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B Boneu

Publications and source records attributed to B Boneu.

At least 127 records · Page 7Linked to original sources

Pharmacodynamics and pharmacokinetics of dermatan sulfate in humans.

Dermatan sulfate (DS), a catalyst of the thrombin-heparin cofactor II interaction, has antithrombotic activity and is devoid of significant hemorrhagic risk in several animal models. We investigated the pharmacodynamic and pharmacokinetic properties of DS in humans. DS was injected in single bolus intravenous injections of four increasing doses (0.5, 1, 1.5, 2 mg/kg) to six healthy volunteers. The resulting anticoagulant activities were assessed by the activated partial thromboplastin time (APTT) and the thrombin clotting time (TCT). There were dose-dependent prolongations of the APTT and TCT, and the anticoagulant activities disappeared in less than three hours. The pharmacokinetic parameters were calculated from the plasma concentrations of DS measured with a new chromogenic assay. The volume of distribution was approximately 1.8 times greater than the theoretical plasma volume and was independent of dose. In contrast, the clearance decreased with dose and the terminal half-life ranged from 0.45 +/- 0.08 hours at 0.5 mg/kg to 0.72 +/- 0.11 hours (mean +/- SD) at 2 mg/kg. The bioavailabilities of subcutaneous (SC) and intramuscular (IM) administration relative to those of intravenous administration were determined in 12 other volunteers. The respective bioavailabilities were 24.7% +/- 12.9% and 12.4% +/- 9.2% for SC and IM administration. There was no detectable change in the APTT and the TCT when the volunteers were injected with 1.5 mg/kg SC or IM. In addition, the pharmacokinetic parameters derived from plasma concentrations of DS showed considerable interindividual variations by the two later routes of administration. Peak concentrations were noted 2.7 +/- 1.3 hours after SC injection and 4.3 +/- 4.9 hours after IM injection. The average peak concentrations were 0.7 +/- 0.3 and 0.4 +/- 0.2 mg/L after SC and IM injections, respectively. The half-lives of DS were 7.9 +/- 6.5 hours (SC) and 6.3 +/- 7.4 hours (IM). No adverse reaction to DS was recorded during this study.

Adult↗

Further studies on the mechanisms for the antithrombotic effects of sulfated polysaccharides in rabbits.

A recent study (Fernandez et al., Thromb. Haemostas. 1987; 57: 286-93) demonstrated that when rabbits were injected with the minimum weight of a variety of glycosaminoglycans required to inhibit tissue factor-induced thrombus formation by approximately 80%, exogenous thrombin was inactivated approximately twice as fast in the post-treatment plasmas as the pre-treatment plasmas. In this study, we investigated the relationship between inhibition of thrombus formation and the extent of thrombin inhibition ex vivo. We also investigated the relationship between inhibition of thrombus formation and inhibition of prothrombin activation ex vivo. Four sulfated polysaccharides (SPS) which influence coagulation in a variety of ways were used in this study. Unfractionated heparin and the fraction of heparin with high affinity to antithrombin III potentiate the antiproteinase activity of antithrombin III. Pentosan polysulfate potentiates the activity of heparin cofactor II. At less than 10 micrograms/ml of plasma, all three SPS also inhibit intrinsic prothrombin activation. The fourth agent, dermatan sulfate, potentiates the activity of heparin cofactor II but fails to inhibit intrinsic prothrombin activation even at concentrations which exceed 60 micrograms/ml of plasma. Inhibition of thrombus formation by each sulfated polysaccharides was linearly related to the extent of thrombin inhibition achieved ex vivo. These observations confirm the utility of catalysis of thrombin inhibition as an index for assessing antithrombotic potential of glycosaminoglycans and other sulfated polysaccharides in rabbits. With the exception of pentosan polysulfate, there was no clear relationship between inhibition of thrombus formation and inhibition of prothrombin activation ex vivo.

Animals↗

A simple method to measure dermatan sulfate at sub-microgram concentrations in plasma.

A simple method for biological assay of dermatan sulfate (DS) in plasma is described. DS accelerates thrombin inhibition by heparin cofactor II (HC II). The principle of the assay is to measure the residual amidolytic thrombin activity after a short period of incubation with HC II in defibrinated plasma at low ionic strength. For this method we take advantage of two observations. Firstly, at fixed concentrations of DS and of HC II, the rate of thrombin inhibition increases when the ionic strength of the medium decreases. Secondly, defibrination by bentonite absorption also removes antithrombin III, HC II and for a large part alpha-2 macroglobulin from the plasma, so that no other thrombin inhibitor competes with HC II added as a reagent in a second step. In the conditions described, there is a linear relationship between DS concentrations in plasma from 0 to 2 micrograms/ml and the log of residual thrombin activity. The limit of sensitivity is 0.1 micrograms/ml. The assay displays an acceptable reproducibility in intra-assay, inter-assay and inter-individual experiments. It can be used to measure DS in human, rabbit and rat plasmas. The assay is also sensitive to other HC II activators such as heparin and pentosan polysulfate. DS is effective in experimental thrombosis without any detectable anticoagulant effect ex vivo. Pharmacological concentrations of DS in plasma fall into the range of sensitivity of this assay, which would be helpful in experimental or clinical studies of DS and related glycosaminoglycans.

Antithrombin III↗

Effects of increased sulfation of dermatan sulfate on its in vitro and in vivo pharmacological properties.

The in vitro and in vivo pharmacological properties of two oversulfated dermatan sulfate (DS) derivatives, S-DS1 and S-DS2, containing 2 and 3.7 sulfate groups/disaccharide unit respectively were compared to those of the parent DS (1 sulfate group/disaccharide unit). In a purified system the ability of S-DS1 and of S-DS2 to catalyse thrombin inhibition by heparin cofactor II was increased by ten- and seventeen-fold respectively. These compounds also had more potent anticoagulant activities in the activated partial thromboplastin time and the thrombin clotting time assays. Plasma immunodepleted in antithrombin III, heparin cofactor II and both cofactors allowed it to be demonstrated that these enhanced anti-coagulant activities were partly (S-DS1) or totally (S-SD2) independent of any plasma cofactors. In spite of these enhanced anticoagulant activities in vitro the oversulfated derivatives did not exhibit an increased antithrombotic activity in a thromboplastin Wessler type model. Moreover, at the doses investigated, S-DS2 had no antithrombotic effect. The influence of oversulfation on the pharmacokinetic pattern of DS was also investigated. As reported for unfractionated heparin, the biological activities generated after IV injection of high doses of S-DS1 and S-DS2 disappeared according to a concave-convex pattern. This may result from the higher affinities of S-DS1 and of S-DS2 toward endothelial cells in comparison with that of DS.

Animals↗

Studies on the structural requirements of heparin for the catalysis of thrombin inhibition by heparin cofactor II.

The structural requirements of heparin for the catalysis of thrombin inhibition by heparin cofactor II (HC II) were investigated. A series of well characterized heparin derivatives were prepared and their activities were measured using human thrombin in the presence of an excess of purified human HC II and, for comparison, antithrombin III (AT III). The 50% inhibitory concentrations of each derivative were calculated and compared with those of unmodified heparin. Heparin activity was strongly dependent on molecular weight (Mr) in a manner grossly comparable for the two inhibitors. High-Mr fractions were the most active. Below 10 kDa, the activity dropped rapidly. A minimum size of 26 residues appeared to be required for HC II activation (against 16-18 for AT III). Below 5 kDa, a residual activity two orders of magnitude lower than that of high-Mr species remained with HC II (but not with AT III). Heparin was selectively desulfated or oversulfated in the O- and/or N-position. When an N-acetyl group was substituted for the original N-sulfate in the glucosamine and the derivative was oversulfated in the O-position, a strong activity with HC activities with both inhibitors decreased when the overall sulfate content (i.e., the charge density) was reduced, and vice-versa. Carboxyl-reduced heparin was also inactive but activity could be restored after O-sulfation. Our results thus suggest that, unlike the case of AT III, no functional group in heparin is critical for optimal thrombin inhibition by HC II. Sulfate and carboxylate are important in as much as they contribute to the global charge of the molecule.

Antithrombin III↗

Standard heparin enhances the antithrombotic activity of dermatan sulfate in the rabbit but CY 216 does not.

Standard heparin (SH) and dermatan sulfate (DS) two glycosaminoglycans with different pharmacological targets are effective antithrombotic agents in the rabbit. We have investigated the antithrombotic activity of the association DS plus SH. It was found that doses as low as 25 micrograms/kg for DS and 10 micrograms/kg for SH were ineffective when injected separately but generated a high and significant antithrombotic activity when injected together. These results were confirmed when higher doses of each compound were delivered in association. Further experiments were performed to determine if the enhancement of the antithrombotic activity of DS by HS resulted from its anti-factor IIa or anti-factor Xa activity or from its moiety without affinity to AT III. A low molecular weight heparin (CY 216) with an anti-factor Xa/anti-factor IIa ratio of 5, the synthetic pentasaccharide bearing the minimum binding sequence to antithrombin III, and a low affinity fraction of SH to AT III did not increase the antithrombotic activity of DS; in contrast a high affinity fraction of SH to AT III had the same effect than SH. We conclude that the enhancement of the antithrombotic activity of DS by SH mainly results from its anti-factor IIa activity.

Animals↗

Pharmacokinetics of dermatan sulfate in the rabbit after intravenous injection.

To investigate the pharmacokinetic properties of dermatan sulfate (DS), a new potential antithrombotic agent, two different approaches were used. In the first one, DS was derivatized with 3-4 hydroxyphenyl propionic acid N hydroxysuccinimide ester (SHPP) and iodinated. The labelled derivative was injected by IV route to rabbits with increasing doses of unlabelled compound ranging from 20 to 4000 micrograms/kg. The disappearance of DS from plasma was characterized by measuring both the circulating radioactivity and the biological activity using an original assay based upon the catalysis of heparin cofactor II - thrombin formation. The radioactivity data indicated that the volume of distribution, the clearance and the half life of the tracer were independent of the dose of DS injected. DS concentrations measured by the bioassay indicated that more than 90% were cleared with half lives close to those calculated from the radioactivity data; the remaining biological activity was cleared at a slower rate. Experiments performed with bi-nephrectomized animals indicated that the kidneys play a major role in the elimination of DS or of its metabolites which may have a residual biological activity. In the second set of experiments, unlabelled DS was delivered under continuous intravenous infusion for 5 hours at 5 increasing doses ranging from 160 to 4200 micrograms/kg/h. The biological activities were used to measure the plateau concentration of DS: there was a linear relationship between the dose delivered and the plasma concentration. These data indicate that the pharmacokinetic profile of DS is very close to that of low molecular weight heparin, and quite different from that of SH.

Animals↗

Clinical and biological survey of haemophilia A and B patients infused with French heat-treated concentrates.

The efficiency of heat treatment procedures of factor VIII and factor IX concentrates, prepared from voluntary, non-paid donors by three French Blood Transfusion Centres, on the inactivation of HIV and non-A, non-B hepatitis (NANB) viruses was assessed. Some 43 patients (26 haemophilia A, 17 haemophilia B) were followed for at least 1 year by testing for HIV antibodies and alanine aminotransferase (ALT). No HIV seroconversion was observed indicating that heat treatment was completely efficient. Among 26 haemophiliacs, 6 (4 haemophilia A, 2 haemophilia B) presented an elevation in ALT, indicating only a 75% reduction of NANB viral contamination.

Acquired Immunodeficiency Syndrome↗

[A study of hematology questions on the competitive examination of medical residents 1984, 1985 and 1986].

The recently (1984) introduced new modalities for selecting the residents in France is based upon multiple choice (MCQ) questions (2/3) and written answers to patients managements problems (PMP) (1/3). MCQ and PMP are selected by a group for 8 hematologists from the 42 French schools of medicine. The process of selecting the questions, the major topics explored by these questions, the docimological quality of the questions and the most surprising errors made by the candidates are studied. Results argue for a sustained effort in order to improve the teaching of the basis of hematology in our country.

Educational Measurement↗

[The phenomenon of relative resistance to heparin].

In a prospective clinical study heparin half-life and in vitro and ex vivo heparin sensitivity, as assessed by activated partial thromboplastin time prolongation, was evaluated in 8 healthy volunteers and in 21 patients with malignant tumor. In the patients, coagulation activation was evaluated by determining the fibrinogen half-life and the level of the fibrin-fibrinogen degradation products. The results were comparable in the two groups of subjects, and in the patients there was no correlation with the degree of activation of the coagulation system. In both groups large interindividual variations were recorded. These results confirm those obtained in patients with deep venous thrombosis. They suggest that the relative heparin resistance phenomenon encountered in some patients during heparin therapy is unrelated to the presence of the thromboembolic disease (P.M.).

Adult↗

Inactivation of heparin cofactor II by polymorphonuclear leukocytes.

Inactivation of purified human heparin cofactor II by polymorphonuclear leukocytes was investigated. A proteolytic mechanism of inactivation was demonstrated by SDS-polyacrylamide gel electrophoresis. Inactivation and related proteolysis did not occur in the presence of unstimulated leukocytes and were prevented by various protease inhibitors. Heparin cofactor II was inactivated more rapidly than antithrombin III. However, heparin (1-10 ug/ml) strongly accelerated the rate of antithrombin III inactivation and slightly protected heparin cofactor II, thus reversing the order of inactivation. Dermatan sulfate had no effect on this process.

Antithrombin III↗

Antithrombotic and bleeding effects of a new synthetic direct thrombin inhibitor and of standard heparin in the rabbit.

This study reports on the anticoagulant, antithrombotic and bleeding effects of a new synthetic direct thrombin inhibitor (SDTI) in comparison with standard heparin (SH). The anticoagulant effect was determined with the thrombin clotting time (TCT) and the activated partial thromboplastin time (APTT). SDTI was more potent than SH in prolonging the TCT, but as potent as SH in prolonging the APTT. The antithrombotic effect was determined using a modified Wessler model in the rabbit, either 30 min after a continuous IV infusion of increasing doses or at various times after a single SC injection (20 mg/kg). After continuous IV infusion of 187 micrograms/kg/h of SDTI and of 60 micrograms/kg/h of SH, significant thrombus prevention effects were obtained (59 and 57% respectively). Increasing the dose of SDTI up to 3000 micrograms/kg/h did not significantly improve the antithrombotic effect. After SC injection, a significant antithrombotic effect was observed for 12 h with SDTI but for more than 24 h with SH. The bleeding effect was studied using the rabbit ear model 15 min after a continuous infusion of 7.5 and 15 mg/kg/h: the amounts of blood loss were dose-dependent and comparable for SDTI and SH. These studies also indicated that SDTI possesses a considerable shorter half-life in comparison with SH. Accordingly, the ex vivo concentrations generated after continuous IV infusion or SC injection of the same dose were higher for SH than for the SDTI.

Animals↗

Evidence for a saturable mechanism of disappearance of standard heparin in rabbits.

This work demonstrates that after bolus intravenous injection standard heparin (SH) disappearance results from the combination of a saturable and a non saturable mechanism. Pharmacokinetics and pharmacodynamics of SH were studied by measuring the disappearance of increasing doses (5 - 500 anti-factor Xa U/kg) of 125I-heparin and of its biological effects. CPM curves allowed to determine the half lives of heparin according to the dose injected. The half lives were clearly dose dependent and reached a plateau over 100 anti-factor Xa U/kg. The complex curve which describes the amount of heparin cleared per time unit after any given dose has been resolved into its two components reflecting a saturable and a non saturable mechanism of disappearance. For the doses less than 100 anti-factor Xa U/kg the saturable mechanism was preeminent and the anti-factor Xa activity disappearance followed an exponential pattern; for the doses less than 100 anti-factor Xa U/kg the contribution of the non saturable mechanism becomes more important and the anti-factor Xa activity disappearance followed a concave-convex pattern. Further experiments showed that the heparin half life shortened as the circulating anti-factor Xa activity decreased; this phenomenon may explain the concave-convex pattern of the curve of the anticoagulant effect observed after injection of large doses of SH.

Animals↗

The disappearance of a low molecular weight heparin fraction (CY 216) differs from standard heparin in rabbits.

In previous studies, we have reported that standard heparin (SH) was cleared by two mechanisms, a saturable mechanism which predominated at low doses (less than 100 anti-factor Xa U/kg) and a non-saturable mechanism which predominated at higher doses, when the first mechanism became saturated. In this study, we examined the importance of these two mechanisms in the disappearance of a low molecular weight heparin fraction (LMWH) (CY 216), by comparing the pharmacokinetics and the pharmacodynamics of a wide range of doses of SH and CY 216 (1.5 to 500 anti-factor Xa U/kg). Pharmacokinetics was measured as the disappearance of 125I-radiolabelled SH or CY 216. Pharmacodynamics was measured as the disappearance of the anti-factor Xa activity of SH and CY 216. We found that the saturable mechanism contributed little to the disappearance of CY 216 and that it was cleared predominantly by the non-saturable mechanism at all doses tested. Thus, at low doses (less than 100 anti-factor Xa U/kg), SH was cleared more rapidly than CY 216, whereas at higher doses, CY 216 was cleared more rapidly than SH. We conclude that the mechanism of disappearance of LMWH's differ significantly from those of SH, and that this difference may explain the apparent prolonged anticoagulant activity of LMWH's within the therapeutic range doses.

Animals↗

The inhibition of thrombin-dependent positive-feedback reactions is critical to the expression of the anticoagulant effect of heparin.

Heparin catalyses the inhibition of two key enzymes of blood coagulation, namely Factor Xa and thrombin, by enhancing the antiproteinase activities of plasma antithrombin III and heparin cofactor II. In addition, heparin can directly inhibit the activation of Factor X and prothrombin. The contributions of each of these effects to the anticoagulant activity of heparin have not been delineated. We therefore performed experiments to assess how each of these effects of heparin contributes to its anticoagulant activity by comparing the effects of heparin, pentosan polysulphate and D-Phe-Pro-Arg-CH2Cl on the intrinsic pathway of coagulation. Unlike heparin, pentosan polysulphate catalyses only the inhibition of thrombin by plasma. D-Phe-Pro-Arg-CH2Cl is rapid enough an inhibitor of thrombin so that when added to plasma no complexes of thrombin with its inhibitors are formed, whether or not the plasma also contains heparin. Heparin (0.66 microgram/ml) and pentosan polysulphate (6.6 micrograms/ml) completely inhibited the intrinsic-pathway activation of 125I-prothrombin to 125I-prothrombin fragment 1 + 2 and 125I-thrombin. On the addition of thrombin, a good Factor V activator, to the plasma before each sulphated polysaccharide, the inhibition of prothrombin activation was demonstrable only in the presence of higher concentrations of the sulphated polysaccharide. D-Phe-Pro-Arg-CH2Cl also completely inhibited the intrinsic-pathway activation of prothrombin in normal plasma. The inhibitory effect of D-Phe-Pro-Arg-CH2Cl was reversed if thrombin was added to the plasma before D-Phe-Pro-Arg-CH2Cl. The inhibition of the activation of prothrombin by the three agents was also abolished with longer times with re-added Ca2+. Reversal of the inhibitory effects of heparin and pentosan polysulphate was associated with the accelerated formation of 125I-thrombin-antithrombin III and 125I-thrombin-heparin cofactor complexes respectively. These results suggest that the anticoagulant effects of heparin and pentosan polysulphate are mediated primarily by their ability to inhibit the thrombin-dependent activation of Factor V, thereby inhibiting the formation of prothrombinase complex, the physiological activator of prothrombin.

Calcium↗