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[Antiheparin activity of polymers based on the alkaloid, lupinine].

Antiheparin activity and acute toxicity of a monomer and polymer quaternary ammonium salts obtained on the basis of the alkaloid lupinine were investigated. The monomer was shown to have no antiheparin activity even when administered in high doses. Lupinine polymetakryloyl iodoethylate is a selective heparin antagonist. This activity of polymers is relative to the extent of polymerization. A compound with a molecular weight of 20 000 turned out the most effective in the tested series of ready-made polymers. Acute toxicity of polycations is considerably less than that elicited by the monomer. The effect of heparin complete neutralization is accompanied by transitory thrombocytopenia.

Alkaloids

Antagonistic effect of heparin and a water-soluble glucocorticoid on the peripheral lymphocyte count in mice.

The effect of heparin and prednisolone succinate on the peripheral white blood cell count of mice has been studied 3 hours after injecting the drugs. Heparin in low doses did not influence the cell count but in higher doses (20 to 400 U) elicited marked lymphocytosis. When prednisolone and heparin were administered together, heparin (5 to 10 U) markedly inhibited the prednisolone-induced lymphopenia. The effect on the lymphocyte count of prednisolone combined with a large dose of heparin depends on the doses of the drugs. The antagonism seems to be non-competitive in nature. The PMN count shows only minor changes and the reaction of eosinophils to heparin is less pronounced. The antagonistic effect was manifest on the spleen weight.

Animals

Heparin-like activity in uterine fluid.

Uterine fluid was collected from a group of normal patients and a group of patients with menorrhagia. Heparin-like activity was detected in 34 out of 38 samples using an anti-Xa heparin assay. The heparin-like activity in uterine fluid was inhibited by adding the heparin antagonist hexadimethrine bromide to the assay. Concentrations of fibrinogen-fibrin degradation products (FDPs) were measured in five samples of uterine fluid. FDPs in the concentration detected had no effect on the anti-Xa assay. Heparin-like activity was higher in the group with menorrhagia, although the differences were not significant. Heparin-like activity increased throughout the menstrual cycle and decreased during menstruation, suggesting a possible cyclical variation in activity. There was no correlation between mast cell numbers in the endometrium and myometrium and heparin-like activity in uterine fluid and no correlation between the numbers and the stage in the menstrual cycle. In a few patients with intrauterine contraceptive devices (IUCDs) heparin-like activity was increased.

Body Fluids

Internal calcium release and activation of sea urchin eggs by cGMP are independent of the phosphoinositide signaling pathway.

We show that microinjecting cyclic GMP (cGMP) into unfertilized sea urchin eggs activates them by stimulating a rise in the intracellular free calcium ion concentration ([Ca2+]i). The increase in [Ca2+]i is similar in both magnitude and duration to the transient that activates the egg at fertilization. It is due to mobilization of calcium from intracellular stores but is not prevented by the inositol trisphosphate (InsP3) antagonist heparin. Furthermore, cGMP does not stimulate the eggs Na+/H+ antiport when the [Ca2+]i transient is blocked by the calcium chelator bis-(O-aminophenoxy)-N,N,N',N'-tetraacetic acid (BAPTA), suggesting that cGMP does not activate eggs by interacting with the their phosphoinositide signaling pathway. However, the [Ca2+]i increase and activation are prevented in eggs in which the InsP3-sensitive calcium stores have been emptied by the prior microinjection of the InsP3 analogue inositol 1,4,5-trisphosphorothioate. These data indicate that cGMP activates eggs by stimulating the release of calcium from an InsP3-sensitive calcium store via a novel, though unidentified, route independent of the InsP3 receptor.

Animals

Inhibition of thrombin generation by heparin and low molecular weight (LMW) heparins in the absence and presence of platelet factor 4 (PF4).

The ability of several low molecular weight (LMW) heparins and unfractionated heparin (UFH) to inhibit thrombin generation, and their anti-Xa and anti-IIa activities, were measured in the absence and presence of platelet factor 4 (PF4). The LMW heparins studied were 2-5 times less potent, on a weight basis, than UFH as inhibitors of thrombin generation in platelet-poor plasma; the inhibition of thrombin generation by LMW heparins correlated better with their anti-IIa activity (r = 0.98) than with their anti-Xa activity (r = 0.69). At low concentrations of PF4, the activity of LMW heparins in the thrombin generation test was neutralized less than that of UFH, but at higher PF4 concentrations all their activities could be neutralized except in anti-Xa assays. These observations support the hypothesis that anti-IIa activity is important for inhibition of thrombin generation by LMW heparins in vitro. However, when all the anti-IIa activity of LMW heparins was neutralized by PF4, considerable inhibitory activity remained in thrombin generation and anti-Xa assays, indicating that a portion of the anti-Xa activity of LMW heparins also contributes towards inhibition of thrombin generation.

Factor Xa Inhibitors

Complexoproductive and antiheparin properties of low density lipoproteins (LDL). I. Interaction of isolated low density lipoproteins with heparin of different molecular weight.

Low density lipoproteins/LDL/ form unsoluble complexes with heparin of different molecular weight in the presence of CaCl2. Quantity of the complexes depends on molecular weight of heparin, concentration of reagents and pH of the reacting medium. The biggest quantity of complexes result from LDL-heparin of the molecular weight 16000, the quantity is smaller with heparin of the molecular weight 5100 and the quantity is smallest with heparin of the molecular weight 3700. Components of LDL--heparin complexes are bound by means of ion and hydrogen bonds.

Calcium Chloride

Complexoproductive and antiheparin properties of low density lipoproteins (LDL). II. Interaction of serum low density lipoproteins (LDL) with heparin of different molecular weight.

Quantity of unsoluble LDL complexes with heparin of different molecular weight in hypo-, normo-, and hyperlipemic blood serum in the presence of CaCl2 was estimated. At the same weight concentration the biggest quantity of LDL complexes are formed with heparin with heparin of the molecular weight 16000, the quantity is smaller with heparin of the molecular weight 5100, and it is the smallest with heparin of molecular weight 3700.

Calcium Chloride

[The effect of the polymeric quaternary ammonium salt,2,5-ionene on blood coagulation].

In modelling overdosages of the polymeric antagonist in cases of heparin neutralization the effect of 2.5-ionene on the blood coagulation in rabbits was considered during investigations in vivo. It is shown that even appreciable overdosages of 2.5-ionene are not attended by the effect of hypocoagulation. Shortening the plasma coagulation time according to the thromboplastic activity after Quick occurs through activation of the factor X proceeding against the background of falling activity of some other coagulation factors and comes as a result of excess 2.5-ionene in the blood. A reduced amount and lowering of the aggregation capacity of the thrombocytes are noted.

Animals

Comparative thrombolytic properties of tissue-type plasminogen activator (t-PA), single-chain urokinase-type plasminogen activator (u-PA) and K1K2Pu (a t-PA/u-PA chimera) in a combined arterial and venous thrombosis model in the dog.

The chimeric molecule K1K2Pu, comprising the two kringle domains (K1 and K2) of tissue-type plasminogen activator (t-PA) and the COOH-terminal region with the serine protease domain (Pu) of urokinase-type plasminogen activator (u-PA), was previously shown to have a 5- to 10-fold reduced clearance rate with maintained specific thrombolytic activity, resulting in an increased thrombolytic potency in animal models of venous and arterial thrombosis. To document the thrombolytic potential of K1K2Pu, the thrombolytic potency and fibrin specificity were studied in a combined platelet-rich arterial eversion graft thrombosis and venous whole blood clot model in heparinized dogs (100 U/kg bolus and 50 U/kg per h infusion). Dose-response effects of bolus injections of K1K2Pu (0.032 to 0.25 mg/kg) were compared with those of recombinant t-PA (rt-PA) and of recombinant single chain u-PA (rscu-PA) (0.25 to 1.0 mg/kg each) in groups of five or six dogs, each given heparin with or without the thromboxane synthase inhibitor/prostaglandin endoperoxide receptor antagonist ridogrel. Heparin and ridogrel in the absence of a thrombolytic agent did not produce arterial reflow or venous clot lysis in five dogs. Addition of K1K2Pu, rt-PA or rscu-PA resulted in a dose-dependent induction of arterial reflow and of venous clot lysis in the absence of systemic fibrinolytic activation and fibrinogen breakdown. Consistent arterial reflow required 0.063 mg/kg of K1K2Pu and 0.5 mg/kg of rt-PA or of rscu-PA. The thrombolytic potency for venous clot lysis, expressed as percent lysis per mg compound administered per kg body weight, was (mean +/- SEM) 750 +/- 160 for K1K2Pu, 68 +/- 17 for rscu-PA (p less than 0.001 vs. K1K2Pu) and 110 +/- 29 for rt-PA (p less than 0.001 vs. K1K2Pu). The plasma clearance rates were significantly lower for K1K2Pu than for rscu-PA and rt-PA. In the absence of ridogrel, arterial reflow was significantly slower and was followed by cyclic reocclusion and reflow; however, venous clot lysis was unaffected. Template bleeding times were not significantly altered in the absence but were markedly prolonged in the presence of ridogrel. These results confirm and establish that, when given as a bolus injection, K1K2Pu has an approximately 10-fold higher thrombolytic potency for arterial and venous thrombolysis than does rt-PA or rscu-PA. Thrombolysis with K1K2Pu is obtained in the absence of systemic fibrinolytic activation and fibrinogen breakdown. These properties suggest that K1K2Pu offers potential for thrombolytic therapy by bolus administration in patients with thromboembolic disease.

Animals

Plasma heparin neutralizing activity in coronary artery disease.

Platelets contain heparin neutralizing activity that is released into plasma after platelet aggregation. Increased amounts of plasma heparin neutralizing activity were found in patients with acute myocardial infarction, unstable angina pectoris and stable arteriographically confirmed coronary artery disease. Plasma heparin neutralizing activity levels provide additional evidence for a role of platelet aggregation in coronary artery disease.

Angina Pectoris

Heparin as antibacterial agent in rabbit bladder.

Previous studies performed in our laboratory indicated that the primary antibacterial defense mechanism of the rabbit bladder is the antiadsorptive action of the surface mucopolysaccharide. The increased bacterial adsorption that occurs when the bladder is denuded of this layer was prevented by the instillation of heparin. Additional studies showed that the protective effect of heparin is inhibited by protamine, a further indication that the bladder's "antiadherence factor" is a mucopolysaccharide. Small amounts of heparin, applied directly to the mucoprotein-deficient bladder or to the surface of the inoculated bacteria, produced a statistically significant reduction in bacterial adsorption.

Adsorption