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Biomedical subjects

E Chabielska

Publications and source records attributed to E Chabielska.

At least 19 recordsLinked to original sources

Antithrombotic effect of tissue and plasma type angiotensin converting enzyme inhibitors in experimental thrombosis in rats.

This study compared the antithrombotic effect of plasma angiotensin converting enzyme inhibitors (ACE-Is): captopril (CAP), enalapril (ENA) and tissue ACE-Is: perindopril (PER), quinapril (QUIN) in experimental venous and arterial thrombosis. Normotensive Wistar rats were treated p.o. with CAP (75 mg/kg), ENA (20 mg/kg), PER (2 mg/kg) and QUIN (3 mg/kg) for 10 days. The influence of ACE-Is on coagulation and fibrinolytic systems as well as platelet function was evaluated. The hypotensive effect of ACE-Is was equal in all groups. QUIN maintained the final carotid blood flow at the highest value in comparison to PER and plasma ACE-Is. The arterial thrombus weight was reduced in PER and QUIN groups while venous thrombus weight was also reduced after CAP. Tissue and plasma ACE-Is caused the inhibition of platelet adhesion and aggregation. A reduction of fibrin generation, prolongation of prothrombin time (PT), activated partial thromboplastin time (APTT) and shortening of euglobulin clot lysis time (ECLT) were observed after PER and QUIN treatment. In conclusion, given in equipotent hypotensive doses, tissue ACE-Is exerted more pronounced antithrombotic effect than plasma ACE-Is in experimental thrombosis. The differences between tissue and plasma ACE-Is in terms of their more pronounced inhibition of experimental thrombosis may be related to the intensified activation of fibrinolysis and inhibition of coagulation.

Angiotensin-Converting Enzyme Inhibitors↗

A new recombinant thrombolytic and antithrombotic agent with higher fibrin affinity--a staphylokinase variant. I. In vitro study.

We attempted to construct a new recombinant protein characterized by fibrin-specific properties of plasminogen activation combined with antithrombin and antiplatelet activities. To the C-terminal part of recombinant staphylokinase (r-SAK), which is a promising profibrinolytic agent, we assembled: (i) the Kringle 2 domain (K2) of tissue-type plasminogen activator (t-PA), containing a fibrin-specific binding site, (ii) the RGD sequence (Arg-Gly-Asp) for the prevention of platelet aggregation and (iii) the antithrombotic agent - hirudin. The cDNA for hybrid protein SAK-RGD-K2-Hir was cloned into pESP-3 yeast protein expression vector. The introduction of K2 t-PA, RGD sequence and hirudin into r-SAK molecule did not alter the SAK activity. The plasminogen activation rate (determined by K(M) and K(cat)) of SAK-RGD-K2-Hir was not significantly different from that of r-SAK. Affinity and binding strength of the recombinant protein to fibrin immobilized on the biosensor were higher than to r-SAK. We observed a higher clot lysis potency of SAK-RGD-K2-Hir as evidenced by a faster and more profound lysis of 125I-labeled human fibrin clots. The potency of thrombin inhibition by the hirudin part of the recombinant fusion protein SAK-RGD-K2-Hir was the same as that of r-Hir alone. In conclusion, the results of the in vitro study suggest that the SAK-RGD-K2-Hir construct can be a more potent and faster-acting thrombolytic agent with antithrombin and antiplatelet properties compared with standard r-SAK.

Cloning, Molecular↗

Angiotensin II via AT1 receptor accelerates arterial thrombosis in renovascular hypertensive rats.

Although there are some in vitro evidence that angiotensin II (Ang II) may promote thrombosis, there is still no data concerning effect of Ang II on arterial thrombus formation. In the present study we have investigated the influence of Ang II on electrically induced arterial thrombosis in a common carotid artery of renovascular hypertensive rats. Furthermore, we examined if Ang II effect is mediated via AT1 receptor. We measured some coagulation and fibrinolytic parameters at the same time. Since platelets play crucial role in the initiation of arterial thrombosis their contribution in the mode of Ang II action was also determined. Intravenous infusion of Ang II caused significant increase in arterial thrombus weight, which was reversed by losartan, selective AT1 receptor antagonist. The prothrombotic effect of Ang II was accompanied by increase in haemostatic and decrease in fibrinolytic potential of rat plasma. While number of data has clearly demonstrated that Ang II can augment human platelets aggregation, at least in rats, platelets were not involved in the mechanism of Ang II action. Our study shows that Ang II via AT1 receptor accelerates arterial thrombosis in renovascular hypertensive rat, therefore may be considered as a risk factor of myocardial infarction or stroke.

Angiotensin II↗

Changes in proteasome activity in the ischemic kidney of rat with experimental renovascular hypertension.

A long-lasting renal ischemia, followed by the left renal artery clipping (two-kidney, one clip Goldblatt model in rats) led to a marked decrease in proteasome chymotrypsin-like activity in the ischemic kidney. This activity was, however, significantly raised upon the stimulation with an artificial 20S proteasome activator SDS (0.025%). No changes were observed in either the levels of the constitutive 20S proteasome subunit (alpha5) or of its protein activator, PA28alpha, in the kidneys by Western blot. These preliminary results indicate that an inhibition of proteasome activity may result from a dissociation of the active proteasome complexes into the inactive 20S proteasome and its endogenous activators after a long-lasting renal ischemia.

Animals↗

Angiotensin-(1-7): an active member of the renin-angiotensin system.

Angiotensin-(1-7) [Ang-(1-7)] is an active member of renin-angiotensin system (RAS). It counterbalances vasoconstriction, mitogenic, arrhythmogenic and prothrombotic actions of Ang II. Inducing natiuresis and diuresis opposes also the water and sodium retention produced by Ang II. Till now the specific receptor side for Ang-(1-7) has been not cloned, but the current data strongly suggest that an interaction (cross-talk) between angiotensin receptors may play a role in the effects of Ang-(1-7).

Angiotensin I↗

Regulation of PAI-1 concentration in platelets by systemic administration of antisense oligonucleotides to rats.

In this report we tested the effect of oligodeoxyribonucleotides antisense to PAI-1 mRNA administered into rats on PAI-1 concentration in platelets. Low doses of the antisense oligonucleotide (MPO-16R) reduced PAI-1 activity, both in rat blood plasma and platelet lysates by 20.5% and 28.7%, respectively. There was no change in platelet count after treatment with MPO-16R but treated platelets showed lower aggregability as compared with controls (37 +/- 13% and 54 +/- 12%, respectively). In an experimental model of rat arterial thrombosis, low doses of MPO-16R caused a significant delay in the occlusion time (31.8%). These data further support for the role of PAI-1 as a major determinant of arterial thrombolysis resistance and for the first time demonstrate the possibility of reduction of platelet PAI-1 concentration by antisense approach.

Animals↗

Thiol repletion prevents venous thrombosis in rats by nitric oxide/prostacyclin-dependent mechanism: relation to the antithrombotic action of captopril.

Clinical and experimental data have recently accumulated for antithrombotic action of angiotensin-converting enzyme inhibitors (ACE-1s). We have shown previously that captopril (which contains a thiol group in the moiety) exerts more pronounced antithrombotic activity than does an equipotent dose of enalapril (the drug devoid of the thiol group). To clarify the relative importance of the presence of the thiol group in the molecule versus angiotensin-converting enzyme (ACE) inhibitory properties in the antithrombotic action of captopril, rats were treated with captopril (5 mg/kg twice daily; CAP), epicaptopril (stereoisomer of captopril devoid of ACE-inhibitory properties; 5 mg/kg twice daily; EPI), N-acetylcysteine (3.75 mg/kg twice daily; ACC), enalapril (3 mg/kg once daily; ENA), or distilled water (VEH) for 10 days, per os. After ligation of the vena cava, the incidence of the venous thrombosis and/or the thrombus weight decreased significantly in all but the ENA-treated groups when compared with control rats. The effect of CAP, EPI, and ACC was accompanied by a marked reduction of euglobulin clot lysis time and, with the exception of ACC, by an increase in prothrombin time in the blood collected from the site of the thrombus formation. Antithrombotic activity of EPI was completely abolished by nitric oxide synthase inhibitor N(G)-nitro-L-arginine methyl ester (L-NAME) or indomethacin, with the parallel reversal of fibrinolytic and coagulation parameters toward normal. Activated partial thromboplastin time, mean blood pressure, and bleeding time were not altered by either of the administered drugs. Thus, we demonstrated that thiol compounds exert antithrombotic activity by increasing fibrinolysis and/or suppression of the extrinsic pathway of the coagulation cascade in a nitric oxide/prostacyclin-dependent manner.

Angiotensin-Converting Enzyme Inhibitors↗

The involvement of AT(2)-receptor in the antithrombotic effect of losartan in renal hypertensive rats.

In previous studies, we have shown that losartan possesses nitric oxide-dependent antithrombotic properties in various models of hypertension in rats. It was demonstrated that stimulation of AT2-receptors plays an important role in the pharmacological effects of AT1-receptor antagonists. Thus, in this study, we examine the participation of AT2-receptors in the antithrombotic action of losartan in renal hypertensive rats on venous thrombosis induced by a two-hour ligation of the vena cava. Losartan administration(30 mg/kg, p.o.) resulted in a marked decrease in thrombus weight (by 85%, p<0.001). PD123319, an AT2-receptor antagonist (10 mg/kg, i.v.), administered concomitantly with losartan, abolished its antithrombotic effect, whilst it had no influence on thrombus weight when given alone. A significant decrease in systolic blood pressure was observed in animals given losartan. PD123319 administration didnot abolish this action of losartan and did not alter blood pressure when given alone. No changes in prothrombin time, activated partial thromboplastin time, or euglobulin clot lysis time were observed in animals administered losartan and/or PD123319.Similarly, primary haemostatics evaluated by bleeding time and platelet count did not change in any group of rats. In conclusion, we have shown that AT2-receptor stimulation is involved in the antithrombotic action of losartan in renal hypertensive rats.

Animals↗

The antithrombotic effect of angiotensin-(1-7) closely resembles that of losartan.

Angiotensin-(1-7) [Ang-(1-7)] is the bioactive peptide which may be responsible for some of the pharmacological effects of losartan. Our previous study has demonstrated the antithrombotic action of losartan in a model of experimental thrombosis. In the present study, we compared the antithrombotic action of losartan and Ang-(1-7). Acute (10 mg/kg, p.o.) and chronic (10 mg/kg, p.o., three weeks) losartan administration to spontaneously hypertensive rats (SHR) induced a decrease in thrombus weight (1.6 +/- 0.6 mg and 1.2 +/- 0.3 mg respectively vs. control 2.9 +/- 0.8 mg; p<0.05, p<0.05). A similar reduction was observed in two-kidney, one-clip hypertensive rats (2K-IC)receiving acute losartan administration (1.39 +/- 0.29 mg vs. 3.25 +/- 0.62 mg; p<0.01). Infusion of Ang-(1-7) to2K-lC rats also reduced the thrombus weight(1.01 +/- 0.34 mg, 1.23 +/- 0.38 mg and 2.17 +/- 0.36 mg for 1, 10, 100 pmol/kg/min, respectively vs. 3.58 +/- 0.6 mg control; p<0.01, p<0.01, p<0.05). Losartan produced a decrease in systolic blood pressure (BP) in SHR as well as in 2K-1C rats, while Ang-(1-7) infusion had no effect on BP. Acute losartan dosing to 2K-1C rats decreased platelet adhesion to fibrillar collagen(24.9 +/- 1.0% vs. control 31.5 +/- 1.1%, p<0.001). The incubation of platelet samples with Ang-(1-7) (10-6 and 10 5 M) also reduced adhesion to fibrillar collagen(38.4 +/- 0.1% and 33.8 +/- 0.8% respectively vs. control 40.0 +/- 0.6%; p<0.05, p<0.001). There were no apparent changes in prothrombin time, activated partial thromboplastin time and euglobulin clot lysis time in losartan and Ang-(1-7)-treated groups. We conclude that, like losartan, Ang-(1-7) is able to act as an antithrombotic agent.

Angiotensin I↗

Hypotensive effect of angiotensin II after AT1-receptor blockade with losartan.

Recent data suggest that hypotensive effect of losartan may not be attributed solely to AT1-receptor blockade, but also to excessive AT2 or other receptors stimulation by elevated angiotensin II and its derivative peptides. Therefore in the present study we examined the effect of angiotensin II on mean blood pressure after AT -receptor blockade with losartan. Male Wistar rats were anaesthetised and received injection of either losartan (30 mg/kg, 1 ml/kg, i.v.) or saline (the same volume and route) followed by bolus injection of angiotensin II (100, 300 or 1,000 ng/kg; 1 ml/kg, i.v.) or 1-hour infusion of angiotensin II (200 ng/kg/min; 2.5 ml/kg/h, i.v.). Control animals received saline instead. Angiotensin II, given either as the injection or the infusion, caused an evident increase in mean blood pressure (p ranged from 0.05 to 0.001 depending on the experimental group). Losartan caused a rapid drop in mean blood pressure and blunted the hypertensive effect of angiotensin II (p < 0.01). Moreover, in the losartan-pretreated animals the hypotensive phase was enhanced by the infusion, but not single injection of angiotensin II, which was most evident from the 30 th minute of observation (p < 0.05 vs control). In conclusion, hypotensive effect of losartan may be amplified by simultaneous increase in angiotensin II level, the situation observed during chronic AT1-receptor blockade.

Angiotensin II↗

Losartan inhibits the adhesion of rat platelets to fibrillar collagen--a potential role of nitric oxide and prostanoids.

The aim of the study was to evaluate the effect of losartan on rat platelet adhesion to fibrillar collagen. Washed platelets were counted before and after 15 minutes incubation with collagen (50 microg/ml) and the percentage of adhering platelets was calculated as the index of their adhesion. When the platelets were incubated with collagen 40.8 +/- 0.3% of the platelets adhered. Losartan produced a dose dependent decrease in a number of adhering platelets both when the drug was administered to the animals ex vivo at doses of 3, 10 and 30 mg/kg (p < 0.01-0.001) or was added to the preparation of washed platelets in vitro in concentrations of 10(-8)-10(-5) M (p < 0.01-0.001). In the next step of the study we assessed the influence of L-NAME (10 mg/kg ex vivo, 30 microM in vitro) and indomethacin (2.5 mg/kg ex vivo, 30 microM in vitro) on the antiadhesive effect of losartan (10 mg/kg ex vivo, 10(-6) M in vitro). Blockade of nitric oxide synthase with L-NAME partially reversed the antiadhesive effect of losartan both ex vivo and in vitro. Indomethacin diminished the inhibitory effect of losartan on platelet adhesion when administered ex vivo, but it failed to modify this parameter when added to the suspension of platelets in vitro. In conclusion, losartan reduces platelet adhesion to fibrillar collagen in a dose-dependent manner. The observed action of losartan seems to be mediated mainly by endothelium- and platelet-derived nitric oxide.

Animals↗

Antiplatelet action of losartan involves TXA2 receptor antagonism but not TXA2 synthase inhibition.

Various AT1 receptor antagonists including losartan are known to inhibit human platelet activation by antagonising TXA2/PGH2 receptors (TP receptors). Presently, we check a hypothesis that losartan, an imidazole derivative in contrast with valsartan, a non-imidazole compound, may inhibit human platelet activation also through inhibition of TXA2 synthesis. Inhibitory action of losartan (2-n butyl-4-chloro-5-hydroxymethyl-1-beta(2'-(1H-tetrazol-5yl)biphenyl-4-yl)methyl] imidazole), its active metabolite EXP 3174 (2-n-butyl-4-chloro-1-beta (2-(1H-tetrazol-5-yl) biphenyl-4-yl) methyl]imidazole-5-carboxylic acid) and valsartan ((S)-N-valeryl-N-(beta2'-(1H-tetrazol-5-yl)biphenyl-4-yl]methyl]valine), on collagen-induced platelet aggregation and TXA2 generation was compared to effects achieved by each compound on U46619-induced aggregation in aspirinized platelets. Losartan and aspirin inhibited collagen-induced platelet aggregation with approximately the same potency, whereas EXP 3174 and valsartan showed much weaker antiplatelet effects. Interestingly, losartan, EXP 3174 and valsartan displayed similar potencies as inhibitors of U46619-induced aggregation in asprinized platelets as in collagen-induced aggregation in non-aspirinized platelets. None of the above three AT1 antagonists, up to a concentration of 300 microM, did influence collagen-induced TXA2 synthesis in human platelets. In conclusion, antiplatelet effects of AT1 antagonists, irrespective of the presence or absence of non-condensed imidazole in their chemical structure, involve antagonism of TP receptors but not inhibition of TXA2 synthesis in platelets.

Antihypertensive Agents↗

Antithrombotic activity of losartan in two kidney, one clip hypertensive rats. A study on the mechanism of action.

The potential antithrombotic action of losartan, an AT1 receptor antagonist, administered to two-kidney, one-clip rats (2K1C) in an experimental model of venous thrombosis was evaluated. The involvement of nitric oxide (NO) in this effect was also studied. Venous stasis was induced by ligation of the vena cava. Losartan after single dose (10 mg/kg, p.o.) significantly reduced the venous thrombus growth. The antithrombotic action of losartan in 2K1C rats was abolished by N(G)-nitro-L-arginine methyl ester (L-NAME, 30 mg/kg s.c.) and restored by L-arginine (1000 mg/kg s.c.). Platelet adhesion to fibrillar collagen significantly decreased after administration of losartan. No changes in primary hemostasis and platelet aggregation were observed. Moreover, coagulation parameters such as activated partial thromboplastin time, prothrombin time and euglobulin clot lysis time were found unchanged after losartan administration either in systemic circulation or at the place of thrombus formation. Our results indicate that antithrombotic activity of losartan in 2K1C rats is NO--dependent; observed inhibition of platelet adhesion could also play a role in this phenomenon.

Angiotensin Receptor Antagonists↗

The role of endothelium in antithrombotic effect of the renin-angiotensin system blockade.

Drugs blocking the renin - angiotensin system, angiotensin converting enzyme inhibitors and AT1 receptor antagonists, among many pharmacological effects may exert an antithrombotic action. The mechanisms, which mediate their antithrombotic activity are associated with enhanced nitric oxide and prostacyclin release or with attenuation of angiotensin II action (Fig. 1, 2). Nevertheless, endothelium plays an important role in this process linking the renin-angiotensin and fibrinolysis / coagulation systems.

Angiotensin II↗

A potent 5-hydroxytryptamine receptor (5-HT2A) antagonist, DV-7028, delays arterial thrombosis development in rats.

In our study, we demonstrated that DV-7028: (3-[2-[4-(4-fluorobenzoyl)piperidin-1-yl]ethyl]-6, 7,8,9-tetrahydro-2H-pyrido [1,2,-a]-1,3,5-triazine-2, 4(3H)-dione maleate)--a selective 5-HT2A receptor antagonist, inhibited thrombus formation in the arterial thrombosis model and was completely ineffective in the prevention of venous thrombosis in the rat. In washed platelets prelabelled with 3H-serotonin, DV-7028 inhibited, in a dose-dependent manner, the collagen-induced secretion of serotonin. However, the uptake of serotonin into platelets was not affected by this substance. Administration of DV-7028 also inhibited platelet aggregation in the whole blood and platelet-rich plasma (PRP) induced by collagen, and diminished serotonin-induced aggregation of rat platelets in the presence of a sensitizing but nonaggregating amount of ADP, whereas it did not modify aggregation in PRP when induced by ADP. DV-7028 caused a concentration-dependent, almost parallel shift to the right of the concentration-response to serotonin for its pressor effect in the rat perfused tail artery. The present data demonstrate that DV-7028 exhibits 5-HT2A receptor antagonistic properties in the rat cardiovascular system, exhibits antithrombotic effect in the model of arterial but not venous thrombosis in rats. These results constitute further evidence of the possible importance of serotonin as a mediator of platelet thrombosis in arteries. Moreover, they can provide a useful tool for the prevention of various thrombotic diseases.

Animals↗

Losartan inhibits experimental venous thrombosis in spontaneously hypertensive rats.

The potential antithrombotic action of losartan, the AT1 receptor antagonist, in an experimental model of venous thrombosis in spontaneously hypertensive rats (SHR) and Wistar Kyoto rats (WKY) was tested. The involvement of nitric oxide and prostacyclin in this effect was also studied. Venous stasis was induced by ligation of the vena cava. Losartan, after administration of a single, hypotensive dose (10 mg/kg, p.o.), significantly reduced the thrombus weight in SHR but not in WKY. The antithrombotic activity of losartan in SHR was abolished by NG-nitro L-arginine methyl ester (L-NAME) (30 mg/kg s.c.) but not by indomethacin (2.5 mg/kg s.c.). No changes in primary hemostasis, platelet aggregation, coagulation parameters such as activated partial thromboplastin time, prothrombin time, euglobulin clot lysis time, and fibrinogen level, either in SHR or in WKY rats, were found. Our results indicate the NO-dependent mechanism in the antithrombotic effect of losartan on venous thrombosis in SHR.

Analysis of Variance↗