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Biomedical subjects

A Bernat

Publications and source records attributed to A Bernat.

15 recordsLinked to original sources

Importance of platelets in experimental venous thrombosis in the rat.

Venous thrombosis was induced by ligature of the inferior vena cava in rats whose blood was made hypercoagulable by intravenous (IV) administration of tissue thromboplastin. From a dose-response showing that the administration of increasing doses of tissue thromboplastin resulted in a subsequent progressive increase of thrombus weight, two concentrations of tissue thromboplastin were chosen: a high dose (550 microL/kg, IV) where thrombus formation was optimal and a concentration (7 microL/kg, IV) where tissue thromboplastin-hypercoagulability was intermediate. In both experimental conditions, leukopenia provoked by a myelotoxic drug did not influence the development of venous thrombosis. However, after thrombocytopenia induced by an antiplatelet antiserum, a dramatic decrease in thrombus formation was observed in animals that had been pre-challenged with the lower dose of tissue thromboplastin, whereas decrease in platelet count did not affect venous thrombosis under high thrombogenic challenge. When administered orally 2 hours before thrombosis induction, the ticlopidine analogue clopidogrel showed dose-dependent inhibition of thrombus formation in animals that were pre-challenged with a low dose of tissue thromboplastin (ED50 = 7.9 +/- 1.5 mg/kg, orally) but remained ineffective against high tissue thromboplastin-induced venous thrombosis. We further determined the effect of heparin and hirudin, and showed that both of these drugs exhibited a more potent antithrombotic activity after injection of the lower dose of tissue thromboplastin than after injection of a high dose of tissue thromboplastin. Therefore, using our model of stasis and hypercoagulability, platelet activation played a major role in the development of venous thrombosis when the thrombogenitic stimulus was mild.

Animals

Effect of SR 27417 on oedema formation induced in rabbit skin by platelet-activating factor or antigen.

SR 27417, the first member of a newly developed series of platelet activating factor (PAF) antagonists inhibited in a dose-dependent manner PAF-induced oedema formation in rabbit skin when administered i.d. premixed with PAF (ED50 = 3.3 +/- 0.15 pmol/site i.d. (intradermally) (n = 5). The effect of SR 27417 was over 660 times more potent than that of the triazolothienodiazepine, WEB-2086 (ED50 = 5.4 +/- 0.71 nmol/site i.d.) (n = 5). SR 27417 protected rabbits from PAF-induced plasma extravasation with an ED50 value of 16 +/- 3 micrograms/kg when given i.v. 1 h before PAF challenge. It was also effective when given p.o. 3 h before PAF i.d. administration (ED50 = 0.18 +/- 0.07 mg/kg p.o.) (n = 5). This effect of SR 27417 was selective for PAF since inflammatory responses induced by other mediators (bradykinin, histamine, N-formyl-L-methionyl-L-leucyl-L-phenyl-alanine, leukotriene B4) were not affected. After i.v. or oral administration (1 and 5 mg/kg respectively) SR 27417 had an extended duration of activity (between 72 and 96 h). In presensitized rabbits, SR 27417 premixed with the allergen inhibited dose-dependently allergen-induced plasma exudation (ED50 = 12 +/- 0.08 nmol/site i.d.) (n = 5) (vs. 850 +/- 98 nmol/site (n = 5) for WEB-2086). Similarly, i.v. injection of SR 27417 (1 mg/kg i.v.) inhibited allergen-induced vascular permeability. These results confirm that PAF plays a major role in the development of cutaneous anaphylaxis and that SR 27417 may be an effective prophylactic drug.

Allergens

Protective effect of SR 27417, a novel PAF antagonist, on PAF- or endotoxin-induced hypotension in the rat and the guinea-pig.

SR 27417, the first member of a newly-developed PAF antagonist series, inhibited in a dose-dependent manner the hypotensive effect of PAF in rats. It protected rats with an ED50 = 6 micrograms/kg, when given i.v., 1 min before PAF or p.o. (ED50 = 170 micrograms/kg) 1 h before PAF administration. After i.v. or oral administration, SR 27417 (1 and 3 mg/kg, respectively) exhibited extended duration of action (between 48 and 72 h). Similarly, i.v. administration of 1 to 6 mg/kg of SR 27417 afforded complete protection of guinea-pigs against endotoxin-induced hypotension but also totally reversed established endotoxin-induced hypotension. These results therefore confirm that PAF plays a major role in septic shock and that SR 27417 may be an effective prophylactic as well as a potent curative drug.

Administration, Oral

Biochemical and pharmacological activities of SR 27417, a highly potent, long-acting platelet-activating factor receptor antagonist.

SR 27417 [N-(2-dimethylamino ethyl)-N-(3-pyridinyl methyl)[4- (2,4,6-triisopropylphenyl) thiazol-2-yl]amine] is the first member of a newly developed platelet-activating factor (PAF) antagonist series. It is a highly potent, competitive and selective antagonist of the binding of [3H]PAF to its receptor in rabbit platelets. It exhibits an equilibrium inhibition constant for PAF binding of 57 pM, a value that is at least 5-fold lower than that of unlabeled PAF itself. SR 27417 potently inhibited PAF-induced aggregation of rabbit and human platelets in vitro (IC50 = 0.10 and 0.50 nM, respectively) but had no effect on the action of other platelet-aggregating agents. In comparison with the triazolothienodiazepine WEB-2086, SR 27417 was 470 and 70 times more potent against PAF-induced aggregation of rabbit and human platelets, respectively. SR 27417 displayed marked in vitro inhibition of PAF-induced oxidative burst in guinea pig macrophages (IC50 = 32 nM). In an in vivo model, it protected mice from 100 micrograms/kg PAF-induced death when given i.v. (ED50 = 7.5 micrograms/kg) 5 min before PAF challenge or p.o. (ED50 = 45 micrograms/kg) 3 hr before PAF administration. SR 27417 inhibited PAF-induced death in mice with an impressive p.o. or i.v. duration of action of 30 to 48 hr. In anesthetized guinea pigs, SR 27417 inhibited i.v. and p.o. 100 ng/kg PAF-induced bronchoconstriction (ED50 = 14 and 140 micrograms/kg, respectively), hemoconcentration (ED50 = 20 and 270 micrograms/kg, respectively), thrombocytopenia (ED50 = 30 and 240 micrograms/kg, respectively) and leukopenia (ED50 = 0.1 and 1.5 mg/kg, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Inhibition by recombinant hirudins of experimental venous thrombosis and disseminated intravascular coagulation induced by tissue factor in rats.

Antithrombotic potency of recombinant hirudins rHV2, rHV2-Lys47 and rHV2-Arg47 was studied in a model of experimental thrombosis induced by tissue factor in the rat. Venous thrombosis was induced by i.v. injection of 25 mg/kg tissue factor followed by stasis of the inferior vena cava. In this model natural recombinant hirudins, rHV2 and rHV2-Lys47 injected 5 min before thrombo-plastin totally inhibited thrombosis in the same micrograms range as heparin or natural hirudin extracted from leeches. However, the mutant variant rHV2-Arg47 gave a maximal 60% inhibition of thrombosis. Variants rHV2-Lys47 (30 micrograms/kg) and rHV2-Arg47 (157 micrograms/kg) injected 5 min before thromboplastin prevented by 90 to 100% the drop in platelet count observed during the disseminated intravascular coagulation induced by thromboplastin injection. Recombinant hirudins were less anticoagulant than heparin as measured by an APTT on rat plasma. After rat tail transection, rHV2-Lys47 caused a 2-fold smaller prolongation of the bleeding time than an equivalent antithrombotic dose of heparin. Plasmatic elimination of rHV2-Lys47 from rat plasma after i.v. injection had a fast distribution phase with a half-life of 3 min during which 90% of injected rHV2-Lys47 was lost and was followed by a slower elimination phase. Thus recombinant hirudin rHV2-Lys47 appears as a promising potent antithrombotic agent for the prevention of thrombin-dependent venous thrombosis and disseminated intravascular coagulation.

Animals

Production and evaluation of recombinant hirudin.

Hirudin, a 65 amino acid polypeptide form the medicinal leech, is an extremely efficient and specific thrombin inhibitor whose therapeutic potential has been demonstrated in a number of animal models. We have developed protocols for the production of recombinant hirudin by secretion from S. cerevisiae and carried out a full biologic evaluation of the purified product. These studies showed that natural and recombinant hirudin was similar in structure and in biologic function in vitro. Moreover, the recombinant protein displayed strong antithrombotic activity in several experimental thrombosis models in vivo, confirming the molecule's promise in the therapy of thrombotic disorders.

Amino Acid Sequence

Point mutations modifying the thrombin inhibition kinetics and antithrombotic activity in vivo of recombinant hirudin.

The hirudin variant HV2 was modified by in vitro site-specific mutagenesis of HV2 cDNA to generate HV2(Asn-47----Lys), HV2(Asn-47----Arg) and HV2(Lys-35----Thr, Asn-47----Lys). Residues 35 and 47 are positioned respectively within the finger and prothrombin-like domains of hirudin, both of which have been suggested as thrombin binding sites. The modified polypeptides were synthesized in Saccharomyces cerevisiae using a secretion vector and purified from culture supernatants. By analysis of the human alpha-thrombin:hirudin inhibition reaction in steady-state conditions it was shown that the dissociation constants for HV2(Lys-47) and HV2(Arg-47) were 5- to 14-fold lower than for unmodified HV2, whereas mutation of Lys-35 did not significantly alter the inhibition kinetics. Furthermore, HV2(Lys-47), whose sequence is identical to a natural hirudin variant, displayed enhanced anti-thrombotic activity in vivo, having a 100-fold lower ED50 compared to HV2 in the rabbit Wessler venous thrombosis model. These results support a role for the prothrombin-like domain in thrombin binding and, moreover, demonstrate that in vivo antithrombotic efficiency correlates with the dissociation constant of the inhibition reaction.

Amino Acid Sequence

ADP plays a key role in thrombogenesis in rats.

The relative importance of ADP, arachidonic acid metabolites and serotonin as thrombogenic factors was evaluated in rats by comparing, after oral administration, the effects of two inhibitors of ADP-induced platelet aggregation (ticlopidine and PCR 4099), three cyclo-oxygenase inhibitors (aspirin, triflusal and indobufen) and a selective serotonin 5HT2 receptor antagonist (ketanserin) on platelet aggregation, in four platelet-dependent thrombosis models and on bleeding time. Platelet aggregation induced by ADP and collagen was completely inhibited by ticlopidine and PCR 4099 whereas only the collagen aggregation was reduced by the cyclo-oxygenase inhibitors. Ketanserin or a depletion of platelet serotonin by reserpine did not affect platelet aggregation. Ticlopidine and PCR 4099 greatly prolonged rat tail transection bleeding time. This is probably related to their known ability to inhibit ADP-mediated platelet aggregation. In contrast, the cyclooxygenase inhibitors did not affect bleeding time at all. Reserpine and ketanserin prolonged bleeding time by interfering with the action of serotonin on the vascular wall. Ticlopidine and PCR 4099 were very potent antithrombotics in all the models. Aspirin, only at a high dose, inhibited poorly thrombus formation on a silk thread in an arterio-venous shunt, suggesting that the inhibition of cyclo-oxygenase was not responsible. Triflusal was inactive in all models while indobufen slightly reduced thrombus formation in the silk thread and metallic coil models. Ketanserin and reserpine reduced thrombus only in the metallic coil model. Thrombus formation was greatly reduced in fawn-hooded rats, which lack ADP in their platelet dense granules because of a genetic storage pool deficiency.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Diphosphate

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

Antithrombotic effect of ticlopidine in a platelet-independent model of venous thrombosis.

The antithrombotic activity of ticlopidine demonstrated in a variety of experimental models of thrombosis has been explained by its antiaggregating properties. This study describes the antithrombotic effect of ticlopidine in a platelet independent model of venous thrombosis. In the rat, ligature of the inferior vena cava induces thrombosis. Antiaggregating drugs (acetylsalicylic acid, dipyridamole, sulfinpyrazone) are inactive while anticoagulants (heparin, acenocoumarol) are highly antithrombotic. Ticlopidine reduces thrombus weight significantly and dose-dependently (ED 50 = 150 mg/kg/day X 3 days). Thrombocytopenia induced by injection of anti-platelet anti-serum was found not to modify thrombus formation. Yet, even in these conditions, ticlopidine remains active. Acetylsalicylic acid treatment does not prevent the antithrombotic effect of ticlopidine, indicating that its action is independent of PGI2 synthesis. These results demonstrate that ticlopidine acts as an antithrombotic agent in a venous thrombosis model in which platelets play a minor role.

Animals

[Granular myringitis].

We present two cases of granular myringitis. A clinical study, diagnosis and therapy of this rare condition are undertaken.

Adult