably similar clinical presentations, both of which can progressively result in severe vascular and thrombotic disorders. We hypothesized that the mechanism of platelet activation as occurs in heparin-induced thrombocytopenia may also occur in antiphospholipid antibody syndrome particularly at the vascular wall, that endothelial injury may be similar in heparin-induced thrombocytopenia and antiphospholipid antibody syndrome, and that these alterations may be caused by related antibodies. Antibody titers and vascular endothelial damage in patients with heparin-induced thrombocytopenia and antiphospholipid antibody syndrome were studied in plasma samples collected from normals (n = 17), heparin-induced thrombocytopenia patients (n = 15), antiphospholipid antibody syndrome patients (n = 30), and patients clinically diagnosed with antiphospholipid antibody syndrome and heparin-induced thrombocytopenia (n = 8). Diagnosis of heparin-induced thrombocytopenia was confirmed by 14C-serotonin release assay or positive antiheparin-platelet factor 4 antibody titer, and antiphospholipid antibody syndrome was confirmed by positive anti-beta 2-glycoprotein (GP) 1/cardiolipin (IgG or IgM) antibody titer. The antiheparin-platelet factor 4 antibody was not detected in any patient with antiphospholipid antibody syndrome. Patients with heparin-induced thrombocytopenia did not have elevated IgG anti-beta 2-GP1 titers, but three (20%) patients had low-positive IgM anti-beta 2-GP1 titers. The endothelial damage markers of soluble thrombomodulin, soluble P-selectin (p < 0.05 vs. normal), plasminogen activator inhibitor-1 and tissue factor were elevated in heparin-induced thrombocytopenia and antiphospholipid antibody syndrome patients. The soluble E-selectin was elevated only in the patients with both heparin-induced thrombocytopenia and antiphospholipid antibody syndrome (p < 0.05 vs. normal). Levels of soluble L-selectin and von Willebrand factor were not different from normals. The pathogenesis of heparin-induced thrombocytopenia and antiphospholipid antibody syndrome appears to be due to two distinct antibodies but associated with similar damage to the vascular endothelium in both diseases.

Antiphospholipid Syndrome↗

Modulation of vasoconstriction by clopidogrel and ticlopidine.

Clopidogrel is an antiplatelet drug which has undergone extensive clinical trials in the management of stroke and other arterial disorders related to platelet activation. This agent is believed to produce the inhibition of ADP mediated direct and indirect actions leading to platelet adhesion/aggregation and other activation processes. Several other observed pharmacologic actions suggest that this drug may have additional sites of action. Ticlopidine also belongs to the same class of ADP receptor inhibitors and is extensively used for stroke prevention. To study the vasomodulatory action of clopidogrel and ticlopidine, the drugs were administered intravenously into canines at a dose of 10 mg/kg. Thirty minutes later femoral and pulmonary arteries were removed and taken for isolated tissue preparations. The intravenous injection of clopidogrel and ticlopidine caused significant vasomodulatory actions in both femoral and pulmonary ring preparations showing a marked desensitization to serotonin, endothelin-1, serum, and platelet rich plasma/arachidonic acid mixtures. In contrast, when the drugs were added directly to the organ bath containing femoral or pulmonary ring preparations from untreated animals, both clopidogrel and ticlopidine did not produce any effect on contractile response induced by serotonin, endothelin-1, serum, and platelet rich plasma/ arachidonic acid mixtures. These data suggest that endogenous transformation of clopidogrel and ticlopidine plays an important role in producing their vasomodulatory actions. Furthermore, these observations indicate that both clopidogrel and ticlopidine also modulate the vascular sites which may be contributory to the observed clinical effects.

Animals↗

Low-molecular-weight heparins: pharmacologic profile and product differentiation.

The interchangeability of low-molecular-weight heparins (LMWHs) has been the subject of discussion since these products were first introduced for the prophylaxis of deep vein thrombosis. Experimental evidence now exists to show that LMWHs differ from each other in a number of characteristics. Products have been differentiated on the basis of molecular weight and biologic properties, but only limited information derived from the clinical setting is available. Potency has been described on the basis of anti-Factor Xa activity, but at equivalent anti-Xa activities, the anti-Factor IIa activity of different products shows marked variations. At the relatively small doses used for the management of postsurgical deep vein thrombosis, the effect of these interproduct differences may be relatively minor, but as LMWHs are developed for therapeutic use at much higher doses, such differences may become clinically important. Variations in safety and efficacy reported in clinical trials of LMWHs may reflect the known differences in their molecular composition and pharmacologic properties.

Animals↗

Treatment of severe veno-occlusive disease with defibrotide: compassionate use results in response without significant toxicity in a high-risk population.

Hepatic veno-occlusive disease (VOD) is the most common of the regimen-related toxicities accompanying stem cell transplantation (SCT). Despite aggressive therapies, including the combination of tissue plasminogen activator (t-PA) and heparin, severe VOD is almost uniformly fatal. Defibrotide (DF) is a polydeoxyribonucleotide with activity in several vascular disorders and, unlike t-PA and heparin, produces no systemic anticoagulant effects. Nineteen patients who developed severe VOD after SCT were treated with DF on a compassionate-use basis. Patients had clinically established VOD and met risk criteria predicting progression and fatality. At the initiation of DF, all 19 patients had evidence of multiorgan dysfunction; median bilirubin was 22.3 mg/dL, 12 patients had renal insufficiency (5 dialysis dependent), 14 required oxygen supplementation, and encephalopathy was present in 8 patients. Beginning a median of 6 days after diagnosis of VOD, DF was administered intravenously in doses ranging from 5 to 60 mg/kg/d for a planned minimum course of 14 days. In no case was DF discontinued for attributable toxicity. No severe hemorrhage related to DF administration was observed. Resolution of VOD (bilirubin <2 mg/dL with improvement in other symptoms and signs) was seen in 8 patients (42%). Six of 8 responders survived past day +100, contrasted with the 2% predicted survival reported in comparable patients. The observed response rate, survival to day +100, and absence of significant DF treatment-associated toxicity are compelling and warrant further evaluation.

Adolescent↗

Molecular markers of hemostatic activation and inflammation following major injury: effect of therapy with IFN-gamma.

Interferon-gamma (IFN-gamma) has shown promise in treatment of injured patients. However, reactive states marked by immunologic and inflammatory responses constitute a potential deleterious effect of IFN-gamma administration. IFN-gamma therapy has been associated with high levels of tumor necrosis factor-alpha (TNF-alpha), with potential enhancement of coagulopathy after injury. This study evaluated TNF-alpha production and markers of hemostatic activation in patients receiving IFN-gamma therapy. Seventy-three patients, part of a larger multicenter trial, with severe injuries were randomized to IFN-gamma (100 microg/day s.c. for 21 days) or placebo treatment. Enrollment criteria included injury severity score (ISS) > or = 25 or significant bacterial contamination with ISS > or = 20. TNF-alpha and other cytokine production was assessed at baseline and on days 3, 8, and 22 following injury. Markers of coagulation activation and fibrinolysis were also evaluated. Plasma TNF-alpha and interleukin-6 (IL-6) levels were higher in IFN-treated relative to placebo-treated patients before and after IFN administration. Markers of coagulation and fibrinolysis were elevated at all times studied following injury in both treatment and control groups but did not differ between patients receiving IFN and those receiving placebo. Activation of coagulation and fibrinolysis diminished in a time-related manner following injury. We conclude that (1) IFN-gamma therapy at the dose employed was not associated with a significant increase in TNF-alpha or other inflammatory cytokine production beyond that seen in patients receiving placebo, (2) coagulation and fibrinolytic markers were increased following injury but decreased significantly in surviving patients, and (3) no changes in coagulation and fibrinolytic parameters were noted in relation to IFN-gamma therapy. These findings support previous observations that trauma is associated with hemostatic activation and that treatment of patients at the dose of IFN-gamma studied is safe in the setting of injury.

Adult↗

Low molecular weight heparins: are they different?

In addition to their use in postsurgical and medical prophylaxis of deep vein thrombosis (DVT), low molecular weight heparins (LMWHs) are being developed for cardiovascular and cerebrovascular indications. Because of manufacturing differences, each LMWH exhibits distinct pharmacological and biochemical profiles that may influence clinical performance. The specific activity of these agents in anticoagulant assays ranges from 35 to 45 anti-IIa U/mg or 80 to 120 anti-Xa U/mg. LMWHs are capable of producing product-specific dose- and time-dependent antithrombotic effects in animal models of thrombosis. While the ex vivo effects are initially present at antithrombotic doses, these agents have been found to produce sustained antithrombotic effects without any detectable ex vivo anticoagulant actions. In experimental animal models and in various clinical trials, these agents have also been found to release tissue factor pathway inhibitor (TFPI) after both intravenous and subcutaneous administration. Repeated administration of LMWHs produces progressively stronger antithrombotic effects. However, the hemorrhagic responses vary and are largely product dependent. The product-dependent release of TFPI following intravenous and subcutaneous administration in a primate model also demonstrates the relevance of this inhibitor to the actions of LMWHs. The effect of repeated administration of LMWH mimicking the postsurgical prophylaxis of DVT exhibited product-based augmentation of the antithrombotic or hemorrhagic effects.

Animals↗

Biochemical and pharmacologic characteristics of Reviparin, a low-molecular-mass heparin.

The introduction of low-molecular-mass heparins (LMMHs) has added a new dimension to the prophylactic and therapeutic management of thromboembolic disorders. These agents are now globally accepted as drugs of choice for postsurgical prophylaxis of deep vein thrombosis (DVT). Currently, the LMMHs are being developed for various therapeutic and cardiovascular indications. Reviparin is an optimized LMMH prepared by controlled nitrous acid digestion of porcine mucosal heparin. This drug has been developed utilizing validated procedures and exhibits a relatively narrow molecular mass distribution in contrast to most other commercially available LMMHs. The specific activity in the anticoagulant assays is approximately 40 U/mg whereas the specific activity in amidolytic anti-Xa assays is approximately 100 anti-Xa U/mg. Reviparin is capable of producing dose- and time-dependent antithrombotic effects in animal models of thrombosis. Although ex vivo anticoagulant effects are initially observed at dosages that are antithrombotic, this agent has been found to produce sustained antithrombotic effects when ex vivo anticoagulant actions are not measurable. Repeated administration of this LMMH induces progressively stronger antithrombotic effects. This drug has also been found to release tissue factor pathway inhibitor (TFPI) following both intravenous (IV) and subcutaneous (SC) administration. The studies included in this article are designed to provide additional data on the molecular profile using new calibration methods and additional results on pharmacologic studies. In particular, the release of TFPI following IV and SC administration to nonhuman primates is described. The effect of repeated administration of Reviparin mimicking the postsurgical prophylaxis of DVT is also reported in terms of any augmentation of the antithrombotic or hemorrhagic effects of this agent.

Animals↗

Low molecular weight heparins: a developmental perspective.

Low molecular weight heparins (LMWHs) are now universally accepted as drugs of choice for post-surgical prophylaxis of deep vein thrombosis (DVT). Currently these agents are also being developed for the treatment of thrombosis and various cardiovascular indications. Due to manufacturing differences, each of the LMWHs exhibits a distinct pharmacological and biochemical profile. The specific activity of these agents in the anticoagulant assays ranges from 35 - 45 anti-IIa U/mg, whereas the specific activity in terms of anti-Xa units is designated as 80 - 145 anti-Xa U/mg. These LMWHs are capable of producing product-specific dose- and time-dependent antithrombotic effects in animal models of thrombosis. While the ex vivo effects are initially present at doses that are antithrombotic, these agents have been found to produce sustained antithrombotic effects without any detectable ex vivo anticoagulant actions. In experimental animal models and in various clinical trials, these agents have also been found to release tissue factor pathway inhibitor (TFPI) after both iv. and sc. administration. Repeated administration of LMWHs produces progressively stronger antithrombotic effects; however, the haemorrhagic responses vary and are largely dependent on the product used. The release of TFPI following iv. and sc. administration in a primate model also demonstrates product individuality and the relevance of this inhibitor to the actions of LMWHs. Furthermore, repeated administration, mimicking the post-surgical prophylaxis of DVT, leads to product-based augmentation of the antithrombotic or haemorrhagic effects. Antithrombotic and haemorrhagic studies are discussed, comparing the pharmacological profile of some of the available LMWHs. Product individuality, in terms of relative potency in different assays and the failure of standardisation protocols to provide any guidelines for product substitution and prediction of the clinical effects, is also addressed.

Journal Article↗

Preclinical studies on a low molecular weight heparin.

Some major developments in the area of antithrombotic therapy have occurred during the past decade. Of these, the concept of fractionation of heparin has resulted in the development of several products from this agent. The introduction of low molecular weight heparins (LMWHs) has added a new chapter to the prophylactic and therapeutic management of thromboembolic disorders. These agents are now globally accepted as drugs of choice for post-surgical prophylaxis of deep vein thrombosis (DVT). Currently, the LMWHs are being developed for various therapeutic and cardiovascular indications. Reviparin is an optimized LMWH prepared by controlled nitrous acid digestion of porcine mucosal heparin. This drug has been developed using validated procedures and exhibits a relatively narrow molecular weight distribution in contrast to most other commercially available LMWHs. The specific activity in anticoagulant assays is approximately 32 U/mg whereas the specific activity in terms of anti-Xa units is 120 anti-Xa U/mg. Reviparin is capable of producing a dose- and time-dependent antithrombotic effect in animal models of thrombosis. While the ex vivo effects initially occur at dosages that are antithrombotic, this agent has been found to produce sustained antithrombotic effects without any detectable ex vivo anticoagulant actions. This agent has also been found to release tissue factor pathway inhibitor (TFPI) after both intravenous and subcutaneous administration. Repeated administration of reviparin produces progressively stronger antithrombotic effects. The current studies are designed to provide additional data on its molecular profile using new calibration methods and additional results on the pharmacological studies in a dose-dependent manner. In particular, the release of TFPI following i.v. and s.c. administration in a primate model is described. The effect of repeated administration mimicking the post-surgical prophylaxis of DVT is also reported in terms of any increase in the antithrombotic or haemorrhagic effects of this agent. Comparative antithrombotic and pharmacological studies are also reported to compare the pharmacological profiles of reviparin, nadroparin and enoxaparin.

Animals↗